List of years in paleoichthyology
In paleontology
2017
2018
2019
2020
2021
2022
2023
In science
2017
2018
2019
2020
2021
2022
2023
In paleobotany
2017
2018
2019
2020
2021
2022
2023
In arthropod paleontology
2017
2018
2019
2020
2021
2022
2023
In paleoentomology
2017
2018
2019
2020
2021
2022
2023
In paleomalacology
2017
2018
2019
2020
2021
2022
2023
In reptile paleontology
2017
2018
2019
2020
2021
2022
2023
In archosaur paleontology
2017
2018
2019
2020
2021
2022
2023
In mammal paleontology
2017
2018
2019
2020
2021
2022
2023

This list of fossil fishes described in 2020 is a list of new taxa of jawless vertebrates, placoderms, acanthodians, fossil cartilaginous fishes, bony fishes, and other fishes of every kind that were described during the year 2020, as well as other significant discoveries and events related to paleoichthyology that occurred in 2020.

New taxa

Jawless vertebrates

NameNoveltyStatusAuthorsAgeType localityCountryNotesImages
Clavulaspis[1] Nom. nov Valid Elliott, Lassiter & Geyer Devonian (Givetian) Yahatinda Formation  Canada
( Alberta)
A member of the family Pteraspididae; a replacement name for Helaspis Elliott et al. (2000).
Ecphymaspis[1] Gen. et comb. nov Valid Elliott, Lassiter & Geyer Devonian (Eifelian) Spring Mountain beds  United States
( Idaho)
A member of the family Pteraspididae; a new genus for "Psephaspis" idahoensis Denison (1968).
Parathelodus liaokuoensis[2] Sp. nov Valid Cui et al. Devonian (Lochkovian) Xishancun

Xitun

 China A thelodont belonging to the family Coelolepidae. Announced in 2019; the final version of the article naming it was published in 2020.
Parathelodus wangi[2] Sp. nov Valid Cui et al. Devonian (Lochkovian) Xishancun

Xitun

 China A thelodont belonging to the family Coelolepidae. Announced in 2019; the final version of the article naming it was published in 2020.
Parathelodus xitunensis[2] Sp. nov Valid Cui et al. Devonian (Lochkovian) Xitun  China A thelodont belonging to the family Coelolepidae. Announced in 2019; the final version of the article naming it was published in 2020.
Psarkosteus[3] Gen. et sp. nov Valid Dec Devonian (Givetian) Skały  Poland A member of the family Psammosteidae. The type species is P. mediocris.
Rumporostralis[4] Gen. et comb. et sp. nov Valid Shan et al. Silurian (Telychian) Xikeng Formation  China A member of Galeaspida belonging to the group Eugaleaspiformes and the family Sinogaleaspidae. The type species is "Sinogaleaspis" xikengensis Pan & Wang (1980); genus also includes new species R. shipanensis.
Scutellaspis[1] Gen. et sp. nov Valid Elliott, Lassiter & Geyer Devonian (Eifelian) Spring Mountain beds  United States
( Idaho)
A member of the family Pteraspididae. Genus includes new species S. wilsoni.

Placoderms

NameNoveltyStatusAuthorsAgeType localityCountryNotesImages
Actinolepis zaikai[5] Sp. nov Valid Plax & Newman Devonian (Emsian) Lepel Beds  Belarus
Bulongosteus[6] Gen. et sp. nov Valid Liu, Zong & Gong Late Devonian Zhulumute Formation  China A member of the family Selenosteidae. Genus includes new species B. liui.
Johannaspis[7] Gen. et comb. nov Valid Vaškaninová Early Devonian Prague Basin  Czech Republic A homostiid arthrodire. Genus includes "Asterolepis" bohemicus Barrande (1872).
Minjinia[8] Gen. et sp. nov Valid Brazeau et al. Devonian (Pragian)  Mongolia A placoderm closely related to the gnathostome crown group. Genus includes new species M. turgenensis.
Stipatosteus[5] Gen. et sp. nov Valid Plax & Newman Devonian (Emsian) Lepel Beds  Belarus A phlyctaeniid arthrodire. Genus includes new species S. svidunovitchi.

Acanthodians

NameNoveltyStatusAuthorsAgeType localityCountryNotesImages
Fallodentus[9] Gen. et sp. nov In press Newman, Den Blaauwen & Burrow Devonian (Givetian) Mey Flagstone Formation  United Kingdom A cheiracanthid acanthodian. Genus includes new species F. davidsoni.

Cartilaginous fishes

NameNoveltyStatusAuthorsAgeType localityCountryNotesImages
Amamriabatis[10] Gen. et sp. nov Valid Adnet et al. Eocene  Tunisia
 Egypt?
A ray belonging to the family Mobulidae. The type species is A. heni.

Asteracanthus dunaii[11]

Sp. nov

Valid

Szabó & Főzy

Jurassic

 Hungary

Atlantitrygon[12] Gen. et comb. et sp. nov Valid Sambou et al. Paleocene (Thanetian) and Eocene (Lutetian) Matam

 Niger
 Senegal
 Togo

A putative marine potamotrygonid. The type species is "Dasyatis" sudrei Cappetta (1972); genus also includes new species A. senegalensis.
Canadodus[13] Gen. et sp. nov Valid Popov, Johns & Suntok Late Oligocene Sooke  Canada
( British Columbia)
A member of the family Chimaeridae. Genus includes new species C. suntoki.
Carcharhinus kasserinensis[10] Sp. nov Valid Adnet et al. Eocene (Bartonian)  Tunisia
 Jamaica?
A species of Carcharhinus.
Coupatezia cristata[10] Sp. nov Valid Adnet et al. Eocene  Egypt
 Tunisia
A ray belonging to the superfamily Dasyatoidea.
Cretasquatina[14] Gen. et sp. nov Valid Maisey, Ehret & Denton Late Cretaceous (Campanian) Mooreville Chalk
Navesink Formation?
 United States
( Alabama
 New Jersey?)
A member of the family Squatinidae. The type species is C. americana.
Eoplatyrhina[15] Gen. et comb. nov Valid Marramà et al. Eocene Monte Bolca  Italy A member of the family Platyrhinidae. Genus includes "Platyrhina" bolcensis Heckel (1851).
Eorhinobatos[16] Gen. et comb. nov Valid Marramà et al. Eocene Monte Bolca  Italy A guitarfish; a new genus for "Rhinobatos" primaevus.
Ferromirum[17] Gen. et sp. nov Valid Frey et al. Devonian (Famennian) Ibâouane  Morocco A member of Symmoriiformes. The type species is F. oukherbouchi.
Himantura souarfortuna[10] Sp. nov Valid Adnet et al. Eocene (Bartonian)  Tunisia A whiptail stingray, a species of Himantura.
Lamarodus[18] Gen. et sp. nov Valid Ivanov in Ivanov et al. Permian (Guadalupian) Bell Canyon Formation  United States
( Texas)
A member of Hybodontiformes belonging to the superfamily Hybodontoidea. Genus includes new species L. triangulus. Announced in 2018; the final version of the article naming it was published in 2020.
Leptocharias tunisiensis[10] Sp. nov Valid Adnet et al. Eocene  Tunisia
 Egypt?
 Jordan?
A relative of the barbeled houndshark.
Mecotrygon[10] Gen. et sp. nov Valid Adnet et al. Eocene  Egypt
 Tunisia
A whiptail stingray belonging to the subfamily Neotrygoninae. The type species is M. asperodentulus.
Mennerotodus mackayi[19] Sp. nov Valid Cicimurri, Ebersole & Martin Paleocene (Danian) Clayton  United States
( Alabama)
A sand shark
Mennerotodus parmleyi[19] Sp. nov Valid Cicimurri, Ebersole & Martin Eocene (Bartonian) Clinchfield  United States
( Georgia (U.S. state))
A sand shark
Microtriftis[12] Gen. et sp. nov Valid Sambou et al. Eocene (Ypresian to Lutetian) Matam  Senegal A dasyatoid of uncertain phylogenetic placement. Genus includes new species M. matami.
Nanocetorhinus zeitlingeri[20] Sp. nov Valid Feichtinger, Pollerspöck & Harzhauser Oligocene (Chattian) Eferding  Austria A member of Neoselachii of uncertain phylogenetic placement.

Odontorhytis priemi[12]

Sp. nov Valid Sambou et al. Paleocene (Thanetian) and Eocene (Ypresian) Matam

 Mali
 Morocco
 Senegal
 Tunisia

A member of Neoselachii of uncertain phylogenetic placement
Ouledia lacuna[10] Sp. nov Valid Adnet et al. Eocene (Bartonian)  Tunisia A butterfly ray.
Pachygymnura[10] Gen. et comb. nov Valid Adnet et al. Eocene  Egypt
 Tunisia
A butterfly ray. The type species is "Coupatezia" attiai Cook in Murray et al. (2010).
Plesiozanobatus[15] Gen. et comb. nov Valid Marramà et al. Eocene]] Monte Bolca  Italy A relative of panray. Genus includes "Torpedo" egertoni De Zigno (1876).
Pristiophorus austriacus[21] Sp. nov Valid Reinecke et al. Miocene (Aquitanian) Ebelsberg  Austria A species of Pristiophorus.
Pristiophorus borealis[21] Sp. nov Valid Reinecke et al. Oligocene (Chattian) Sülstorf  Germany A species of Pristiophorus.
Pristiophorus tortonicus[21] Sp. nov Valid Reinecke et al. Miocene (Tortonian) Mica Clay  Germany A species of Pristiophorus.
Pristiophorus ungeri[21] Sp. nov Valid Reinecke et al. Miocene (Burdigalian) Neuhofen  Germany A species of Pristiophorus.
Pseudorhinobatos[16] Gen. et comb. nov Valid Marramà et al. Eocene Monte Bolca  Italy A guitarfish; a new genus for "Rhinobatos" dezignii.

Sculptospina[22]

Gen. et sp. nov

Valid

Lebedev in Lebedev, Ivanov & Linkevich

Devonian (Famennian)

 Russia
( Lipetsk Oblast)

A member of Ctenacanthiformes of uncertain phylogenetic placement. The type species is S. makhlaevi.

Sphyrna guinoti[10] Sp. nov Valid Adnet et al. Eocene  Tunisia
 Egypt?
A species of Sphyrna.
Stegostoma tethysiensis[10] Sp. nov Valid Adnet et al. Eocene  Tunisia
 Egypt?
A relative of the zebra shark.
Taklamakanolepis[23] Gen. et sp. nov Andreev et al. Early Silurian Ymogantau  China A member of Mongolepidida. The type species is T. asiaticus.
Tielikewatielepis[23] Gen. et sp. nov Andreev et al. Early Silurian Tataertag

Ymogantau

 China A member of Mongolepidida. The type species is T. sinensis.
Xiaohaizilepis[23] Gen. et sp. nov Andreev et al. Early Silurian Tataertag

Ymogantau

 China A member of Mongolepidida. The type species is X. liui.
Yuanolepis[23] Gen. et sp. nov Andreev et al. Early Silurian Ymogantau  China A cartilaginous fish of uncertain phylogenetic placement. The type species is Y. bachunensis.

