Polyploidy and the evolution of complex traits.

Lukasz Huminiecki, Gavin C Conant
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引用次数: 21

Abstract

We explore how whole-genome duplications (WGDs) may have given rise to complex innovations in cellular networks, innovations that could not have evolved through sequential single-gene duplications. We focus on two classical WGD events, one in bakers' yeast and the other at the base of vertebrates (i.e., two rounds of whole-genome duplication: 2R-WGD). Two complex adaptations are discussed in detail: aerobic ethanol fermentation in yeast and the rewiring of the vertebrate developmental regulatory network through the 2R-WGD. These two examples, derived from diverged branches on the eukaryotic tree, boldly underline the evolutionary potential of WGD in facilitating major evolutionary transitions. We close by arguing that the evolutionary importance of WGD may require updating certain aspects of modern evolutionary theory, perhaps helping to synthesize a new evolutionary systems biology.

Abstract Image

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多倍体与复杂性状的进化。
我们探讨了全基因组复制(WGDs)如何在蜂窝网络中引起复杂的创新,这些创新不可能通过顺序的单基因复制进化而来。我们重点研究了两个经典的WGD事件,一个在面包酵母中,另一个在脊椎动物的基础上(即两轮全基因组复制:2R-WGD)。详细讨论了两种复杂的适应:酵母中的好氧乙醇发酵和脊椎动物通过2R-WGD的发育调节网络的重新布线。这两个例子来自真核生物树的不同分支,大胆地强调了WGD在促进重大进化转变方面的进化潜力。最后,我们认为WGD的进化重要性可能需要更新现代进化理论的某些方面,也许有助于合成一个新的进化系统生物学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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