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Data from: Microanatomy of the amniote femur and inference of lifestyle in limbed vertebrates
负责人:
关键词:
bone compactness;Amniota;habitat;Permian;paleobiology;inference model;femur;temnospondyls;amniotes;Chelonia;phylogeny;Squamata;Aves;Holocene
DOI:
doi:10.5061/dryad.qd734
摘要:
The femoral microanatomy of 155 species of extant amniotes (57 species of mammals, 15 species of turtles, 56 species of lepidosaurs, and 27 species
Data from: Bayes factors unmask highly variable information content, bias, and extreme influence in phylogenomic analyses
负责人:
关键词:
information content;Bayes factors;Bias;turtles;ultraconserved elements;amniotes;posterior probability;phylogenomics;Expressed Sequence Tags;Negative Constraints;ortholog
DOI:
doi:10.5061/dryad.8gm85
摘要:
to resolve the phylogenetic placement of turtles within Amniota. These data sets vary substantially in their support for well-established amniote relationships
Data from: Ultraconserved elements anchor thousands of genetic markers for target enrichment spanning multiple evolutionary timescales
负责人:
关键词:
sequence capture;Ultra-conserved elements;Target Enrichment;genetic markers;phylogenomics;flanking sequence
DOI:
doi:10.5061/dryad.64dv0tg1
摘要:
rs of evolution. Our analyses here focus on use of UCE markers in Amniota, because UCEs and phylogenetic relationships are well known in some amniotes. We perform
Data from: Molecular cytogenetic and genomic insights to chromosomal evolution
负责人:
关键词:
Placentalia;Mesozoic;Amniota;ancestral karyotypes;Paleocene;Eocene;Cretaceous;comparative cytogenetics;syntenic segmental associations;conserved syntenies;Mammalia;Fish;Xenopus tropicalis;Monodelphis domestica;phylogenomics;Tetrapoda;Gallus gallus
DOI:
doi:10.5061/dryad.7j0b8468
摘要:
, with modest increases in tetrapods and amniotes most probably by chromosomal fissioning. Information drawn largely from cross-species chromosome painting
Data from: The first half of tetrapod evolution, sampling proxies, and fossil record quality
负责人:
关键词:
Paleozoic;Jurassic;Mesozoic;Amniota;Devonian;Triassic;Permian;Carboniferous;diversification;Tetrapoda
DOI:
doi:10.5061/dryad.44b50
摘要:
ers of publications, map areas, gap-bounded sedimentary units, rock volumes, formations, and fossil collections. Modelling by multiple correlations shows that formation

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