The theropod dinosaur Elaphrosaurus bambergi Janensch, 1920, from the Late Jurassic of Tendaguru, Tanzania
Authors:
Rauhaut et al
Abstract:
Theropod dinosaurs from the Late Jurassic of Gondwana are still poorly known, with Elaphrosaurus bambergi Janensch, 1920, from the late Kimmeridgian of Tendaguru, Tanzania, being the only taxon represented by more than isolated remains from Africa. Having long been considered a coelurosaurian, more specifically an ornithomimosaur, Elaphrosaurus is currently regarded as a basal ceratosaur. Here, we revise the osteology and phylogenetic position of this important taxon. Elaphrosaurus shows many unusual osteological characters, including extremely elongated and constricted cervical vertebrae, an expansive shoulder girdle with strongly modified forelimbs, a relatively small ilium, and elongate hindlimbs with a very small ascending process of the astragalus that is fused to the tibia. We found this taxon to share many derived characters with noasaurids, such as: strongly elongate cervical and dorsal vertebrae; low, rectangular neural spines in the mid-caudal vertebrae; presence of only an anterior centrodiapophyseal lamina in anterior caudal vertebrae; presence of a wide, U–shaped notch between the glenoid and the anteroventral hook in the coracoid; a laterally flared postacetabular blade of the ilium; a flat anterior side of the distal tibia; and a reduced shaft of metatarsal II. Our analysis placed Elaphrosaurus within a dichotomous Noasauridae as part of a Jurassic subclade, here termed Elaphrosaurinae, that otherwise includes taxa from eastern Asia. These results underscore the long and complex evolutionary history of abelisauroids, which is still only beginning to be understood.
Showing posts with label late Jurassic. Show all posts
Showing posts with label late Jurassic. Show all posts
Sunday, April 24, 2016
Elaphrosaurus bambergi: a Reevaluated Noasaurid Abelisauroid From Late Jurassic Tanzania
Labels:
abelisaurid,
abelisaurs,
dinosaurs,
fossils,
Gondwana,
Jurassic,
late Jurassic,
mesozoic,
Noasaurid,
nonavian dinosaurs,
paleontology,
tanzania,
theropods
Thursday, December 31, 2015
A new Ophthalmosaurid Ichthyosaur From Jurassic British Columbia
An Upper Jurassic ichthyosaur (Ichthyosauria: Ophthalmosauridae) from the Bowser Basin, British Columbia
Authors:
Sissons et al
Abstract:
Although the Jurassic was a period of high diversity in ichthyosaurs, only a small number of specimens have been recorded from Canada to date. We describe here a new occurrence of an ophthalmosaurid ichthyosaur from a shallow marine depositional environment within the Bowser Basin of northern British Columbia. Based on vertebral diameters and the size of the humerus, the ichthyosaur was relatively large compared to other contemporaneous forms, yet possessed teeth that were small for its body size. As well, the height to length ratio of the preserved vertebrae suggests it may have had a more elongate, less regionalized body shape. Although indeterminate at a generic level, the presence of Late Jurassic ichthyosaurs in nearshore waters of northwestern North America further demonstrates their cosmopolitan distribution.
Monday, December 28, 2015
Were Diplodocid Sauropods Endemic to North America During the Late Jurassic
First report of Apatosaurus (Diplodocidae: Apatosaurinae) from the Cleveland-Lloyd Quarry in the Upper Jurassic Morrison Formation of Utah: abundance, distribution, paleoecology, and taphonomy of an endemic North American sauropod clade
Authors:
Foster et al
Abstract:
A cervical vertebra preserved at the famous and productive Cleveland-Lloyd Dinosaur Quarry in the Upper Jurassic Morrison Formation of Utah is that of an Apatosaurus, a sauropod dinosaur genus not previously recognized at the site and the first new dinosaur taxon identified at the site in years. The presence of Apatosaurus at a mudstone site dominated by other taxa, both theropod and sauropod, suggests a pattern of preservation within the Morrison Formation in which sites in fine-grained sediments yield dramatically uneven relative abundances of dinosaurs, with variable dominant taxa by site, compared with more time-averaged and attritional coarse-grained channel sandstone deposits. In addition, the continued demonstration of the wide-spread occurrence and abundance of Apatosaurus within the Morrison Formation, and the absence of its clade among diplodocid faunas on other continents, suggest that this group may have been endemic to North America during the Late Jurassic and that it may have originated there, though this is far from clear.
