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首页> 外文期刊>Cytogenetic and genome research >Co-evolution of genomic structure and selective forces underlying sexual development and reproduction. [Review] [142 refs]
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Co-evolution of genomic structure and selective forces underlying sexual development and reproduction. [Review] [142 refs]

机译:基因组结构和选择力共同进化,这是性发育和繁殖的基础。 [评论] [142裁判]

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摘要

Genomic structure affects the expression and evolution of phenotypes via its effect on genomic function. One example is the presence of sex chromosomes and the development of the sexual phenotype. Multiple forces account for the evolution of genomic structure and function, some acting synergistically and some in an antagonistic manner, in a co-evolutionary process between genomic architecture and environmental effects at different time scales. Here I review the evolution of sex chromosomes and how they affect sex determination, sex ratios, sexual selection, and sexual conflict, at the same time that these phenomena influence the evolution of genome organization. Because of this reciprocal interaction, the need to correctly identify sex chromosome systems in order to understand the causes and consequences of their evolution is emphasized. Importantly, it is argued that the existence of taxa lacking sex chromosomes poses a challenge to current evolutionary models and a unique opportunity to test them empirically using reptiles as a model system. Copyright 2010 S. Karger AG, Basel. [References: 142]
机译:基因组结构通过其对基因组功能的影响来影响表型的表达和进化。一个例子是性染色体的存在和性表型的发展。在不同时间尺度上,在基因组架构和环境影响之间的共同进化过程中,多重力解释了基因组结构和功能的演化,其中一些协同作用,而某些则以拮抗作用。在这里,我回顾了性染色体的进化,以及它们如何影响性别决定,性别比例,性选择和性冲突,同时这些现象会影响基因组组织的进化。由于这种相互的相互作用,强调了正确识别性染色体系统以了解其进化的原因和后果的需要。重要的是,有人认为缺乏性染色体的分类单元的存在对当前的进化模型提出了挑战,并且为以爬行动物为模型系统对它们进行实证检验提供了独特的机会。版权所有2010 S. Karger AG,巴塞尔。 [参考:142]

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