Ray-finned fishes

NameNoveltyStatusAuthorsAgeType localityCountryNotesImages
Agassizilia[24] Gen. et sp. nov Valid Cooper & Martill Cenomanian Kem Kem  Morocco Possibly a member of the family Pycnodontidae. The type species is A. erfoudina.
Altmuehlfuro[25] Gen. et sp. nov Valid Ebert Late Jurassic Solnhofen  Germany A member of Halecomorphi belonging to the group Ophiopsiformes. Genus includes new species A. boomerang.
Amakusaichthys[26] Gen. et sp. nov Valid Yabumoto, Hirose & Brito Late Cretaceous (Santonian) Hinoshima  Japan A member of Ichthyodectiformes. Genus includes new species A. goshouraensis. Announced in 2018; the final version of the article naming it was published in 2020.
Ampheristus americanus[27] Sp. nov Valid Schwarzhans & Stringer Late Cretaceous (Maastrichtian) and Paleocene (Danian) Clayton
Kemp Clay
 United States
( Arkansas
 Texas)
A cusk-eel.
Anguilla? chickasawae[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) and Paleocene (Danian)[27] Clayton[27]
Ripley
 United States
( Arkansas[27]
 Mississippi)
A member or a relative of the family Anguillidae
Anomoeodus wolfi[29] Sp. nov Valid Capasso Late Cretaceous (Cenomanian) Del Rio  United States
( Texas)
A member of the family Pycnodontidae.
Anorevus[30] Gen. et sp. nov. Valid Bannikov & Zorzin Eocene (Ypresian) Monte Bolca  Italy A member of Percomorpha of uncertain phylogenetic placement. The type species is A. lorenzonii.
Apateodus crenellatus[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Owl Creek

Ripley

 United States
( Mississippi)
Ariopsis castilloensi[31] Sp. nov In press Aguilera & Rodriguez in Aguilera et al. Late Oligocene to early Miocene Castillo  Venezuela A species of Ariopsis.
Armigatus carrenoae[32] Sp. nov Valid Alvarado-Ortega, Than-Marchese & Melgarejo-Damián Early Cretaceous (Albian) Tlayúa  Mexico A member of Clupeomorpha belonging to the group Ellimmichthyiformes and to the family Armigatidae.
Bagre ornatus[31] Sp. nov In press Aguilera & Rodriguez in Aguilera et al. Late Oligocene to early Miocene Castillo  Venezuela A species of Bagre.
Baringochromis[33] Gen. et 3 sp. nov Valid Altner & Reichenbacher Late Miocene  Kenya A cichlid belonging to the subfamily Pseudocrenilabrinae. The type species is B. senutae; genus also includes B. sonyii and B. tallamae. Announced in 2020; the final version of the article naming it was published in 2021.
Benthophilus aprutinus[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Messinian)  Italy A tadpole goby.
Benthophilus labronicus[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Messinian)  Italy A tadpole goby.
Boreolates[35] Gen. et sp. nov Valid Weems Eocene Nanjemoy  United States
( Virginia)
A member of the family Latidae. The type species is B. debernardi.
Brachyplatystoma elbakyani[36] Sp. nov In press Agnolin & Bogan Late Miocene  Argentina A species of Brachyplatystoma
Buenia pisiformis[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Tortonian and Messinian)  Greece A species of Buenia.
Burguklia minichorum[37] Sp. nov Valid Bakaev & Kogan Permian (WordianCapitanian)  Russia An early ray-finned fish. Announced in 2019; the final version of the article naming it was published in 2020.
Caspiosoma lini[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Messinian)  Italy
 Romania
A species of Caspiosoma.
Caspiosoma paulisulcata[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Messinian)  Italy A species of Caspiosoma.
Caucombrus[38] Gen. et sp. nov Valid Bannikov Early Oligocene Abkhazia
 Russia
A member of the family Scombridae. Genus includes new species C. histiopterygius.
Chaychanus[39] Gen. et sp. nov Valid Cantalice Severiano, Alvarado Ortega & Bellwood Paleocene  Mexico A member of the family Pomacentridae. Genus includes new species C. gonzalezorum. Announced in 2019; the final version of the article naming it was published in 2020.
Cheirolepis aleshkai[40] Sp. nov Valid Plax Devonian (Eifelian)  Belarus An early ray-finned fish.
Choctawichthys[28] Gen. et comb. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Ripley  United States
( Mississippi)
A member of Paracanthopterygii of uncertain phylogenetic placement. The type species is "genus Perciformorum" cepoloides Nolf & Dockery (1990).

Chromogobius? primigenius[41]

Sp. nov

Valid

Schwarzhans, Brzobohatý & Radwańska

Miocene

Possibly a species of Chromogobius.

Clupea hanishinaensis[42] Nom. nov Valid Yabumoto & Nazarkin Miocene Bessho  Japan A species of Clupea; a replacement name for Clupea macrocephala Yabumoto & Nazarkin (2018).
Congrophichthus[27] Gen. et sp. nov Valid Schwarzhans & Stringer Late Cretaceous (late Campanian and Maastrichtian) and Paleocene (Danian) Clayton
Coffee Sand
Kemp Clay
 United States
( Alabama
 Arkansas
 Mississippi
 Texas)
A member of the family Congridae. The type species is C. transterminus.
Cowetaichthys carnevalei[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Ripley  United States
( Mississippi)
A beardfish
Cyclothone duhoensis[43] Sp. nov Valid Nam & Nazarkin Miocene Duho  South Korea A species of Cyclothone. Announced in 2020; the final version of the article naming it was published in 2021.
Dakotaichthys[27] Gen. et sp. nov Valid Schwarzhans & Stringer Late Cretaceous (Maastrichtian) Fox Hills
Kemp Clay
 United States
( North Dakota
 Texas)
Possibly a member of the family Gadidae. The type species is D. hogansoni.
Eleotris omuamuaensis[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Tortonian)  Italy A species of Eleotris.
Eleotris tyrrhenicus[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Tortonian)  Italy A species of Eleotris.
Ellimma longipectoralis[44] Sp. nov Valid Polck et al. Early Cretaceous (Aptian) Barra Velha Formation  Brazil A member of Clupeomorpha belonging to the group Ellimmichthyiformes and to the family Paraclupeidae. Announced in 2019; the final version of the article naming it was published in 2020.
Ellimmichthys spinosus[45] Sp. nov In press De Figueiredo & Gallo Early Cretaceous Recôncavo Basin  Brazil A member of Clupeomorpha belonging to the group Ellimmichthyiformes.
Elongofuro[25] Gen. et sp. nov Valid Ebert Late Jurassic  Germany A member of Halecomorphi belonging to the group Ophiopsiformes. Genus includes new species E. woelflei.
Elopothrissus carsonsloani[27] Sp. nov Valid Schwarzhans & Stringer Paleocene (Danian) Clayton  United States
( Arkansas)
A relative of the Japanese gissu.
Engdahlichthys[46] Gen. et sp. nov Valid Murray et al. Paleocene Fort Union  United States
( Montana)
A sturgeon. Genus includes new species E. milviaegis.
Enigmacottus[34] Gen. et sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Messinian)  Italy Possibly a member of the family Psychrolutidae. The type species is E. socialis.
Epaelops[47] Gen. et sp. nov In press Alves, Alvarado Ortega & Brito Early Cretaceous (Albian) Tlayúa  Mexico A member of Elopiformes. Genus includes new species E. martinezi. Announced in 2019; the final version of the article naming it is scheduled to be published in 2020.
Eutawichthys choctawae[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Kemp Clay[27]
Ripley
 United States
( Mississippi
 Texas[27])
Probably a member of Beryciformes
Feroxichthys[48] Gen. et sp. nov Valid Xu Middle Triassic (Anisian) Guanling  China A member of the family Colobodontidae. The type species is F. yunnanensis.
Globanomoeodus[29] Gen. et sp. nov Valid Capasso Late Cretaceous (Cenomanian) Del Rio  United States
( Texas)
A member of the family Pycnodontidae. The type species is G. dentespassim.
Gobius peloponnesus[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Pliocene (Zanclean)  Greece A species of Gobius.

Gobius supraspectabilis[41]

Sp. nov

Valid

Schwarzhans, Brzobohatý & Radwańska

Miocene

 Slovakia

A species of Gobius.

Gregoriopycnodus[49] Gen. et comb. nov Valid Taverne, Capasso & Del Re Early Cretaceous (Albian)  Italy A member of the family Pycnodontidae. The type species is "Palaeobalistum" bassanii d'Erasmo (1914).
Hadromos[50] Gen. et sp. nov Valid Murray Early Cenozoic (possibly Eocene) Sangkarewang  Indonesia A member of Cyprinoidea. Genus includes new species H. sandersae.
Hastichthys totonacus[51] Sp. nov In press Alvarado-Ortega & Díaz-Cruz Late Cretaceous (Turonian) Agua Nueva  Mexico A member of Aulopiformes belonging to the family Dercetidae.
Heckelichthys preopercularis[52] Sp. nov In press Baños Rodríguez et al. Cretaceous (AlbianCenomanian) El Doctor  Mexico A member of Ichthyodectiformes
Hesperichthys gironeae[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Tortonian and Messinian)  Italy A goby.

Hesperichthys iugosus[41]

Sp. nov

Valid

Schwarzhans, Brzobohatý & Radwańska

Miocene

 Moldova

A goby. Originally described as a species of Hesperichthys, but subsequently transferred to the genus Sarmatigobius.[53]

Hiascoactinus[54] Gen. et sp. nov In press Kim et al. Late Triassic Amisan  South Korea A member of Redfieldiiformes. Genus includes new species H. boryeongensis. Announced in 2019; the final version of the article naming it is scheduled to be published in 2020.

Hoeseichthys[41]

Gen. et comb. nov

Valid

Schwarzhans, Brzobohatý & Radwańska

Miocene and Pliocene[55]

 Czech Republic
 Germany
 India[56]
 Italy[34]
 Morocco[55]

A goby. Genus includes "Otolithus (Gobius)" praeclarus Procházka (1893) and H. laevis (Weiler, 1942), as well as "Gobiida" bicornuta Lin, Girone & Wolf (2015) and "Gobiida" brioche Lin, Girone & Wolf (2015).[34]

Holzmadenfuro[57] Gen. et sp. nov Valid Ebert, Thies & Hauff Early Jurassic (Toarcian) Posidonia  Germany A member of Halecomorphi. Genus includes new species H. rebmanni.
Hoplopteryx langfordi[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Ripley  United States
( Mississippi)
Hypsocormus posterodorsalis[58] Sp. nov Valid Maxwell et al. Late Jurassic (Kimmeridgian) Nusplingen  Germany
Knipowitschia etrusca[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Messinian)  Italy A species of Knipowitschia.

Knipowitschia polonica[41]

Sp. nov

Valid

Schwarzhans, Brzobohatý & Radwańska

Miocene

 Poland
 Ukraine[59]

A species of Knipowitschia.

