Literature DB >> 17630282

Phylogenomic data analyses provide evidence that Xenarthra and Afrotheria are sister groups.

Björn M Hallström1, Morgan Kullberg, Maria A Nilsson, Axel Janke.   

Abstract

The phylogenetic positions of the 4 clades, Euarchontoglires, Laurasiatheria, Afrotheria, and Xenarthra, have been major issues in the recent discussion of basal relationships among placental mammals. However, despite considerable efforts these relationships, crucial to the understanding of eutherian evolution and biogeography, have remained essentially unresolved. Euarchontoglires and Laurasiatheria are generally joined into a common clade (Boreoeutheria), whereas the position of Afrotheria and Xenarthra relative to Boreoeutheria has been equivocal in spite of the use of comprehensive amounts of nuclear encoded sequences or the application of genome-level characters such as retroposons. The probable reason for this uncertainty is that the divergences took place long time ago and within a narrow temporal window, leaving only short common branches. With the aim of further examining basal eutherian relationships, we have collected conserved protein-coding sequences from 11 placental mammals, a marsupial and a bird, whose nuclear genomes have been largely sequenced. The length of the alignment of homologous sequences representing each individual species is 2,168,859 nt. This number of sites, representing 2840 protein-coding genes, exceeds by a considerable margin that of any previous study. The phylogenetic analysis joined Xenarthra and Afrotheria on a common branch, Atlantogenata. This topology was found to fit the data significantly better than the alternative trees.

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Mesh:

Year:  2007        PMID: 17630282     DOI: 10.1093/molbev/msm136

Source DB:  PubMed          Journal:  Mol Biol Evol        ISSN: 0737-4038            Impact factor:   16.240


  44 in total

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8.  Inhibitory interneurons of the human prefrontal cortex display conserved evolution of the phenotype and related genes.

Authors:  Chet C Sherwood; Mary Ann Raghanti; Cheryl D Stimpson; Muhammad A Spocter; Monica Uddin; Amy M Boddy; Derek E Wildman; Christopher J Bonar; Albert H Lewandowski; Kimberley A Phillips; Joseph M Erwin; Patrick R Hof
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10.  Retroposon analysis and recent geological data suggest near-simultaneous divergence of the three superorders of mammals.

Authors:  Hidenori Nishihara; Shigenori Maruyama; Norihiro Okada
Journal:  Proc Natl Acad Sci U S A       Date:  2009-03-13       Impact factor: 11.205

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