性别和物种形成:果蝇生殖道蛋白——25年后。

Rama Singh, Santosh Jagadeeshan
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引用次数: 5

摘要

大约50年前,蛋白质电泳革命第一次揭示了物种内部和物种之间分子遗传变异的本质,并表明新出现的物种之间的遗传差异很小。20年后,二维电泳显示,与一般的基因-酶变异相比,生殖道蛋白在种内的多态性较少,但在种间的分化程度较高。2D的结果是有趣和革命性的,但有些难以解释,因为在当时,快速进化和选择性扫描还不是进化生物学家常用词汇的一部分。从那时起,性与生殖相关基因(SRR)的基因组研究迅速发展成为进化生物学研究的一个大领域,并为许多现象提供了线索。在这里,我们回顾了一些主要的和当前的研究领域,这些研究极大地促进了我们对SRR基因和遗传系统在理解生殖生物学和物种形成中的进化动力学和重要性的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sex and speciation: Drosophila reproductive tract proteins- twenty five years later.

The protein electrophoresis revolution, nearly fifty years ago, provided the first glimpse into the nature of molecular genetic variation within and between species and showed that the amount of genetic differences between newly arisen species was minimal. Twenty years later, 2D electrophoresis showed that, in contrast to general gene-enzyme variation, reproductive tract proteins were less polymorphic within species but highly diverged between species. The 2D results were interesting and revolutionary, but somewhat uninterpretable because, at the time, rapid evolution and selective sweeps were not yet part of the common vocabulary of evolutionary biologists. Since then, genomic studies of sex and reproduction-related (SRR) genes have grown rapidly into a large area of research in evolutionary biology and are shedding light on a number of phenomena. Here we review some of the major and current fields of research that have greatly contributed to our understanding of the evolutionary dynamics and importance of SRR genes and genetic systems in understanding reproductive biology and speciation.

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