Kokenichthys navis[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Owl Creek

Ripley

 United States
( Mississippi)
A member of Osteoglossiformes of uncertain phylogenetic placement
Kradimus[60] Gen. et sp. nov Valid Veysey, Brito & Martill Late Cretaceous (Turonian) Akrabou Formation  Morocco A member of Crossognathiformes. Genus includes new species K. asflaensis. Announced in 2019; the final version of the article naming it was published in 2020.
Lavinia stuwilliamsi[61] Sp. nov Valid McClellan & Smith Late Miocene Salt Lake Formation  United States
( Utah)
A species of Lavinia.
Lebrunichthys[62] Gen. et sp. nov Valid Taverne & Capasso Late Cretaceous (Cenomanian)  Lebanon A member of Crossognathiformes belonging to the family Pachyrhizodontidae. The type species is L. nammourensis.
Lesueurigobius stazzanensis[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Tortonian)  Italy A species of Lesueurigobius.
Lindoeichthys[63] Gen. et sp. nov. Valid Murray et al. Late Cretaceous (Maastrichtian) Scollard Formation  Canada
( Alberta)
A member of Percopsiformes. Genus includes new species L. albertensis. Announced in 2019; the final version of the article naming it was published in 2020.
Louwoichthys[64] Gen. et sp. nov Valid Xu Middle Triassic (Anisian)  China A member of the stem group of Neopterygii. Genus includes new species L. pusillus.
Luganoia fortuna[65] Sp. nov Valid Xu Middle Triassic (Ladinian) Falang  China
Megalops? nolfi[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Ripley  United States
( Mississippi)
Probably member of the family Megalopidae
Monosmilus[66] Gen. et sp. nov Capobianco et al. Eocene (Lutetian) Domanda  Pakistan A stem-engraulid. The type species is M. chureloides.
Muraenanguilla unionensis[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Owl Creek

Ripley

 United States
( Mississippi)
An eel of uncertain phylogenetic placement
Neilpeartia[67] Gen. et sp. nov Valid Carnevale et al. Eocene (Ypresian) Monte Bolca  Italy A frogfish. Genus includes new species N. ceratoi.
Neomesturus[68] Gen. et sp. nov In press Cooper & Martill Turonian Akrabou  Morocco A member of Pycnodontiformes. Genus includes new species N. asflaensis.
Neoproscinetes africanus[24] Sp. nov Valid Cooper & Martill Cenomanian Kem Kem  Morocco A member of the family Pycnodontidae
Njoerdichthys[69] Gen. et sp. nov In press Cawley et al. Late Cretaceous (Turonian) Hesseltal  Germany A member of the family Pycnodontidae. The type species is N. dyckerhoffi.
Nunaneichthys[70] Gen. et sp. nov In press Hernández-Guerrero et al. Cretaceous (Albian-Cenomanian)  Mexico A bonefish belonging to the subfamily Pterothrissinae. Genus includes new species N. mexicanus.

Odondebuenia agiadiae[41]

Sp. nov

Valid

Schwarzhans, Brzobohatý & Radwańska

Miocene

 Poland
 Slovakia
 Ukraine[59]

A relative of the coralline goby.

Ohmdenfuro[57] Gen. et sp. nov Valid Ebert, Thies & Hauff Early Jurassic (Toarcian) Posidonia  Germany A member of Halecomorphi. Genus includes new species O. bodmani.
Osmeroides mississippiensis[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Owl Creek

Ripley

 United States
( Mississippi)
Ossulcus[28] Gen. et sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Ripley  United States
( Mississippi)
Probably a member of Beryciformes. The type species is O. labiatus.
Otolithopsis cumatilis[28] Sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Ripley  United States
( Mississippi)
An otolith of a fish of uncertain phylogenetic placement.
Palaeogadus weltoni[27] Sp. nov Valid Schwarzhans & Stringer Late Cretaceous (Maastrichtian) Kemp Clay  United States
( Texas)
Palealbula korchinskyi[71] Sp. nov Valid Schwarzhans & Mironenko Late Jurassic  Russia Possibly a stem-albuliform
Palealbula moscoviensis[71] Sp. nov Valid Schwarzhans & Mironenko Late Jurassic  Russia Possibly a stem-albuliform.
Paranursallia cavini[68] Sp. nov In press Cooper & Martill Turonian Akrabou  Morocco A member of Pycnodontiformes.
Pauciuncus[50] Gen. et comb. nov Valid Murray Early Cenozoic (possibly Eocene) Sangkarewang  Indonesia A member of Cyprinoidea. Genus includes "Puntius" bussyi.
Polcynichthys[72] Gen. et sp. nov In press London & Shimada Late Cretaceous (Cenomanian) Tarrant  United States
( Texas)
A member of the family Pachyrhizodontidae. Genus includes new species P. lloydhilli.
Proterorhinus cretensis[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Pliocene (Zanclean)  Greece A species of Proterorhinus.
Pythonichthys arkansasensis[27] Sp. nov Valid Schwarzhans & Stringer Late Cretaceous (Maastrichtian) and Paleocene (Danian) Clayton
Kemp Clay
 United States
( Arkansas
 Texas)
A species of Pythonichthys.
Rachycentron stremphaencus[73] Sp. nov Valid Godfrey & Carnevale Miocene (Tortonian) St. Marys  United States
( Maryland)
A relative of the cobia.
Rebekkachromis valyricus[74] Sp. nov Valid Kevrekidis & Reichenbacher in Kevrekidis et al. Miocene Ngorora  Kenya A cichlid belonging to the tribe Oreochromini.
Rebekkachromis vancouveringae[74] Sp. nov Valid Kevrekidis & Reichenbacher in Kevrekidis et al. Miocene Ngorora  Kenya A cichlid belonging to the tribe Oreochromini.
Rhynchoconger brettwoodwardi[27] Sp. nov Valid Schwarzhans & Stringer Late Cretaceous (Maastrichtian) Kemp Clay  United States
( Texas)
A species of Rhynchoconger.
Rupelia[75] Gen. et comb. nov Valid Baykina & Kovalchuk in Kovalchuk et al. Oligocene (Rupelian)  Russia A member of family Clupeidae. Genus includes R. rata (Daniltshenko, 1959).
Salwaichthys[76] Gen. et sp. nov Valid Bannikov Early Oligocene Abkhazia
 Poland
 Russia
( Adygea)
A member of Perciformes belonging to the new family Salwaichthyidae. Genus includes new species S. paratethyensis.
Sanctusichthys[77] Gen. et sp. nov Valid López-Arbarello, Maxwell & Schweigert Late Jurassic (Kimmeridgian) Nusplingen Limestone  Germany A member of Halecomorphi. Genus includes new species S. rieteri.
Sangkarewangia[50] Gen. et sp. nov Valid Murray Early Cenozoic (possibly Eocene) Sangkarewang  Indonesia A member of Cyprinoidea. Genus includes new species S. sumatranus.
Scleropages sanshuiensis[78] Sp. nov Valid Zhang Early Eocene Huachong  China A species of Scleropages. Announced in 2019; the final version of the article naming it was published in 2020.
Scombroclupea javieri[79] Sp. nov In press Than Marchese et al. Late Cretaceous (Cenomanian) Cintalapa  Mexico A member of Clupeomorpha of uncertain phylogenetic placement
Siniperca ikikoku[80] Sp. nov Valid Yabumoto Miocene  Japan A species of Siniperca.
Simocormus[58] Gen. et sp. nov Valid Maxwell et al. Late Jurassic (Kimmeridgian–Tithonian)  Germany A member of the family Pachycormidae. The type species is S. macrolepidotus.
Stanhopeichthys[81] Gen. et sp. nov Valid Taverne & Capasso Late Cretaceous (Cenomanian)  Lebanon A member of Crossognathiformes belonging to the family Pachyrhizodontidae. The type species is S. libanicus.
Stefanichthys[82] Gen. et sp. nov. Valid Bannikov & Zorzin Eocene]] (Ypresian) Monte Bolca  Italy A member of Percoidei of uncertain phylogenetic placement. The type species is S. mariannae.
Thorogobius petilus[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Messinian)  Italy A species of Thorogobius.
Thrax[28] Gen. et sp. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Ripley  United States
( Mississippi)
A member of Aulopiformes belonging to the family Ichthyotringidae. The type species is T. acutus.
Tippaha[28] Gen. et sp. et comb. nov Valid Schwarzhans & Stringer in Stringer et al. Late Cretaceous (Maastrichtian) Owl Creek

Ripley

 United States
( Mississippi)
A member of Holocentriformes of uncertain phylogenetic placement. The type species is T. mythica; genus also includes "genus Ophidiidarum" cavatus Nolf & Stringer (1996).
Vachalia[83] Gen. et sp. nov Valid Přikryl & Carnevale Early Oligocene  Czech Republic A member of the family Platytroctidae. Genus includes new species V. moraviensis.

Vanderhorstia prochazkai[41]

Sp. nov

Valid

Schwarzhans, Brzobohatý & Radwańska

Miocene

 Ukraine[59]

A species of Vanderhorstia.

Vegrandichthys[84] Gen. et sp. nov Valid Díaz-Cruz, Alvarado-Ortega & Giles Late Cretaceous (Cenomanian) Cintalapa  Mexico A member of Aulopiformes belonging to the family Enchodontidae. The type species is V. coitecus.

Warilochromis[85]

Gen. et sp. nov

Valid

Altner, Ruthensteiner & Reichenbacher

Late Miocene

Ngorora

 Kenya

A cichlid belonging to the subfamily Pseudocrenilabrinae. The type species is W. unicuspidatus.

Zosterisessor exsul[34] Sp. nov Valid Schwarzhans, Agiadi & Carnevale Miocene (Messinian)  Italy
 Romania
A relative of the grass goby.

Lobe-finned fishes

NameNoveltyStatusAuthorsAgeType localityCountryNotesImages
Ferganoceratodus annekempae[86] Sp. nov Valid Cavin, Deesri & Chanthasit Late Jurassic Phu Kradung  Thailand A lungfish.
Megalichthys mullisoni[87] Sp. nov Valid Downs & Daeschler Devonian (Famennian) Catskill  United States
( Pennsylvania)
Metaceratodus baibianorum[88] Sp. nov Valid Panzeri et al. Late Cretaceous La Colonia  Argentina A lungfish.
Neoceratodus potkooroki[89] Sp. nov Valid Kemp & Berrell Cretaceous  Australia A lungfish.
Ptychoceratodus oldhami[90] Sp. nov Valid Bhat & Ray Late Triassic (Carnian) Tiki  India A lungfish. Announced in 2018; the final version of the article naming it was published in 2020.
Rossichthys[91] Gen. et sp. nov Valid Johanson et al. Carboniferous (Tournaisian) Ballagan Formation  United Kingdom A member of Rhizodontida. The type species is R. clackae.

