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通过获取新基因来扩展基因组编码区域。

Expansion of genome coding regions by acquisition of new genes.

作者信息

Betrán Esther, Long Manyuan

机构信息

Department of Ecology and Evolution, The University of Chicago, IL 60637, USA.

出版信息

Genetica. 2002 May;115(1):65-80. doi: 10.1023/a:1016024131097.

Abstract

As it is the case for non-coding regions, the coding regions of organisms can be expanded or shrunk during evolutionary processes. However, the dynamics of coding regions are expected to be more correlated with functional complexity and diversity than are the dynamics of non-coding regions. Hence, it is interesting to investigate the increase of diversity in coding regions--the origin and evolution of new genes - because this provides a new component to the genetic variation underlying the diversity of living organisms. Here, we examine what is known about the mechanisms responsible for the increase in gene number. Every mechanism affects genomes in a distinct way and to a different extent and it appears that certain organisms favor particular mechanisms. The detail of some interesting gene acquisitions reveals the extreme dynamism of genomes. Finally, we discuss what is known about the fate of new genes and conclude that many of the acquisitions are likely to have been driven by natural selection; they increase functional complexity, diversity, and/or adaptation of species. Despite this, the correlation between complexity of life and gene number is low and closely related species (with very similar life histories) can have very different number of genes. We call this phenomenon the G-value paradox.

摘要

与非编码区的情况一样,生物体的编码区在进化过程中也可能会扩大或缩小。然而,编码区的动态变化预计比非编码区的动态变化与功能复杂性和多样性的相关性更强。因此,研究编码区多样性的增加——新基因的起源和进化——是很有意思的,因为这为生物体多样性背后的遗传变异提供了一个新的组成部分。在这里,我们研究了关于基因数量增加的机制的已知情况。每种机制以独特的方式和不同的程度影响基因组,而且似乎某些生物体倾向于特定的机制。一些有趣的基因获得事件的细节揭示了基因组的极端动态性。最后,我们讨论了关于新基因命运的已知情况,并得出结论,许多基因获得事件可能是由自然选择驱动的;它们增加了物种的功能复杂性、多样性和/或适应性。尽管如此,生命复杂性与基因数量之间的相关性很低,而且亲缘关系很近的物种(具有非常相似的生活史)可能拥有非常不同数量的基因。我们将这种现象称为G值悖论。

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