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Dromaeosaurinae ✝

Source Data
SourceIDLink
Global Biodiversity Information Facility ID (GBIF)Not linked to a GBIF record.
PaleoBioDB ID (PBDB)54552https://paleobiodb.org/classic/checkTaxonInfo?taxon_no=54552
Ranksubfamily (PBDB)
Taxonomy (PBDB)Life : Animalia : Chordata : Saurischia : Avetheropoda : Dromaeosauridae : Dromaeosaurinae
Classification
(PBDB,GBIF)
RankNameAuthor
-Eukaryota
-OpisthokontaCavalier-Smith 1987
kingdomAnimalia
-TriploblasticaLankester 1877
-NephrozoaJondelius et al. 2002
-DeuterostomiaGrobben 1908
phylumChordataHaeckel 1847
subphylumVertebrataLamarck 1801
superclassGnathostomataGegenbauer 1874
-Osteichthyes
-SarcopterygiiRomer 1955
subclassDipnotetrapodomorpha
subclassTetrapodomorpha
-Tetrapoda
-ReptiliomorphaSäve-Söderbergh 1934
-AnthracosauriaSäve-Söderbergh 1934
-Batrachosauria
-Cotylosauria
-AmniotaHaeckel 1866
-SauropsidaHuxley 1864
classReptiliaLaurenti 1768
subclassEureptilia
-RomeriidaGauthier et al. 1988
-Diapsida
-Eosuchia
-NeodiapsidaBenton 1985
-SauriaGauthier 1984
-Archosauromorpha
-CrocopodaEzcurra 2016
-ArchosauriformesGauthier 1986
-EucrocopodaEzcurra 2016
-Archosauria
informalAvemetatarsaliaBenton 1999
-OrnithodiraGauthier 1986
-DinosauromorphaBenton 1985
-DinosauriformesNovas 1992
-Dinosauria
-Saurischia
-Theropoda
-NeotheropodaBakker 1986
-AverostraPaul 2002
-TetanuraeGauthier 1986
orderAvetheropodaPaul 1988
suborderCoelurosauriaHuene 1914
-ManiraptoraGauthier 1986
-ParavesSereno 1997
infraorderDeinonychosauriaColbert and Russell 1969
familyDromaeosauridaeColbert and Russell 1969
subfamilyDromaeosaurinaeMatthew and Brown 1922
Opinions (PBDB)
NameRankOpinionEvidenceAuthor
Dromaeosaurinaesubfamilybelongs to Deinodontidaestated without evidenceMatthew and Brown, 1922
Dromaeosaurinaesubfamilybelongs to Deinodontidaestated with evidenceKuhn, 1966
Dromaeosaurinaesubfamilysubjective synonym of Coeluridaestated without evidenceSteel, 1970
Dromaeosaurinaesubfamilybelongs to Dromaeosauridaestated without evidenceBarsbold, 1983
Dromaeosaurinaesubfamilybelongs to Archaeopterygidaestated without evidencePaul, 1988
Dromaeosaurinaesubfamilybelongs to Dromaeosauridaestated without evidenceCurrie et al., 1990
Dromaeosaurinaesubfamilybelongs to Dromaeosauridaestated with evidenceSereno, 1998
Dromaeosaurinaesubfamilybelongs to Dromaeosauridaestated without evidenceZinke, 1998
Dromaeosaurinaesubfamilybelongs to Dromaeosauridaestated with evidenceSenter et al., 2004
Dromaeosaurinaesubfamilybelongs to Dromaeosauridaestated without evidenceBurnham et al., 2004
Dromaeosaurinaesubfamilybelongs to Eudromaeosauriastated with evidenceLongrich and Currie, 2009
Dromaeosaurinaesubfamilybelongs to Dromaeosauridaestated with evidenceSenter et al., 2012
Dromaeosaurinaesubfamilybelongs to Dromaeosauridaestated without evidenceSanz et al., 2014
Status (PBDB)extinct
Taxon Size (PBDB)7
First Recorded Appearance152 - 145 Ma
Late Jurassic
Last Recorded Appearance70.6 - 66.0 Ma
Late/Upper Cretaceous
Environmentterrestrial (based on Dromaeosauridae)
Motilityactively mobile (based on Theropoda)
Dietcarnivore (based on Dromaeosauridae)
Reproductionoviparous (based on Dromaeosauridae)
Ontogenyaccretion,modification of parts (based on Theropoda)
Taphonomyhydroxylapatite,compact or dense (based on Theropoda)
Primary Reference (PBDB)W. D. Matthew and B. Brown. 1922. The family Deinodontidae, with notice of a new genus from the Cretaceous of Alberta. Bulletin of the American Museum of Natural History 46(6):367-385

Subtaxa

NameStatusCommon Name(s)Fossil OccurrencesOldestYoungest
Itemirus
genus
accepted (GBIF)
listed (PBDB)
693.5 Ma
Late/Upper Cretaceous
93.5 Ma
Late/Upper Cretaceous
Yurgovuchia
genus
listed (PBDB)1129 Ma
Early/Lower Cretaceous
129 Ma
Early/Lower Cretaceous
Zapsalis
genus
listed (PBDB)583.5 Ma
Late/Upper Cretaceous
70.6 Ma
Late/Upper Cretaceous