Research

  • A study on the morphology of the osteostracans, evaluating different methods used to determine the morphological variation within this group and its evolution, is published by Ferrón et al. (2020).[92]
  • A study on the morphological diversity of osteostracan headshields, aiming to determine the relationship between their morphological diversity and hydrodynamic performance and its implications for the knowledge of the ecological diversity of the osteostracans, is published by Ferrón et al. (2020).[93]
  • A study aiming to test the alternative hypotheses of placoderm jaw bone homologies, and evaluating their implications for the knowledge of evolution of jaw bones in early jawed vertebrates, is published by King & Rücklin (2020).[94]
  • A study on the fossil dentitions of acanthothoracids is published by Vaškaninová et al. (2020), who report that the teeth of acanthothoracids differed fundamentally from those of arthrodires, and argue that the characteristic traits of acanthothoracid dentition might be ancestral for all jawed vertebrates.[95]
  • Redescription of the anatomy of Walterilepis speciosa, based on data from new fossil material, and a study on the phylogenetic relationships of this species is published online by Lukševičs (2020).[96]
  • Description of the neurocranial anatomy of Ellopetalichthys scheii is published by Castiello et al. (2020).[97]
  • A study aiming to determine whether Titanichthys was a suspension feeder, focusing on mechanical properties of its jaw, is published by Coatham et al. (2020).[98]
  • The earliest fossilized vertebrate embryos reported so far, preserved with an adult specimen of Watsonosteus fletti from the Givetian Eday Flagstone Formation (Orcadian Basin; Scotland, United Kingdom), are described by Newman et al. (2020).[99]
  • Burrow, Newman & den Blaauwen (2020) describe external spiracular elements in Middle Devonian acanthodians from northern Scotland, differing from spiracles of all known extant and extinct fishes, and report the oldest record of elastic cartilage in the fossil record.[100]
  • A study examining the factors influencing the long-term variations of genus-level diversity of elasmobranchs and ray-finned fishes throughout their evolutionary history is published by Guinot & Cavin (2020).[101]
  • Carrillo-Briceño et al. (2020) describe a new elasmobranch assemblage from the Oligocene–Miocene boundary in the Dos Bocas Formation (Ecuador), and evaluate the implications of this assemblage for chronostratigraphic inferences and the knowledge of local paleoenvironment.[102]
  • Two large vertebrae of sharks belonging to the genus Ptychodus, providing new information on the life history and body size of members of the family Ptychodontidae, are described from the Santonian of Spain by Jambura & Kriwet (2020).[103]
  • A study on the evolution of body size in lamniform sharks, including the evolution of gigantism in the lineage of Otodus megalodon, is published by Shimada, Becker & Griffiths (2020).[104]
  • Taxonomic revision of the Oligocene and Miocene sand sharks is published by Hovestadt (2020).[105]
  • A study aiming to determine the linear body dimensions of Otodus megalodon at different life stages is published by Cooper et al. (2020).[106]
  • A study on the class structure of assemblages of specimens of Otodus megalodon in eight previously known formations and in a newly described Miocene locality from northeastern Spain is published by Herraiz et al. (2020), who interpret their findings as indicative of existence of five potential nurseries of these sharks ranging from the Langhian to the Zanclean.[107]
  • An isolated tooth of Cosmopolitodus hastalis from the Miocene of South Korea is described by Yun (2020).[108]
  • A study on the fossil record of the great white shark from the Pliocene of Peru and Chile is published by Villafaña et al. (2020), who interpret their findings as indicating that great white sharks used the Coquimbo locality in Chile as a nursery and Pisco (Peru) and Caldera (Chile) localities as feeding grounds during the Pliocene.[109]
  • A study on the anatomy and phylogenetic relationships of "Urolophus" crassicaudatus is published by Marramà et al. (2020), who transfer this species to the genus Arechia.[110]
  • Collareta et al. (2020) describe a fossil stinger a stingray from the Pliocene (Piacenzian) locality La Serra (Italy), twice as long as the longest caudal spines reported from any living stingray species of the Mediterranean Sea, and possibly representing the longest stingray stinger ever reported from both the fossil and the recent records.[111]
  • A study on the morphology of the marginal dentition of Lophosteus superbus is published by Chen et al. (2020), who reconstruct the dental ontogeny in this taxon, and evaluate its implications for the knowledge of the evolution of teeth of bony fishes.[112]
  • Redescription of the anatomy of Tanyrhinichthys mcallisteri is published by Stack et al. (2020).[113]
  • Fragmentary fossil material of Gyrosteus mirabilis is reported from the Toarcian of the Ahrensburg erratics assemblage (Schleswig-Holstein, Germany) by Hornung & Sachs (2020), expanding known geographic range of this species, and representing the first record of a chondrosteid species beyond its type area.[114]
  • Redescription of the skeletal anatomy of Yanosteus longidorsalis is published by Hilton, Grande & Jin (2020).[115]
  • Revision and a study on the phylogenetic relationships of members of the subfamily Pycnodontinae is published by Poyato-Ariza (2020).[116]
  • A study on the skeletal anatomy and phylogenetic relationships of Lombardina decorata is published by Taverne (2020).[117]
  • A study on the degree of preservation of the skin of an aspidorhynchid specimen from the Barremian Paja Formation (Colombia), representing the first instance of soft tissue preservation in vertebrates from the Early Cretaceous of northern South America, is published by Alfonso-Rojas & Cadena (2020).[118]
  • A study on the diversity and distribution of non-marine teleost fishes in the Western Interior of North America during the late Maastrichtian, based on fossils from the Hell Creek Formation, the Lance Formation and the Scollard Formation, is published online by Brinkman et al. (2020).[119]
  • Description of new fossil material of Abisaadichthys libanicus and Eusebichthys byblosi, providing new information on the skeletal anatomy of these taxa, is published by Taverne & Capasso (2020).[120]
  • Fossil material of Xiphactinus is described from the latest Maastrichtian Salamanca Formation (Chubut Province, Argentina) by De Pasqua, Agnolin & Bogan (2020), representing the first record of this genus from southern part of South America.[121]
  • A methodology for assessing locomotion energetics in extinct bony fishes is presented by Ferrón (2020), who interprets his findings as providing evidence of endothermy in Xiphactinus audax.[122]
  • Redescription and a study on the phylogenetic relationships of Laeliichthys ancestralis is published by Brito, Figueiredo & Leal (2020).[123]
  • A study on the skeletal anatomy of Pirskenius, aiming to resolve whether Pirskeniidae can be sustained as a separate family, is published by Reichenbacher et al. (2020).[124]
  • A study aiming to infer the genetic basis of the reduction of pelvic skeleton in a Miocene stickleback fish Gasterosteus doryssus is published by Stuart, Travis & Bell (2020).[125]
  • A fish larva sharing anatomical similarities with the so‐called tholichthys larval stage of butterflyfishes is described from the Eocene (Bartonian) locality of Gornyi Luch (Krasnodar Krai, Russia) by Carnevale & Bannikov (2020).[126]
  • New fossil material of Mawsonia gigas, including one of the anatomically most informative specimens referable to the genus Mawsonia, is described from the Mesozoic Tacuarembó Formation (Uruguay) by Toriño et al. (2020).[127]
  • New fossil material of Axelrodichthys megadromos is described from several Campanian and Maastrichtian sites in southern France by Cavin et al. (2020), who present a reconstruction of the skull of this species, and study its phylogenetic relationships and ecology.[128]
  • Redescription of the anatomy of the skull of Durialepis edentatus is published by Mondéjar‐Fernández, Friedman & Giles (2020).[129]
  • Description of new material of tristichopterids from the Devonian (Famennian) locality of Strud (Belgium), and a study on the phylogenetic relationships of tristichopterids, is published by Olive et al. (2020).[130]
  • Description of a new, 1.57-metre-long articulated specimen of Elpistostege watsoni from the Upper Devonian of Canada, and a study on the implications of this specimen for the knowledge of the early evolution of the vertebrate hand, is published by Cloutier et al. (2020).[131]
  • A study aiming to determine the potential significance of tides for the evolution of bony fish and early tetrapods from the Late Silurian to early Late Devonian is published by Byrne et al. (2020).[132]
  • Evidence of enhanced fish production during the extreme global warmth of the early Paleogene is presented by Britten & Sibert (2020).[133]
  • A study aiming to determine the impact of changes in the Earth system during the Eocene–Oligocene transition on pelagic fish production and biodiversity is published by Sibert et al. (2020).[134]

