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重建脊椎动物性染色体的进化历程。

Reconstructing the evolution of vertebrate sex chromosomes.

作者信息

Bellott D W, Page D C

机构信息

Howard Hughes Medical Institute, Whitehead Institute, and Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02142, USA.

出版信息

Cold Spring Harb Symp Quant Biol. 2009;74:345-53. doi: 10.1101/sqb.2009.74.048. Epub 2010 May 27.

Abstract

Sex chromosomes and their evolution have captivated researchers since their discovery. For more than 100 years, the dominant model of sex chromosome evolution has held that differentiated sex chromosomes, such as the X and Y chromosomes of mammals or the Z and W chromosomes of birds, evolved from ordinary autosomes, primarily through the degeneration of the sex-specific Y or W chromosome. At the same time, the sex chromosomes shared between sexes, the X and Z chromosomes, are expected to remain essentially untouched. This model was based on limited cytogenetic and genetic data. Only in the last decade, with the advent of genomics, has the complete sequence of any sex chromosome pair become available. High-quality finished sequences of the human and chimpanzee Y chromosomes, as well as the human X chromosome, have revealed sequence features unanticipated by the traditional model of sex chromosome evolution. Large, highly identical, tandem and inverted arrays of testis-expressed genes are major sources of innovation in gene content on sex-specific chromosomes as well as sex-shared chromosomes. Accounting for the emergence of these ampliconic structures presents a challenge for future studies of sex chromosome evolution.

摘要

自性染色体被发现以来,其及其进化一直吸引着研究人员。100多年来,性染色体进化的主流模型认为,分化的性染色体,如哺乳动物的X和Y染色体或鸟类的Z和W染色体,主要通过特定性别的Y或W染色体的退化,从普通常染色体进化而来。与此同时,两性共享的性染色体,即X和Z染色体,预计基本不会受到影响。该模型基于有限的细胞遗传学和遗传学数据。直到最近十年,随着基因组学的出现,任何性染色体对的完整序列才得以获得。人类和黑猩猩Y染色体以及人类X染色体的高质量完成序列揭示了传统性染色体进化模型未曾预料到的序列特征。睾丸表达基因的大型、高度相同、串联和反向排列是性特异性染色体以及两性共享染色体上基因含量创新的主要来源。解释这些扩增子结构的出现对未来性染色体进化的研究提出了挑战。

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