Biological Journal of the Linnean Society · 2014 · 69 citations · 44 references
BiologyNormal Flight FeathersMorphological EvidenceNew Basal EnantiornithinePhylogeneticsTail FeathersNatural SciencesEvolutionary BiologyCretaceous BirdAvian EvolutionBasal BirdsComparative AnatomyLowest Horizon
We report on a new enantiornithine Eopengornis martini gen. et sp. nov. from the lowest horizon of the Jehol Biota in Hebei, China; dated at 130.7 Mya, this is the second oldest avian bearing fossil deposit in the world, recording the First Appearance Datum of Enantiornithes. The new specimen, only the second enantiornithine and third bird reported from this horizon, preserves numerous synapomorphies with the largest Lower Cretaceous enantiornithine Pengornis houi from the Jiufotang Formation dated at 120 Mya. Together, they form a new avian lineage that lasted over 10 Myr, which is longer than any known clade of Lower Cretaceous enantiornithine. Eopengornis reveals new information about basal enantiornithine morphology such as the presence of a metatarsal V, helping to clarify the early evolution of these dominant Cretaceous avians. Furthermore, Eopengornis preserves a previously unrecognized tail morphology: a pair of elongate fully pennaceous rachis dominated feathers. This discovery confirms hypotheses proposing that the rachis dominated racket-plumes in basal birds represent modified pennaceous feathers. We suggest that the ornamental racket-plumes in enantiornithines and Confuciusornis evolved independently from the basal pygostylian condition, which we infer was a tail formed of normal flight feathers.
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Luis M. Chiappe, Shu apos, Jeong‐Seop An et al. · Bulletin of the American Museum of Natural History · 1999 · 335 citations
Morphological Evidence, Evolutionary Biology, Paleoanthropology +8
Mesozoic Birds: Above the Heads of Dinosaurs
Journal of Paleontology · 2003 · 322 citations · Full text
A Primitive Enantiornithine Bird and the Origin of Feathers
Fucheng Zhang, Zhonghe Zhou · Science · 2000 · 247 citations
Mingke Yu, Ping Wu, Randall B. Widelitz et al. · Nature · 2002 · 246 citations · Full text
Developmental Biology, Avian Locomotion, Evolutionary Biology +8