References

  1. 1 2 3 David K. Elliott; Linda S. Lassiter; Kathryn E. Geyer (2020). "The last pteraspids (Vertebrata, Heterostraci): new material from the Middle Devonian of Alberta and Idaho". Journal of Paleontology. 94 (4): 758–772. Bibcode:2020JPal...94..758E. doi:10.1017/jpa.2020.9. S2CID 218776355.
  2. 1 2 3 Xin-Dong Cui; Qiang Li; Tuo Qiao; Min Zhu (2020). "New material of thelodonts from Lochkovian (Lower Devonian) of Qujing, Yunnan, China". Vertebrata PalAsiatica. 58 (1): 1–15. doi:10.19615/j.cnki.1000-3118.190612.
  3. Marek Dec (2020). "A new Middle Devonian (Givetian) psammosteid (Vertebrata: Heterostraci) from Poland". Annales Societatis Geologorum Poloniae. 90 (1): 75–93. doi:10.14241/asgp.2020.04. S2CID 225233821.
  4. Xianren Shan; Min Zhu; Wenjin Zhao; Zhaohui Pan; Pingli Wang; Zhikun Gai (2020). "A new genus of sinogaleaspids (Galeaspida, stem-Gnathostomata) from the Silurian Period in Jiangxi, China". PeerJ. 8: e9008. doi:10.7717/peerj.9008. PMC 7233274. PMID 32461826.
  5. 1 2 Dmitry P. Plax; Michael J. Newman (2020). "New Early Devonian (late Emsian) placoderms from Belarus". Journal of Paleontology. 94 (4): 773–787. Bibcode:2020JPal...94..773P. doi:10.1017/jpa.2020.6. S2CID 216191250.
  6. Yilong Liu; Ruiwen Zong; Yiming Gong (2020). "The first aspinothoracid arthrodire from the Late Devonian continental strata are found in western Junggar, Xinjiang". Chinese Science Bulletin. 65 (21): 2256–2265. doi:10.1360/TB-2020-0108. S2CID 225991890.
  7. Valéria Vaškaninová (2020). "New genus of homostiid arthrodire contributes to the revision of placoderm diversity in the Early Devonian of the Prague Basin". Alcheringa: An Australasian Journal of Palaeontology. 44 (3): 397–410. Bibcode:2020Alch...44..397V. doi:10.1080/03115518.2020.1749303. S2CID 219456262.
  8. Martin D. Brazeau; Sam Giles; Richard P. Dearden; Anna Jerve; Ya. Ariunchimeg; E. Zorig; Robert Sansom; Thomas Guillerme; Marco Castiello (2020). "Endochondral bone in an Early Devonian 'placoderm' from Mongolia". Nature Ecology & Evolution. 4 (11): 1477–1484. Bibcode:2020NatEE...4.1477B. doi:10.1038/s41559-020-01290-2. hdl:10044/1/82739. PMID 32895518. S2CID 221543148.
  9. Michael J. Newman; Jan L. Den Blaauwen; Carole J. Burrow (2020). "Two newly identified cheiracanthid acanthodians from the Mey Flagstone Formation (Givetian, Middle Devonian) of the Orcadian Basin, Scotland". Scottish Journal of Geology. 57: sjg2020-009. doi:10.1144/sjg2020-009. S2CID 224879065.
  10. 1 2 3 4 5 6 7 8 9 10 Sylvain Adnet; Laurent Marivaux; Henri Cappetta; Anne-Lise Charruault; El Mabrouk Essid; Suzanne Jiquel; Hayet Khayati Ammar; Bernard Marandat; Wissem Marzougui; Gilles Merzeraud; Rim Temani; Monique Vianey-Liaud; Rodolphe Tabuce (2020). "Diversity and renewal of tropical elasmobranchs around the Middle Eocene Climatic Optimum (MECO) in North Africa: New data from the lagoonal deposits of Djebel el Kébar, Central Tunisia". Palaeontologia Electronica. 23 (2): Article number 23(2):a38. doi:10.26879/1085. S2CID 221506440.
  11. Márton Szabó; István Főzy (2020). "Asteracanthus (Hybodontiformes: Acrodontidae) remains from the Jurassic of Hungary, with the description of a new species and with remarks on the taxonomy and paleobiology of the genus". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 297 (3): 295–309. doi:10.1127/njgpa/2020/0926. S2CID 225326215.
  12. 1 2 3 Bernard Siguendibo Sambou; Lionel Hautier; Raphael Sarr; Rodolphe Tabuce; Fabrice Lihoreau; Moustapha Thiam; Renaud Lebrun; Jeremy E. Martin; Henri Cappetta; Sylvain Adnet (2020). "Contribution to the reappraisal of the mid Paleogene ichtyofauna of Western Africa with three new enigmatical elasmobranchs from Thanetian–Lutetian of Senegal" (PDF). Annales de Paléontologie. 106 (3): Article 102400. Bibcode:2020AnPal.10602400S. doi:10.1016/j.annpal.2020.102400. S2CID 216465866.
  13. Evgeny V. Popov; Marjorie J. Johns; Stephen Suntok (2020). "A new genus of chimaerid fish (Holocephali, Chimaeridae) from the Upper Oligocene Sooke Formation of British Columbia, Canada". Journal of Vertebrate Paleontology. 40 (1): e1772275. Bibcode:2020JVPal..40E2275P. doi:10.1080/02724634.2020.1772275. S2CID 221751740.
  14. John G. Maisey; Dana J. Ehret; John S.S. Denton (2020). "A new genus of Late Cretaceous angel shark (Elasmobranchii; Squatinidae), with comments on squatinid phylogeny". American Museum Novitates (3954): 1–29. doi:10.1206/3954.1. hdl:2246/7230. S2CID 219700378.
  15. 1 2 Giuseppe Marramà; Giorgio Carnevale; Kerin M. Claeson; Gavin J. P. Naylor; Jürgen Kriwet (2020). "Revision of the Eocene 'Platyrhina' species from the Bolca Lagerstätte (Italy) reveals the first panray (Batomorphii: Zanobatidae) in the fossil record". Journal of Systematic Palaeontology. 18 (18): 1519–1542. Bibcode:2020JSPal..18.1519M. doi:10.1080/14772019.2020.1783380. PMC 7455076. PMID 32939187. S2CID 221065291.
  16. 1 2 Giuseppe Marramà; Giorgio Carnevale; Gavin J. P. Naylor; Massimo Varese; Luca Giusberti; Jürgen Kriwet (2020). "Anatomy, taxonomy and phylogeny of the Eocene guitarfishes from the Bolca Lagerstätten, Italy, provide new insights into the relationships of the Rhinopristiformes (Elasmobranchii: Batomorphii)". Zoological Journal of the Linnean Society. 192 (4): 1090–1110. doi:10.1093/zoolinnean/zlaa125.
  17. Linda Frey; Michael I. Coates; Kristen Tietjen; Martin Rücklin; Christian Klug (2020). "A symmoriiform from the Late Devonian of Morocco demonstrates a derived jaw function in ancient chondrichthyans". Communications Biology. 3 (1): Article number 681. doi:10.1038/s42003-020-01394-2. PMC 7672094. PMID 33203942.
  18. Alexander O. Ivanov; Merlynd K. Nestell; Galina P. Nestell; Gorden L. Bell Jr. (2020). "New fish assemblages from the Middle Permian from the Guadalupe Mountains, West Texas, USA". Palaeoworld. 29 (2): 239–256. doi:10.1016/j.palwor.2018.10.003. S2CID 134496257.
  19. 1 2 David J. Cicimurri; Jun A. Ebersole; George Martin (2020). "Two new species of Mennerotodus Zhelezko, 1994 (Chondrichthyes: Lamniformes: Odontaspididae), from the Paleogene of the southeastern United States". Fossil Record. 23 (2): 117–140. Bibcode:2020FossR..23..117C. doi:10.5194/fr-23-117-2020. S2CID 221737251.
  20. Iris Feichtinger; Jürgen Pollerspöck; Mathias Harzhauser (2020). "A new species of the enigmatic shark genus Nanocetorhinus (Chondrichthyes) from the Oligocene of Austria with palaeoceanographic implications". Austrian Journal of Earth Sciences. 113 (1–2): 229–236. Bibcode:2020AsJES.113..229F. doi:10.17738/ajes.2020.0014. S2CID 227313907.
  21. 1 2 3 4 Thomas Reinecke; Jürgen Pollerspöck; Hiroyuki Motomura; Helmut Bracher; Leo Dufraing; Thomas Güthner; Fritz von der Hocht (2020). "Sawsharks (Pristiophoriformes, Pristiophoridae) in the Oligocene and Neogene of Europe and their relationships with extant species based on teeth and rostral denticles". Palaeontos. 33.
  22. Oleg A. Lebedev; Alexander O. Ivanov; Valeriy V. Linkevich (2020). "Chondrichthyan spines from the Famennian (Upper Devonian) of Russia". Acta Geologica Polonica. 70 (3): 339–362. doi:10.24425/agp.2020.132255. S2CID 219489825.
  23. 1 2 3 4 Plamen S. Andreev; Wenjin Zhao; Nian-Zhong Wang; Moya M. Smith; Qiang Li; Xindong Cui; Min Zhu; Ivan J. Sansom (2020). "Early Silurian chondrichthyans from the Tarim Basin (Xinjiang, China)". PLoS ONE. 15 (2): e0228589. Bibcode:2020PLoSO..1528589A. doi:10.1371/journal.pone.0228589. PMC 7018067. PMID 32053606.
  24. 1 2 Samuel L.A. Cooper; David M. Martill (2020). "A diverse assemblage of pycnodont fishes (Actinopterygii, Pycnodontomorpha) from the mid-Cretaceous, continental Kem Kem beds of South-East Morocco". Cretaceous Research. 112: Article 104456. doi:10.1016/j.cretres.2020.104456. S2CID 216214083.
  25. 1 2 Martin Ebert (2020). "Elongofuro and Altmuehlfuro, new genera of Halecomorphi (Neopterygii) from the Upper Jurassic of the Solnhofen Archipelago and Nusplingen (Germany)". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 295 (2): 185–210. doi:10.1127/njgpa/2020/0883. S2CID 216400476.
  26. Yoshitaka Yabumoto; Koji Hirose; Paulo M. Brito (2020). "A new ichthyodectiform fish, Amakusaichthys goshouraensis gen. et sp. nov. from the Upper Cretaceous (Santonian) Himenoura Group in Goshoura, Amakusa, Kumamoto, Japan". Historical Biology: An International Journal of Paleobiology. 32 (3): 362–375. Bibcode:2020HBio...32..362Y. doi:10.1080/08912963.2018.1497022. S2CID 91632554.
  27. 1 2 3 4 5 6 7 8 9 10 11 12 Werner Schwarzhans; Gary L. Stringer (2020). "Fish otoliths from the late Maastrichtian Kemp Clay (Texas, USA) and the early Danian Clayton Formation (Arkansas, USA) and an assessment of extinction and survival of teleost lineages across the K-Pg boundary based on otoliths". Rivista Italiana di Paleontologia e Stratigrafia. 126 (2): 395–446. doi:10.13130/2039-4942/13425.
  28. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 Gary L. Stringer; Werner Schwarzhans; George Phillips; Roger Lambert (2020). "Highly diversified Late Cretaceous fish assemblage revealed by otoliths (Ripley Formation and Owl Creek Formation, northeast Mississippi, USA)". Rivista Italiana di Paleontologia e Stratigrafia. 126 (1): 111–155. doi:10.13130/2039-4942/13013.
  29. 1 2 Luigi Capasso (2020). "†Pycnodonts (Neopterygii, †Pycnodontiformes) from the Del Rio Formation (Early Cenomanian, Cretaceous) of Waco Lake, Texas (U.S.A.)". Thalassia Salentina. 42: 9–24. doi:10.1285/i15910725v42p9.
  30. Alexandre F. Bannikov; Roberto Zorzin (2020). "A new genus and species of percomorph fish ("stem pleuronectiform") from the Eocene of Bolca in northern Italy" (PDF). Studi e ricerche sui giacimenti terziari di Bolca, XX - Miscellanea Paleontologica. 17: 5–14.
  31. 1 2 Orangel Aguilera; Ricardo T. Lopes; Felix Rodriguez; Thaís M. dos Santos; Caroline Rodrigues-Almeida; Paulo Almeida; Alessandra S. Machado; Tailan Moretti (2020). "Fossil sea catfish (Siluriformes; Ariidae) otoliths and in-skull otoliths from the Neogene of the Western Central Atlantic". Journal of South American Earth Sciences. 101: Article 102619. Bibcode:2020JSAES.10102619A. doi:10.1016/j.jsames.2020.102619. S2CID 219045960.
  32. Jesús Alvarado-Ortega; Bruno Andrés Than-Marchese; María del Pilar Melgarejo-Damián (2020). "On the Albian occurrence of Armigatus (Teleostei, Clupeomorpha) in America, a new species from the Tlayúa Lagerstätte, Mexico". Palaeontologia Electronica. 23 (3): Article number 23(3):a52. doi:10.26879/1107. S2CID 229647341.
  33. Melanie Altner; Bettina Reichenbacher (2020). "A small cichlid species flock from the Upper Miocene (9–10 MYA) of Central Kenya". Hydrobiologia. 848 (16): 3613–3637. doi:10.1007/s10750-020-04358-z. S2CID 221145584.