Synonymy List

YearName and Author
1922Dromaeosaurinae Matthew and Brown p. 378
1966Dromaeosaurinae Kuhn p. 94
1983Dromaeosaurinae Barsbold p. 89
1988Dromaeosaurinae Paul p. 360
1990Dromaeosaurinae Currie et al. p. 108
1992Dromaeosaurinae Currie p. 241
1995Dromaeosaurinae Currie
1997Dromaeosaurinae Currie p. 194
1998Dromaeosaurinae Sereno p. 65
1998Dromaeosaurinae Zinke p. 181
2000Dromaeosaurinae Currie p. 435
YearName and Author
2003Dromaeosaurinae Ruiz-Omeñaca and Canudo p. 291
2004Dromaeosaurinae Burnham et al. p. 42A
2004Dromaeosaurinae Senter et al. p. 2 fig. 2
2007Dromaeosaurinae Sánchez-Hernández et al. p. 193
2009Dromaeosaurinae Longrich and Currie
2012Dromaeosaurinae Senter et al.
2014Dromaeosaurinae Sanz et al. p. 104
2014Dromaeosaurinae Sues and Averianov p. 239
2014Dromaeosaurinae Williamson and Brusatte p. 10
2020Dromaeosaurinae Jasinski et al. p. 6 fig. 3

References

Matthew W. D., Brown B. (1922) The family Deinodontidae, with notice of a new genus from the Cretaceous of Alberta, Bulletin of the American Museum of Natural History 46 6, 367-385
Kuhn O. W. M. (1966) , Die Reptilien. System und Stammesgeschichte [The Reptiles. Systematics and Phylogeny.], 1-154
Barsbold R. (1983) Khishchnye dinosavry mela Mongoliy [Carnivorous dinosaurs from the Cretaceous of Mongolia], Transactions of the Joint Soviet-Mongolian Paleontological Expedition 19, 1-117
Paul G. S. (1988) , Predatory Dinosaurs of the World. Simon & Schuster, New York, 1-464
Currie P. J., Rigby, Jr. J. K., et al (1990) Theropod teeth from the Judith River Formation of southern Alberta, Canada, In K. Carpenter and P. J. Currie (eds.), Dinosaur Systematics: Perspectives and Approaches. Cambridge University Press, Cambridge, 107-125
Currie P. J. (1995) New information on the anatomy and relationships of Dromaeosaurus albertensis (Dinosauria: Theropoda), Journal of Vertebrate Paleontology 15 3, 576-591
Sereno P. C. (1998) A rationale for phylogenetic definitions, with application to the higher-level taxonomy of Dinosauria, Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen 210 1, 41-83
Zinke J. (1998) Small theropod teeth from the Upper Jurassic coal mine of Guimarota (Portugal), Paläontologische Zeitschrift 72 1/2, 179-189
Currie P. J. (2000) Theropods from the Cretaceous of Mongolia, The Age of Dinosaurs in Russia and Mongolia, 434-455
Ruiz-Omeñaca J. I., Canudo J. I. (2003) Dinosaurios (Saurischia, Ornithischia) en el Barremiense (Cretácico Inferior) de la península Ibérica [Dinosaurs (Saurischia, Ornithischia) in the Barremian (Lower Cretaceous) of the Iberian peninsula], Dinosaurios y Otros Reptiles Mesozóicos de España, 269-312
Senter P., Barsbold R., et al (2004) Systematics and evolution of Dromaeosauridae (Dinosauria, Theropoda), Bulletin of the Gunma Museum of Natural History 8, 1-20
Sánchez-Hernández B., Benton M. J., et al (2007) Dinosaurs and other fossil vertebrates from the Late Jurassic and Early Cretaceous of the Galve area, NE Spain, Palaeogeography, Palaeoclimatology, Palaeoecology 249, 180-215 doi:10.1016/j.palaeo.2007.01.009
Longrich N. R., Currie P. J. (2009) A microraptorine (Dinosauria–Dromaeosauridae) from the Late Cretaceous of North America, Proceedings of the National Academy of Sciences doi:10.1073/pnas.0811664106
Senter P., Kirkland J. I., et al (2012) New dromaeosaurids (Dinosauria: Theropoda) from the Lower Cretaceous of Utah, and the evolution of the dromaeosaurid tail, PLoS ONE 7 5, e36790 doi:10.1371/journal.pone.0036790
Sanz J. L., Ortega F., et al (2014) , Dinosaurios Maravillosos de España [Marvelous Dinosaurs from Spain], 1-155
Sues H.-D., Averianov A. (2014) Dromaeosauridae (Dinosauria: Theropoda) from the Bissekty Formation (Upper Cretaceous: Turonian) of Uzbekistan and the phylogenetic position of Itemirus medullaris Kurzanov, 1976, Cretaceous Research 51, 225-240
Williamson T. E., Brusatte S. L. (2014) Small theropod teeth from the Late Cretaceous of the San Juan Basin, northwestern New Mexico and their implications for understanding latest Cretaceous dinosaur evolution, PLoS ONE 9 4, e93190:1-23 doi:10.1371/journal.pone.0093190
Data courtesy of: PBDB: The Paleobiology Database, Creative Commons CC-BY licenced. , GBIF: the Global Biodiversity Information Facility, various licences, iDigBio, various licences, and EOL: The Encyclopedia of Life (Open Data Public Domain). Because fossils are made of minerals too!
 
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