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从人-黑猩猩-小鼠直系同源基因三联体推断非中性进化

Inferring nonneutral evolution from human-chimp-mouse orthologous gene trios.

作者信息

Clark Andrew G, Glanowski Stephen, Nielsen Rasmus, Thomas Paul D, Kejariwal Anish, Todd Melissa A, Tanenbaum David M, Civello Daniel, Lu Fu, Murphy Brian, Ferriera Steve, Wang Gary, Zheng Xianqgun, White Thomas J, Sninsky John J, Adams Mark D, Cargill Michele

机构信息

Molecular Biology and Genetics, Cornell University, Ithaca, NY 14853, USA.

出版信息

Science. 2003 Dec 12;302(5652):1960-3. doi: 10.1126/science.1088821.

Abstract

Even though human and chimpanzee gene sequences are nearly 99% identical, sequence comparisons can nevertheless be highly informative in identifying biologically important changes that have occurred since our ancestral lineages diverged. We analyzed alignments of 7645 chimpanzee gene sequences to their human and mouse orthologs. These three-species sequence alignments allowed us to identify genes undergoing natural selection along the human and chimp lineage by fitting models that include parameters specifying rates of synonymous and nonsynonymous nucleotide substitution. This evolutionary approach revealed an informative set of genes with significantly different patterns of substitution on the human lineage compared with the chimpanzee and mouse lineages. Partitions of genes into inferred biological classes identified accelerated evolution in several functional classes, including olfaction and nuclear transport. In addition to suggesting adaptive physiological differences between chimps and humans, human-accelerated genes are significantly more likely to underlie major known Mendelian disorders.

摘要

尽管人类和黑猩猩的基因序列几乎99%相同,但序列比较在识别自我们的祖先谱系分化以来发生的具有生物学重要性的变化方面仍然具有很高的信息量。我们分析了7645条黑猩猩基因序列与其人类和小鼠直系同源基因的比对情况。这些三物种序列比对使我们能够通过拟合包含指定同义核苷酸和非同义核苷酸替换率参数的模型,来识别在人类和黑猩猩谱系中经历自然选择的基因。这种进化方法揭示了一组信息量丰富的基因,它们在人类谱系上的替换模式与黑猩猩和小鼠谱系相比有显著差异。将基因划分为推断的生物学类别后发现,包括嗅觉和核运输在内的几个功能类别中存在加速进化。除了表明黑猩猩和人类之间存在适应性生理差异外,人类加速进化的基因更有可能是已知主要孟德尔疾病的基础。

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