  34. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 Werner Schwarzhans; Konstantina Agiadi; Giorgio Carnevale (2020). "Late Miocene–early Pliocene evolution of Mediterranean gobies and their environmental and biogeographic significance". Rivista Italiana di Paleontologia e Stratigrafia. 126 (3): 657–723. doi:10.13130/2039-4942/14185.
  35. Robert E. Weems (2020). "Additions to the bony fish fauna from the early Eocene Nanjemoy Formation of Maryland and Virginia (U.S.A)". The Mosasaur. The Journal of the Delaware Valley Paleontological Society. XI: 117–152.
  36. Federico L. Agnolin; Sergio Bogan (2020). "Goliath catfish Brachyplatystoma Bleeker, 1862 (Siluriformes: Pimelodidae) from the Miocene of Argentina". Journal of South American Earth Sciences. 100: Article 102551. Bibcode:2020JSAES.10002551A. doi:10.1016/j.jsames.2020.102551. S2CID 216380969.
  37. Aleksandr Bakaev; Ilja Kogan (2020). "A new species of Burguklia (Pisces, Actinopterygii) from the Middle Permian of the Volga Region (European Russia)". PalZ. 94 (1): 93–106. Bibcode:2020PalZ...94...93B. doi:10.1007/s12542-019-00487-6. S2CID 201966465.
  38. A. F. Bannikov (2020). "A new genus and species of scombrid fish (Perciformes, Scombroidei, Scombridae) from the Lower Oligocene of the Caucasus". Paleontological Journal. 54 (1): 59–67. Bibcode:2020PalJ...54...59B. doi:10.1134/S0031030120010037. S2CID 212936546.
  39. Kleyton Magno Cantalice Severiano; Jesús Alvarado Ortega; David Bellwood (2020). "†Chaychanus gonzalezorum gen. et sp. nov.: A damselfish fossil (Pomacentridae; Percomorphaceae), from the Early Paleocene outcrop of Chiapas, Southeastern Mexico". Journal of South American Earth Sciences. 98: Article 102322. doi:10.1016/j.jsames.2019.102322. S2CID 202910177.
  40. Dmitry Plax (2020). "A new species of the actinopterygian fish (Osteichthyes, Actinopterygii) from the Eifelian deposits of the Vileyka Buried Ridge (Belarus)". Лiтасфера. 1 (52): 68–74.
  41. 1 2 3 4 5 6 7 Werner Schwarzhans; Rotislav Brzobohatý; Urszula Radwańska (2020). "Goby otoliths from the Badenian (middle Miocene) of the Central Paratethys from the Czech Republic, Slovakia and Poland: A baseline for the evolution of the European Gobiidae (Gobiiformes; Teleostei)". Bollettino della Società Paleontologica Italiana. 59 (2): 125–173. doi:10.4435/BSPI.2020.10.
  42. Yoshitaka Yabumoto; Mihkail V. Nazarkin (2020). "Clupea hanishinaensis nomen novum, a replacement name for the Miocene clupeid fish Clupea macrocephala Yabumoto and Nazarkin, 2018 from Nagano, Japan". Paleontological Research. 24 (3): 238. doi:10.2517/2019PR011. S2CID 220281581.
  43. Gi-Soo Nam; Mikhail V. Nazarkin (2020). "A Neogene bristlemouth of the genus Cyclothone (Stomiiformes: Gonostomatidae) from South Korea". Historical Biology: An International Journal of Paleobiology. 33 (11): 2639–2645. doi:10.1080/08912963.2020.1820000. S2CID 224937137.
  44. Márcia Aparecida dos Reis Polck; Valéria Gallo; Francisco J. de Figueiredo; Samuel Magalhães Viana; Viviane Sampaio Santiago dos Santos; João Villar de Queiroz Neto; Ricardo Jorge Jahnert (2020). "†Ellimma longipectoralis sp. nov. (Teleostei: Clupeomorpha: †Ellimmichthyiformes) from the Aptian of the Santos Basin, southeastern Brazil". Journal of South American Earth Sciences. 98: Article 102318. Bibcode:2020JSAES..9802318P. doi:10.1016/j.jsames.2019.102318. S2CID 202181577.
  45. Francisco J. de Figueiredo; Valéria Gallo (2020). "Revision of †Ellimmichthys longicostatus (Clupeomorpha: †Ellimmichthyiformes) from the Lower Cretaceous of Brazil with comments on the taxonomy of related species". Journal of South American Earth Sciences. 105: Article 103006. doi:10.1016/j.jsames.2020.103006. S2CID 228863238.
  46. Alison M. Murray; Donald B. Brinkman; David G. DeMar JR; Gregory P. Wilson (2020). "Paddlefish and sturgeon (Chondrostei: Acipenseriformes: Polyodontidae and Acipenseridae) from lower Paleocene deposits of Montana, U.S.A.". Journal of Vertebrate Paleontology. 40 (2): e1775091. Bibcode:2020JVPal..40E5091M. doi:10.1080/02724634.2020.1775091. S2CID 222213273.
  47. Yuri Modesto Alves; Jesús Alvarado-Ortega; Paulo M. Brito (2020). "†Epaelops martinezi gen. and sp. nov. from the Albian limestone deposits of the Tlayúa quarry, Mexico – a new late Mesozoic record of Elopiformes of the western Tethys". Cretaceous Research. 110: Article 104260. Bibcode:2020CrRes.11004260A. doi:10.1016/j.cretres.2019.104260. S2CID 210779794.
  48. Guang-Hui Xu (2020). "Feroxichthys yunnanensis gen. et sp. nov. (Colobodontidae, Neopterygii), a large durophagous predator from the Middle Triassic (Anisian) Luoping Biota, eastern Yunnan, China". PeerJ. 8: e10229. doi:10.7717/peerj.10229. PMC 7583626. PMID 33150093.
  49. Louis Taverne; Luigi Capasso; Maria Del Re (2020). "Osteology and phylogenetic relationships of Gregoriopycnodus bassanii gen. nov., a pycnodont fish (Pycnodontidae) from the marine Albian (Lower Cretaceous) of Pietraroja (southern Italy)" (PDF). Geo-Eco-Trop. 44 (1): 161–174.
  50. 1 2 3 Alison M. Murray (2020). "Early Cenozoic Cyprinoids (Ostariophysi: Cypriniformes: Cyprinidae and Danionidae) from Sumatra, Indonesia". Journal of Vertebrate Paleontology. 40 (1): e1762627. Bibcode:2020JVPal..40E2627M. doi:10.1080/02724634.2020.1762627. S2CID 221749238.
  51. Jesús Alvarado-Ortega; Jesús Alberto Díaz-Cruz (2020). "Hastichthys totonacus sp. nov., a North American Turonian dercetid fish (Teleostei, Aulopiformes) from the Huehuetla quarry, Puebla, Mexico". Journal of South American Earth Sciences. 105: Article 102900. doi:10.1016/j.jsames.2020.102900. S2CID 225118769.
  52. Rocio E. Baños Rodríguez; Katia Adriana González Rodríguez; Mark V.H. Wilson; Jorge Alberto González Martínez (2020). "A new species of Heckelichthys from the Muhi Quarry (Albian–Cenomanian) of Central Mexico". Cretaceous Research. 110: Article 104415. Bibcode:2020CrRes.11004415B. doi:10.1016/j.cretres.2020.104415. S2CID 213275574.
  53. Bettina Reichenbacher; Alexander F. Bannikov (2021). "Diversity of gobioid fishes in the late middle Miocene of northern Moldova, Eastern Paratethys – part I: an extinct clade of Lesueurigobius look-alikes". PalZ. 96: 67–112. doi:10.1007/s12542-021-00573-8.
  54. Su-Hwan Kim; Yuong-Nam Lee; Jin-Young Park; Sungjin Lee; Hang-Jae Lee (2020). "The first record of redfieldiiform fish (Actinopterygii) from the Upper Triassic of Korea: Implications for paleobiology and paleobiogeography of Redfieldiiformes". Gondwana Research. 80: 275–284. Bibcode:2020GondR..80..275K. doi:10.1016/j.gr.2019.11.008. S2CID 213571269.
  55. 1 2 Werner Schwarzhans (2023). "Geology and stratigraphy of the Neogene section along the Oued Beth between Dar bel Hamri and El Kansera (Rharb Basin, northwestern Morocco) and its otolith-based fish fauna: a faunal inventory for the Early Pliocene remigration into the Mediterranean". Swiss Journal of Palaeontology. 142 (1). 4. Bibcode:2023SwJP..142....4S. doi:10.1186/s13358-023-00268-4.
  56. Nora Carolin; Sunil Bajpai; Abhayanand Singh Maurya; Werner Schwarzhans (2023). "New perspectives on late Tethyan Neogene biodiversity development of fishes based on Miocene (~ 17 Ma) otoliths from southwestern India". PalZ. 97 (1): 43–80. Bibcode:2023PalZ...97...43C. doi:10.1007/s12542-022-00623-9. S2CID 249184395.
  57. 1 2 Martin Ebert; Detlev Thies; Rolf B. Hauff (2020). "First evidence of ganoin-scaled Halecomorphi (Neopterygii) in the Lower Jurassic of Holzmaden and Ohmden, Germany". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 295 (3): 307–326. doi:10.1127/njgpa/2020/0889. S2CID 216427872.
  58. 1 2 Erin E. Maxwell; Paul H. Lambers; Adriana López-Arbarello; Günter Schweigert (2020). "Re-evaluation of pachycormid fishes from the Late Jurassic of Southwestern Germany". Acta Palaeontologica Polonica. 65 (3): 429–453. doi:10.4202/app.00749.2020. S2CID 221691151.
  59. 1 2 3 Werner Schwarzhans; Oleksandr Klots; Tamara Ryabokon; Oleksandr Kovalchuk (2022). "A rare window into a back-reef fish community from the middle Miocene (late Badenian) Medobory Hills barrier reef in western Ukraine, reconstructed mostly by means of otoliths". Swiss Journal of Palaeontology. 141 (1). 18. Bibcode:2022SwJP..141...18S. doi:10.1186/s13358-022-00261-3.
  60. Alexander J. Veysey; Paulo M. Brito; David M. Martill (2020). "A new crossognathiform fish (Actinopterygii, Teleostei) from the Upper Cretaceous (Turonian) of Southern Morocco with hypertrophied fins". Cretaceous Research. 114: Article 104207. Bibcode:2020CrRes.11404207V. doi:10.1016/j.cretres.2019.104207. S2CID 202200253.
  61. Patrick H. McClellan; Gerald R. Smith (2020). "Late Miocene fishes of the Cache Valley Member, Salt Lake Formation, Utah and Idaho". Miscellaneous Publications. Museum of Zoology, University of Michigan. 208: 1–54. hdl:2027.42/163730.
  62. Louis Taverne; Luigi Capasso (2020). "Osteology and relationships of Lebrunichthys nammourensis gen. and sp. nov. (Teleostei, Crossognathiformes, Pachyrhizodontidae), a fossil fish from the marine Upper Cretaceous of Lebanon" (PDF). Geo-Eco-Trop. 44 (1): 195–203.
  63. Alison M. Murray; Donald B. Brinkman; Michael G. Newbrey; Andrew G. Neuman (2020). "Earliest North American articulated freshwater acanthomorph fish (Teleostei: Percopsiformes) from Upper Cretaceous deposits of Alberta, Canada". Geological Magazine. 157 (7): 1087–1096. Bibcode:2020GeoM..157.1087M. doi:10.1017/S0016756819001328. S2CID 212927875.
  64. Guang-Hui Xu (2020). "A new stem-neopterygian fish from the Middle Triassic (Anisian) of Yunnan, China, with a reassessment of the relationships of early neopterygian clades". Zoological Journal of the Linnean Society. 191 (2): 375–394. doi:10.1093/zoolinnean/zlaa053.
  65. Guang-Hui Xu (2020). "A new species of Luganoia (Luganoiidae, Neopterygii) from the Middle Triassic Xingyi Biota, Guizhou, China". Vertebrata PalAsiatica. 58 (4): 267–282. doi:10.19615/j.cnki.1000-3118.200624.
  66. Alessio Capobianco; Hermione T. Beckett; Etienne Steurbaut; Philip D. Gingerich; Giorgio Carnevale; Matt Friedman (2020). "Large-bodied sabre-toothed anchovies reveal unanticipated ecological diversity in early Palaeogene teleosts". Royal Society Open Science. 7 (5): Article ID 192260. Bibcode:2020RSOS....792260C. doi:10.1098/rsos.192260. PMC 7277248. PMID 32537214.
  67. Giorgio Carnevale; Theodore W. Pietsch; Niels Bonde; Maria E. C. Leal; Giuseppe Marramà (2020). "†Neilpeartia ceratoi, gen. et sp. nov., a new frogfish from the Eocene of Bolca, Italy". Journal of Vertebrate Paleontology. 40 (2): e1778711. Bibcode:2020JVPal..40E8711C. doi:10.1080/02724634.2020.1778711. S2CID 222210329.