Friday, February 13, 2015
Docofossor: A Mole-like Docodont Mammaliaform Hints at "Modern" Morphogenetic Mechanisms Predate Mammals
Evolutionary development in basal mammaliaforms as revealed by a docodontan
Authors:
Luo et al
Abstract:
A new Late Jurassic docodontan shows specializations for a subterranean lifestyle. It is similar to extant subterranean golden moles in having reduced digit segments as compared to the ancestral phalangeal pattern of mammaliaforms and extant mammals. The reduction of digit segments can occur in mammals by fusion of the proximal and intermediate phalangeal precursors, a developmental process for which a gene and signaling network have been characterized in mouse and human. Docodontans show a positional shift of thoracolumbar ribs, a developmental variation that is controlled by Hox9 and Myf5 genes in extant mammals. We argue that these morphogenetic mechanisms of modern mammals were operating before the rise of modern mammals, driving the morphological disparity in the earliest mammaliaform diversification.
Labels:
china,
cynodonts,
docodont,
fossils,
Jurassic,
late Jurassic,
Mammaliaform,
mammals,
mesozoic,
paleogenetics,
paleontology
Friday, November 07, 2014
Molecular Clock Suggests Angiosperms Diverged in the Middle to Late Jurassic
Resolution of deep angiosperm phylogeny using conserved nuclear genes and estimates of early divergence times
Authors:
Zeng et al
Abstract:
Angiosperms are the most successful plants and support human livelihood and ecosystems. Angiosperm phylogeny is the foundation of studies of gene function and phenotypic evolution, divergence time estimation and biogeography. The relationship of the five divergent groups of the Mesangiospermae (~99.95% of extant angiosperms) remains uncertain, with multiple hypotheses reported in the literature. Here transcriptome data sets are obtained from 26 species lacking sequenced genomes, representing each of the five groups: eudicots, monocots, magnoliids, Chloranthaceae and Ceratophyllaceae. Phylogenetic analyses using 59 carefully selected low-copy nuclear genes resulted in highly supported relationships: sisterhood of eudicots and a clade containing Chloranthaceae and Ceratophyllaceae, with magnoliids being the next sister group, followed by monocots. Our topology allows a re-examination of the evolutionary patterns of 110 morphological characters. The molecular clock estimates of Mesangiospermae diversification during the late to middle Jurassic correspond well to the origins of some insects, which may have been a factor facilitating early angiosperm radiation.
Labels:
angiosperms,
evolution,
Jurassic,
late Jurassic,
mesozoic,
middle jurassic,
molecular clock,
paleobotany
Thursday, September 18, 2014
Anurognathus ammoni: an Anurognathid Pterosaur From Late Jurassic China
Short note on an anurognathid pterosaur with a long tail from the Upper Jurassic of China
Authors:
Jiang et al
Abstract:
Pterosaurs consist of an extinct group of flying reptiles that show short- and long-tailed species. Among those are the anurognathids whose phylogenetic position has been considered quite controversial. So far, there are about 10 described specimens from the Anurognathidae, from which only a few show the preservation of caudal elements. Here, we report a new anurognathid specimen (IVPP V16728) from Mutoudeng, Qinglong, Hebei, China that shows the most complete tail of this non-pterodactyloid clade. The preserved part of the tail has at least 20 caudal vertebrae, some showing extended chevrons and zygapophyses, which is a very primitive character within pterosaurs.
Labels:
china,
fossils,
Jurassic,
late Jurassic,
mesozoic,
orinthodirans,
paleontology,
pterosaurs,
rhamphorhynchoid
Monday, May 26, 2014
Subscribe to:
Posts (Atom)


