Evolutionary determinants of genome-wide nucleotide composition

被引:0
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作者
Hongan Long
Way Sung
Sibel Kucukyildirim
Emily Williams
Samuel F. Miller
Wanfeng Guo
Caitlyn Patterson
Colin Gregory
Chloe Strauss
Casey Stone
Cécile Berne
David Kysela
William R. Shoemaker
Mario E. Muscarella
Haiwei Luo
Jay T. Lennon
Yves V. Brun
Michael Lynch
机构
[1] Ocean University of China,Institute of Evolution and Marine Biodiversity, KLMME
[2] University of North Carolina,Department of Bioinformatics and Genomics
[3] Hacettepe University,Department of Biology
[4] Arizona State University,Center for Mechanisms of Evolution
[5] Indiana University,Department of Biology
[6] University of Illinois,Department of Plant Biology
[7] Urbana–Champaign,School of Life Sciences and Partner State Key Laboratory of Agrobiotechnology
[8] The Chinese University of Hong Kong,undefined
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摘要
One of the long-standing mysteries of evolutionary genomics is the source of the wide phylogenetic diversity in genome nucleotide composition (G + C versus A + T), which must be a consequence of interspecific differences in mutation bias, the efficiency of selection for different nucleotides or a combination of the two. We demonstrate that although genomic G + C composition is strongly driven by mutation bias, it is also substantially modified by direct selection and/or as a by-product of biased gene conversion. Moreover, G + C composition at fourfold redundant sites is consistently elevated above the neutral expectation—more so than for any other class of sites.
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页码:237 / 240
页数:3
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