  68. 1 2 Samuel L.A. Cooper; David M. Martill (2020). "Pycnodont fishes (Actinopterygii, Pycnodontiformes) from the Upper Cretaceous (lower Turonian) Akrabou Formation of Asfla, Morocco". Cretaceous Research. 116: Article 104607. Bibcode:2020CrRes.11604607C. doi:10.1016/j.cretres.2020.104607. PMC 7442934. PMID 32863512. S2CID 221217633.
  69. John Cawley; Jens Lehmann; Frank Wiese; Jürgen Kriwet (2020). "Njoerdichthys dyckerhoffi gen. et sp. nov. (Pycnodontiformes, lower Turonian) northward migration caused by the Cretaceous Thermal Maximum". Cretaceous Research. 116: Article 104590. Bibcode:2020CrRes.11604590C. doi:10.1016/j.cretres.2020.104590. PMC 7611863. PMID 34690488.
  70. Citlalli Hernández-Guerrero; Kleyton Magno Cantalice; Katia Adriana González-Rodríguez; Víctor Manuel Bravo-Cuevas (2020). "The first record of a pterothrissin (Albuliformes, Albulidae) from the Muhi Quarry, mid-Cretaceous (Albian-Cenomanian) of Hidalgo, central Mexico". Journal of South American Earth Sciences. 107: Article 103032. doi:10.1016/j.jsames.2020.103032. S2CID 228889550.
  71. 1 2 Werner W. Schwarzhans; Aleksandr A. Mironenko (2020). "First teleost otoliths from the Late Jurassic of Russia". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 295 (1): 1–8. doi:10.1127/njgpa/2020/0863. S2CID 214522150.
  72. Maxwell G. London; Kenshu Shimada (2020). "A new pachyrhizodontid fish (Actinopterygii: Teleostei) from the Tarrant Formation (Cenomanian) of the Upper Cretaceous Eagle Ford Group in Texas, USA". Cretaceous Research. 113: Article 104490. Bibcode:2020CrRes.11304490L. doi:10.1016/j.cretres.2020.104490. S2CID 219066064.
  73. Stephen J. Godfrey; Giorgio Carnevale (2020). "A new cobia (Teleostei, Rachycentridae) species from the Miocene St. Marys Formation along Calvert Cliffs, Maryland, USA". Journal of Paleontology. 95 (3): 630–637. doi:10.1017/jpa.2020.107. S2CID 233301980.
  74. 1 2 Charalampos Kevrekidis; Bernhard Ruthensteiner; Alexander F. Cerwenka; Stefanie B. R. Penk; Bettina Reichenbacher (2020). "New Cichlid Fossils from the Middle-Late Miocene Alkaline Lakes of Africa". Journal of Vertebrate Paleontology. 40 (4): e1805621. Bibcode:2020JVPal..40E5621K. doi:10.1080/02724634.2020.1805621. S2CID 224855992.
  75. Oleksandr Kovalchuk; Evgenia Baykina; Ewa Świdnicka; Krzysztof Stefaniak; Adam Nadachowski (2020). "A systematic revision of herrings (Teleostei, Clupeidae, Clupeinae) from the Oligocene and early Miocene from the Eastern Paratethys and the Carpathian Basin". Journal of Vertebrate Paleontology. 40 (2): e1778710. Bibcode:2020JVPal..40E8710K. doi:10.1080/02724634.2020.1778710. S2CID 222210250.
  76. A. F. Bannikov (2020). "A new family Salwaichthyidae (Pisces, Perciformes s.l.) from the lower Oligocene of the Caucasus and Carpathians". Paleontological Journal. 54 (4): 392–400. Bibcode:2020PalJ...54..392B. doi:10.1134/S0031030120040048. S2CID 221162335.
  77. Adriana López-Arbarello; Erin E. Maxwell; Günter Schweigert (2020). "New halecomorph (Actinopterygii, Neopterygii) from the Nusplingen Lithographic Limestone (Upper Jurassic, Late Kimmeridgian), Germany". Journal of Vertebrate Paleontology. 40 (2): e1771348. Bibcode:2020JVPal..40E1348L. doi:10.1080/02724634.2020.1771348. S2CID 222210172.
  78. Jiang-Yong Zhang (2020). "A new species of Scleropages (Osteoglossidae, Osteoglossomorpha) from the Eocene of Guangdong, China". Vertebrata PalAsiatica. 58 (2): 100–119. doi:10.19615/j.cnki.1000-3118.191213.
  79. Bruno Andrés Than Marchese; Jesús Alvarado Ortega; Wilfredo A. Matamoros; Ernesto Velázquez Velázquez (2020). "Scombroclupea javieri sp. nov., an enigmatic Cenomanian clupeomorph fish (Teleostei, Clupeomorpha) from the marine deposits of the Cintalapa Formation, Ocozocoautla, Chiapas, southeastern Mexico". Cretaceous Research. 112: Article 104448. Bibcode:2020CrRes.11204448T. doi:10.1016/j.cretres.2020.104448. S2CID 216299738.
  80. Yoshitaka Yabumoto (2020). "Siniperca ikikoku, a new species of freshwater percoid fish from the Miocene of Iki Island, Nagasaki, Japan". Paleontological Research. 24 (3): 226–237. doi:10.2517/2019PR016. S2CID 220281689.
  81. Louis Taverne; Luigi Capasso (2020). "Osteology and relationships of Stanhopeichthys libanicus gen. and sp. nov. (Teleostei, Crossognathiformes, Pachyrhizodontidae) from the marine Cenomanian (Upper Cretaceous) of Lebanon" (PDF). Geo-Eco-Trop. 44 (1): 147–160.
  82. Alexandre F. Bannikov; Roberto Zorzin (2020). "Stefanichthys mariannae, a new genus and species of percoid fish (Perciformes s.l.) from the Eocene of Bolca in northern Italy" (PDF). Studi e ricerche sui giacimenti terziari di Bolca, XX - Miscellanea Paleontologica. 17: 15–26.
  83. Tomáš Přikryl; Giorgio Carnevale (2020). "An Oligocene tubeshoulder (Teleostei, Alepocephaliformes) from the Central Paratethys (Czech Republic): the first skeletal record for the family Platytroctidae". Journal of Vertebrate Paleontology. 39 (6): e1719123. doi:10.1080/02724634.2019.1719123. S2CID 216207889.
  84. Jesús Alberto Díaz-Cruz; Jesús Alvarado-Ortega; Sam Giles (2020). "A long snout enchodontid fish (Aulopiformes: Enchodontidae) from the Early Cretaceous deposits at the El Chango quarry, Chiapas, southeastern Mexico: A multi-approach study". Palaeontologia Electronica. 23 (2): Article number 23(2):a30. doi:10.26879/1065. S2CID 221597441.
  85. Melanie Altner; Bernhard Ruthensteiner; Bettina Reichenbacher (2020). "New haplochromine cichlid from the upper Miocene (9–10 MYA) of Central Kenya". BMC Evolutionary Biology. 20 (1): Article number 65. Bibcode:2020BMCEE..20...65A. doi:10.1186/s12862-020-01602-x. PMC 7275555. PMID 32503417.
  86. Lionel Cavin; Uthumporn Deesri; Phornphen Chanthasit (2020). "A new lungfish from the Jurassic of Thailand". Journal of Vertebrate Paleontology. 40 (4): e1791895. Bibcode:2020JVPal..40E1895C. doi:10.1080/02724634.2020.1791895. S2CID 225146856.
  87. Jason P. Downs; Edward B. Daeschler (2020). "A new species of Megalichthys (Sarcopterygii, Megalichthyidae) from the Upper Devonian (Famennian) of Pennsylvania, U.S.A., and a report on the cosmine-covered osteolepiform fossils of the Catskill Formation". Journal of Vertebrate Paleontology. 40 (2): e1774771. Bibcode:2020JVPal..40E4771D. doi:10.1080/02724634.2020.1774771. S2CID 222210660.
  88. Karen M. Panzeri; Soledad Gouiric Cavalli; Nahuel A. Muñoz; Alberto L. Cione (2020). "Metaceratodus baibianorum, a new dipnoan species from the Upper Cretaceous of southern South America supported by traditional and geometric morphometric analyses". Journal of Vertebrate Paleontology. 40 (2): e1769640. Bibcode:2020JVPal..40E9640P. doi:10.1080/02724634.2020.1769640. S2CID 222210313.
  89. Anne Kemp; Rodney Berrell (2020). "A new Species of Fossil Lungfish (Osteichthyes: Dipnoi) from the Cretaceous of Australia". Journal of Vertebrate Paleontology. 40 (3): e1822369. Bibcode:2020JVPal..40E2369K. doi:10.1080/02724634.2020.1822369. S2CID 225133051.
  90. Mohd Shafi Bhat; Sanghamitra Ray (2020). "A record of new lungfishes (Osteichthyes: Dipnoi) from the Carnian (Upper Triassic) of India". Historical Biology: An International Journal of Paleobiology. 32 (3): 428–437. Bibcode:2020HBio...32..428B. doi:10.1080/08912963.2018.1499020. S2CID 92040062.
  91. Zerina Johanson; Jonathan Jeffery; Tom Challands; Stephanie E. Pierce; Jennifer A. Clack (2020). "A new look at Carboniferous rhizodontid humeri (Sarcopterygii; Tetrapodomorpha)". Journal of Vertebrate Paleontology. 40 (3): e1813150. Bibcode:2020JVPal..40E3150J. doi:10.1080/02724634.2020.1813150. S2CID 227241079.
  92. Humberto G. Ferrón; Jenny M. Greenwood; Bradley Deline; Carlos Martínez‐Pérez; Héctor Botella; Robert S. Sansom; Marcello Ruta; Philip C. J. Donoghue (2020). "Categorical versus geometric morphometric approaches to characterizing the evolution of morphological disparity in Osteostraci (Vertebrata, stem Gnathostomata)" (PDF). Palaeontology. 63 (5): 717–732. Bibcode:2020Palgy..63..717F. doi:10.1111/pala.12482. S2CID 218926737.
  93. Humberto G. Ferrón; Carlos Martínez-Pérez; Imran A. Rahman; Víctor Selles de Lucas; Héctor Botella; Philip C.J. Donoghue (2020). "Computational fluid dynamics suggests ecological diversification among stem-gnathostomes". Current Biology. 30 (23): 4808–4813.e3. doi:10.1016/j.cub.2020.09.031. hdl:1983/64553df1-3905-415c-bef0-5a137a3f89a0. PMID 33007247. S2CID 222095628.
  94. Benedict King; Martin Rücklin (2020). "A Bayesian approach to dynamic homology of morphological characters and the ancestral phenotype of jawed vertebrates". eLife. 9: e62374. doi:10.7554/eLife.62374. PMC 7793628. PMID 33274719.
  95. Valéria Vaškaninová; Donglei Chen; Paul Tafforeau; Zerina Johanson; Boris Ekrt; Henning Blom; Per Erik Ahlberg (2020). "Marginal dentition and multiple dermal jawbones as the ancestral condition of jawed vertebrates". Science. 369 (6500): 211–216. Bibcode:2020Sci...369..211V. doi:10.1126/science.aaz9431. PMID 32647004. S2CID 220428719.
  96. Ervīns Lukševičs (2020). "Revision of asterolepidoid antiarch remains from the Ogre Formation (Upper Devonian) of Latvia". Estonian Journal of Earth Sciences. 70 (1): 3–17. doi:10.3176/earth.2021.01. S2CID 230538554.
  97. Marco Castiello; Anna Jerve; Maria Grace Burton; Matt Friedman; Martin D. Brazeau (2020). "Endocranial morphology of the petalichthyid placoderm Ellopetalichthys scheii from the Middle Devonian of Arctic Canada, with remarks on the inner ear and neck joint morphology of placoderms". Canadian Journal of Earth Sciences. 58 (1): 93–104. doi:10.1139/cjes-2020-0005. hdl:10044/1/80971. S2CID 225230686.
  98. Samuel J. Coatham; Jakob Vinther; Emily J. Rayfield; Christian Klug (2020). "Was the Devonian placoderm Titanichthys a suspension feeder?". Royal Society Open Science. 7 (5): Article ID 200272. Bibcode:2020RSOS....700272C. doi:10.1098/rsos.200272. PMC 7277245. PMID 32537223.
  99. Michael J. Newman; Jan den Blaauwen; Carole Burrow; Roger Jones (2020). "Earliest vertebrate embryos in the fossil record (Middle Devonian, Givetian)". Palaeontology. 64 (1): 21–30. doi:10.1111/pala.12511. S2CID 225001446.
  100. Carole J. Burrow; Michael J. Newman; Jan L. den Blaauwen (2020). "First evidence of a functional spiracle in stem chondrichthyan acanthodians, with the oldest known elastic cartilage". Journal of Anatomy. 236 (6): 1154–1159. doi:10.1111/joa.13170. PMC 7219616. PMID 32064616.
