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促进多倍体存续和多样化,以及限制二倍体物种形成的因素在 K-Pg 期间。

Factors promoting polyploid persistence and diversification and limiting diploid speciation during the K-Pg interlude.

机构信息

Department of Integrative Biology, University of Texas at Austin, Austin, TX 78712, USA.

Florida Museum of Natural History, University of Florida, Gainesville, FL 32611, USA; Department of Biology, University of Florida, Gainesville, FL 32611, USA; Genetics Institute, University of Florida, Gainesville, FL 32608, USA.

出版信息

Curr Opin Plant Biol. 2018 Apr;42:1-7. doi: 10.1016/j.pbi.2017.09.010. Epub 2017 Oct 27.

Abstract

The large wave of polyploidization following the Cretaceous-Paleogene (K-Pg) mass extinction has been explained by enhanced polyploid persistence arising from adaptive properties of the polyploids themselves, as well as an increase in unreduced gamete production and diploid hybridization. We propose that the demise of diploids afforded opportunities for polyploid establishment and expansion into novel habitats. Augmented polyploid gene pools from diploid and polyploid relatives, in association with their multiple and independent origins (of both autopolyploids and allopolyploids), facilitated their subsequent diversification. Their ability to recruit genetic variation from their diploid relatives or from products of recurrent origins sharing their genome(s) ostensibly contributed to polyploid persistence. Concomitantly, we propose that the number of congeneric diploid species dramatically contracted disproportionally to polyploids during the K-Pg interval (i.e. a diploid trough), resulting in a reduction in the rate of diploid speciation. Accordingly, the preponderance of neopolyploids was likely autopolyploids.

摘要

白垩纪-古近纪(K-Pg)大灭绝后发生的大规模多倍化现象,可以用多倍体自身的适应性特征,以及未减数配子产生和二倍体杂交的增加,来解释多倍体的持续存在。我们提出,二倍体的灭绝为多倍体的建立和向新栖息地扩张提供了机会。来自二倍体和多倍体亲缘种的增强的多倍体基因库,与其多倍体起源(同源多倍体和异源多倍体)的多个和独立起源有关,促进了它们的后续多样化。它们从二倍体亲属或共享其基因组的反复起源的产物中招募遗传变异的能力,显然有助于多倍体的持续存在。同时,我们提出,在 K-Pg 期间(即二倍体低谷),同属二倍体物种的数量与多倍体相比不成比例地急剧减少,导致二倍体物种形成的速度降低。因此,新多倍体很可能是同源多倍体。

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