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动物化学感应受体基因库的进化:机遇与必然的作用

The evolution of animal chemosensory receptor gene repertoires: roles of chance and necessity.

作者信息

Nei Masatoshi, Niimura Yoshihito, Nozawa Masafumi

机构信息

Institute of Molecular Evolutionary Genetics and Department of Biology, Pennsylvania State University, 328 Mueller Laboratory, University Park, Pennsylvania 16802, USA.

出版信息

Nat Rev Genet. 2008 Dec;9(12):951-63. doi: 10.1038/nrg2480.

Abstract

Chemosensory receptors are essential for the survival of organisms that range from bacteria to mammals. Recent studies have shown that the numbers of functional chemosensory receptor genes and pseudogenes vary enormously among the genomes of different animal species. Although much of the variation can be explained by the adaptation of organisms to different environments, it has become clear that a substantial portion is generated by genomic drift, a random process of gene duplication and deletion. Genomic drift also generates a substantial amount of copy-number variation in chemosensory receptor genes within species. It seems that mutation by gene duplication and inactivation has important roles in both the adaptive and non-adaptive evolution of chemosensation.

摘要

化学感应受体对于从细菌到哺乳动物等各类生物的生存至关重要。最近的研究表明,在不同动物物种的基因组中,功能性化学感应受体基因和假基因的数量差异极大。尽管大部分变异可以通过生物对不同环境的适应来解释,但很明显,相当一部分变异是由基因组漂变产生的,基因组漂变是一种基因复制和缺失的随机过程。基因组漂变还在物种内部的化学感应受体基因中产生了大量的拷贝数变异。基因复制和失活引起的突变似乎在化学感应的适应性和非适应性进化中都发挥着重要作用。

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