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当一切瞬息万变:基因组加倍后如何寻找新的常态。

When everything changes at once: finding a new normal after genome duplication.

机构信息

Institute of Molecular Plant Biology, Department of Biology, ETH Zürich, Zürich, Switzerland.

出版信息

Proc Biol Sci. 2020 Nov 25;287(1939):20202154. doi: 10.1098/rspb.2020.2154. Epub 2020 Nov 18.

Abstract

Whole-genome duplication (WGD), which leads to polyploidy, is implicated in adaptation and speciation. But what are the immediate effects of WGD and how do newly polyploid lineages adapt to them? With many studies of new and evolved polyploids now available, along with studies of genes under selection in polyploids, we are in an increasingly good position to understand how polyploidy generates novelty. Here, I will review consistent effects of WGD on the biology of plants, such as an increase in cell size, increased stress tolerance and more. I will discuss how a change in something as fundamental as cell size can challenge the function of some cell types in particular. I will also discuss what we have learned about the short- to medium-term evolutionary response to WGD. It is now clear that some of this evolutionary response may 'lock in' traits that happen to be beneficial, while in other cases, it might be more of an 'emergency response' to work around physiological changes that are either deleterious, or cannot be undone in the polyploid context. Yet, other traits may return rapidly to a diploid-like state. Polyploids may, by re-jigging many inter-related processes, find a new, conditionally adaptive, normal.

摘要

全基因组复制(WGD)导致多倍体化,与适应和物种形成有关。但是,WGD 的直接影响是什么,新的多倍体谱系如何适应这些影响?随着现在有许多关于新的和进化的多倍体的研究,以及对多倍体中受选择的基因的研究,我们越来越能够理解多倍体如何产生新颖性。在这里,我将回顾 WGD 对植物生物学的一致影响,例如细胞大小增加、增强的应激耐受性等。我将讨论像细胞大小这样的基本变化如何特别挑战某些细胞类型的功能。我还将讨论我们对 WGD 短期到中期进化反应的了解。现在很清楚,这种进化反应的一些可能“锁定”碰巧有益的特征,而在其他情况下,它可能更多地是一种“紧急反应”,以解决在多倍体环境中有害或无法逆转的生理变化。然而,其他特征可能会迅速恢复到类似二倍体的状态。多倍体可能通过重新调整许多相互关联的过程,找到一个新的、有条件适应的正常状态。

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