  101. Guillaume Guinot; Lionel Cavin (2020). "Distinct responses of elasmobranchs and ray-finned fishes to long-term global change". Frontiers in Ecology and Evolution. 7: Article 513. doi:10.3389/fevo.2019.00513. S2CID 210861483.
  102. Jorge D. Carrillo-Briceño; Jaime A. Villafaña; Carlos De Gracia; F. Fernando Flores-Alcívar; René Kindlimann; Juan Abella (2020). "Diversity and paleoenvironmental implications of an elasmobranch assemblage from the Oligocene–Miocene boundary of Ecuador". PeerJ. 8: e9051. doi:10.7717/peerj.9051. PMC 7195833. PMID 32391203.
  103. Patrick L. Jambura; Jürgen Kriwet (2020). "Articulated remains of the extinct shark Ptychodus (Elasmobranchii, Ptychodontidae) from the Upper Cretaceous of Spain provide insights into gigantism, growth rate and life history of ptychodontid sharks". PLOS ONE. 15 (4): e0231544. Bibcode:2020PLoSO..1531544J. doi:10.1371/journal.pone.0231544. PMC 7176087. PMID 32320430.
  104. Kenshu Shimada; Martin A. Becker; Michael L. Griffiths (2020). "Body, jaw, and dentition lengths of macrophagous lamniform sharks, and body size evolution in Lamniformes with special reference to 'off-the-scale' gigantism of the megatooth shark, Otodus megalodon". Historical Biology: An International Journal of Paleobiology. 33 (11): 2543–2559. doi:10.1080/08912963.2020.1812598. S2CID 224935604.
  105. Dirk C. Hovestadt (2020). "Taxonomic adjustments of the Oligocene and Miocene Odontaspididae and Carchariidae based on extant specimens". Cainozoic Research. 20 (2): 229–255.
  106. Jack A. Cooper; Catalina Pimiento; Humberto G. Ferrón; Michael J. Benton (2020). "Body dimensions of the extinct giant shark Otodus megalodon: a 2D reconstruction". Scientific Reports. 10 (1): Article number 14596. Bibcode:2020NatSR..1014596C. doi:10.1038/s41598-020-71387-y. PMC 7471939. PMID 32883981.
  107. Jose L. Herraiz; Joan Ribé; Héctor Botella; Carlos Martínez-Pérez; Humberto G. Ferrón (2020). "Use of nursery areas by the extinct megatooth shark Otodus megalodon (Chondrichthyes: Lamniformes)". Biology Letters. 16 (11): Article ID 20200746. doi:10.1098/rsbl.2020.0746. PMC 7728678. PMID 33232650. S2CID 227153966.
  108. Chan-gyu Yun (2020). "New example of Cosmopolitodus hastalis (Lamniformes, Lamnidae) from the Miocene of South Korea". Zoodiversity. 54 (5): 433–438. doi:10.15407/zoo2020.05.433. S2CID 229274996.
  109. Jaime A. Villafaña; Sebastian Hernandez; Alonso Alvarado; Kenshu Shimada; Catalina Pimiento; Marcelo M. Rivadeneira; Jürgen Kriwet (2020). "First evidence of a palaeo-nursery area of the great white shark". Scientific Reports. 10 (1): Article number 8502. Bibcode:2020NatSR..10.8502V. doi:10.1038/s41598-020-65101-1. PMC 7244757. PMID 32444686.
  110. Giuseppe Marramà; Giorgio Carnevale; Gavin J. P. Naylor; Jürgen Kriwet (2020). "Skeletal anatomy, phylogenetic relationships, and paleoecology of the Eocene urolophid stingray Arechia crassicaudata (Blainville, 1818) from Monte Postale (Bolca Lagerstätte, Italy)". Journal of Vertebrate Paleontology. 40 (4): e1803339. Bibcode:2020JVPal..40E3339M. doi:10.1080/02724634.2020.1803339. S2CID 224858581.
  111. Alberto Collareta; Marco Merella; Simone Casati; Andrea Di Cencio (2020). "Did titanic stingrays wander the Pliocene Mediterranean Sea? Some notes on a giant-sized myliobatoid stinger from the Piacenzian of Italy". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 298 (2): 155–164. doi:10.1127/njgpa/2020/0941. S2CID 228950685.
  112. Donglei Chen; Henning Blom; Sophie Sanchez; Paul Tafforeau; Tiiu Märss; Per E. Ahlberg (2020). "The developmental relationship between teeth and dermal odontodes in the most primitive bony fish Lophosteus". eLife. 9: e60985. doi:10.7554/eLife.60985. PMC 7738188. PMID 33317696.
  113. Jack Stack; John-Paul Hodnett; Spencer G. Lucas; Lauren Sallan (2020). "Tanyrhinichthys mcallisteri, a long-rostrumed Pennsylvanian ray-finned fish (Actinopterygii) and the simultaneous appearance of novel ecomorphologies in Late Palaeozoic fishes". Zoological Journal of the Linnean Society. 191 (2): 347–374. doi:10.1093/zoolinnean/zlaa044.
  114. Jahn J. Hornung; Sven Sachs (2020). "First record of Gyrosteus mirabilis (Actinopterygii, Chondrosteidae) from the Toarcian (Lower Jurassic) of the Baltic region". PeerJ. 8: e8400. doi:10.7717/peerj.8400. PMC 6982408. PMID 32002331.
  115. Eric J. Hilton; Lance Grande; Fan Jin (2020). "Redescription of †Yanosteus longidorsalis Jin et al., 1995 (Chondrostei, Acipenseriformes, †Peipiaosteidae) from the Early Cretaceous of China". Journal of Paleontology. 95 (1): 170–183. doi:10.1017/jpa.2020.80. S2CID 225158727.
  116. Francisco José Poyato-Ariza (2020). "Studies on pycnodont fishes (II): revision of the subfamily Pycnodontinae, with special reference to Italian forms". Rivista Italiana di Paleontologia e Stratigrafia. 126 (2): 447–473. doi:10.13130/2039-4942/13514.
  117. Louis Taverne (2020). "Osteology and relationships of Lombardina decorata (Holostei, Parasemionotidae), a fossil fish from the continental Middle Jurassic of Congo (D. R. C.)" (PDF). Geo-Eco-Trop. 44 (3): 369–382.
  118. Andrés Alfonso-Rojas; Edwin-Alberto Cadena (2020). "Exceptionally preserved 'skin' in an Early Cretaceous fish from Colombia". PeerJ. 8: e9479. doi:10.7717/peerj.9479. PMC 7353916. PMID 32714661.
  119. Donald B. Brinkman; Julien Divay; David Gerard DeMar Jr; Gregory P. Wilson Mantilla (2020). "A systematic reappraisal and quantitative study of the non-marine teleost fishes from the late Maastrichtian of the Western Interior of North America – evidence from vertebrate microfossil localities". Canadian Journal of Earth Sciences. 58 (9): 936–967. doi:10.1139/cjes-2020-0168.
  120. Louis Taverne; Luigi Capasso (2020). "A new insight into the Protobramidae (Teleostei, Tselfatiiformes), a fossil fish family from the marine Cenomanian (Upper Cretaceous) of Lebanon" (PDF). Geo-Eco-Trop. 44 (3): 355–367.
  121. Julieta J. De Pasqua; Federico L. Agnolin; Sergio Bogan (2020). "First record of the ichthyodectiform fish Xiphactinus (Teleostei) from Patagonia, Argentina". Alcheringa: An Australasian Journal of Palaeontology. 44 (2): 327–331. Bibcode:2020Alch...44..327D. doi:10.1080/03115518.2019.1702221. S2CID 216170146.
  122. Humberto G. Ferrón (2020). "Evidence of endothermy in the extinct macropredatory osteichthyan Xiphactinus audax (Teleostei, Ichthyodectiformes)" (PDF). Journal of Vertebrate Paleontology. 39 (6): e1724123. doi:10.1080/02724634.2019.1724123. hdl:1983/e6d12da6-4f25-46ce-bb14-74fd2beddd82. S2CID 216158318.
  123. Paulo M. Brito; Francisco J. Figueiredo; Maria Eduarda C. Leal (2020). "A revision of Laeliichthys ancestralis Santos, 1985 (Teleostei: Osteoglossomorpha) from the Lower Cretaceous of Brazil: Phylogenetic relationships and biogeographical implications". PLOS ONE. 15 (10): e0241009. Bibcode:2020PLoSO..1541009B. doi:10.1371/journal.pone.0241009. PMC 7595333. PMID 33119676.
  124. Bettina Reichenbacher; Tomáš Přikryl; Alexander F. Cerwenka; Philippe Keith; Christoph Gierl; Martin Dohrmann (2020). "Freshwater gobies 30 million years ago: New insights into character evolution and phylogenetic relationships of †Pirskeniidae (Gobioidei, Teleostei)". PLOS ONE. 15 (8): e0237366. Bibcode:2020PLoSO..1537366R. doi:10.1371/journal.pone.0237366. PMC 7446829. PMID 32834000.
  125. Yoel E. Stuart; Matthew P. Travis; Michael A. Bell (2020). "Inferred genetic architecture underlying evolution in a fossil stickleback lineage". Nature Ecology & Evolution. 4 (11): 1549–1557. Bibcode:2020NatEE...4.1549S. doi:10.1038/s41559-020-01287-x. PMID 32839544. S2CID 221283715.
  126. Giorgio Carnevale; Alexandre F. Bannikov (2020). "A tholichthys‐like larva (Teleostei, Percomorpha) from the Eocene of Northern Caucasus, Russia". Lethaia. 54 (2): 204–210. doi:10.1111/let.12397. S2CID 225238402.
  127. Pablo Toriño; Matías Soto; Daniel Perea; Marise Sardenberg Salgado de Carvalho (2020). "New findings of the coelacanth Mawsonia Woodward (Actinistia, Latimerioidei) from the Late Jurassic – Early Cretaceous of Uruguay: Novel anatomical and taxonomic considerations and an emended diagnosis for the genus". Journal of South American Earth Sciences. 107: Article 103054. doi:10.1016/j.jsames.2020.103054. S2CID 229397087.
  128. Lionel Cavin; Eric Buffetaut; Yves Dutour; Géraldine Garcia; Jean Le Loeuff; Annie Méchin; Patrick Méchin; Haiyan Tong; Thierry Tortosa; Eric Turini; Xavier Valentin (2020). "The last known freshwater coelacanths: New Late Cretaceous mawsoniid remains (Osteichthyes: Actinistia) from Southern France". PLOS ONE. 15 (6): e0234183. Bibcode:2020PLoSO..1534183C. doi:10.1371/journal.pone.0234183. PMC 7274394. PMID 32502171.
  129. Jorge Mondéjar‐Fernández; Matt Friedman; Sam Giles (2020). "Redescription of the cranial skeleton of the Early Devonian (Emsian) sarcopterygian Durialepis edentatus Otto (Dipnomorpha, Porolepiformes)". Papers in Palaeontology. 7 (2): 789–806. doi:10.1002/spp2.1315. hdl:2027.42/167437. S2CID 218916402.
  130. Sébastien Olive; Yann Leroy; Edward B. Daeschler; Jason P. Downs; Sandrine Ladevèze; Gaël Clément (2020). "Tristichopterids (Sarcopterygii, Tetrapodomorpha) from the Upper Devonian tetrapod-bearing locality of Strud (Belgium, upper Famennian), with phylogenetic and paleobiogeographic considerations" (PDF). Journal of Vertebrate Paleontology. 40 (1): e1768105. Bibcode:2020JVPal..40E8105O. doi:10.1080/02724634.2020.1768105. S2CID 221749200.
  131. Richard Cloutier; Alice M. Clement; Michael S. Y. Lee; Roxanne Noël; Isabelle Béchard; Vincent Roy; John A. Long (2020). "Elpistostege and the origin of the vertebrate hand". Nature. 579 (7800): 549–554. Bibcode:2020Natur.579..549C. doi:10.1038/s41586-020-2100-8. PMID 32214248. S2CID 213171029.
  132. H. M. Byrne; J. A. M. Green; S. A. Balbus; P. E. Ahlberg (2020). "Tides: A key environmental driver of osteichthyan evolution and the fish-tetrapod transition?". Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences. 476 (2242): Article ID 20200355. Bibcode:2020RSPSA.47600355B. doi:10.1098/rspa.2020.0355. PMC 7655770. PMID 33223936.
  133. Gregory L. Britten; Elizabeth C. Sibert (2020). "Enhanced fish production during a period of extreme global warmth". Nature Communications. 11 (1): Article number 5636. Bibcode:2020NatCo..11.5636B. doi:10.1038/s41467-020-19462-w. PMC 7648762. PMID 33159071.
  134. Elizabeth C. Sibert; Michelle E. Zill; Ella T. Frigyik; Richard D. Norris (2020). "No state change in pelagic fish production and biodiversity during the Eocene–Oligocene transition". Nature Geoscience. 13 (3): 238–242. Bibcode:2020NatGe..13..238S. doi:10.1038/s41561-020-0540-2. S2CID 211730025.
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