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无性繁殖生物中的表观遗传变异。

Epigenetic variation in asexually reproducing organisms.

机构信息

Department of Terrestrial Ecology, Netherlands Institute of Ecology (NIOO-KNAW), Droevendaalsesteeg 10, 6708 PB Wageningen, The Netherlands.

出版信息

Evolution. 2014 Mar;68(3):644-55. doi: 10.1111/evo.12320. Epub 2013 Dec 13.

Abstract

The role that epigenetic inheritance can play in adaptation may differ between sexuals and asexuals because (1) the dynamics of adaptation differ under sexual and asexual reproduction and the opportunities offered by epigenetic inheritance may affect these dynamics differently; and (2) in asexual reproduction epigenetic reprogramming mechanisms that are associated with meiosis can be bypassed, which could promote the buildup of epigenetic variation in asexuals. Here, we evaluate current evidence for an epigenetic contribution to adaptation in asexuals. We argue that two aspects of epigenetic variation should have particular relevance for asexuals, namely epigenetics-mediated phenotypic plasticity within and between generations, and heritable variation via stochastic epimutations. An evaluation of epigenetic reprogramming mechanisms suggests that some, but not all, forms of asexual reproduction enhance the likelihood of stable transmission of epigenetic marks across generations compared to sexual reproduction. However, direct tests of these predicted sexual-asexual differences are virtually lacking. Stable transmission of DNA methylation, transcriptomes, and phenotypes from parent to clonal offspring are demonstrated in various asexual species, and clonal genotypes from natural populations show habitat-specific DNA methylation. We discuss how these initial observations can be extended to demonstrate an epigenetic contribution to adaptation.

摘要

表观遗传继承在适应中的作用可能在有性生物和无性生物之间有所不同,因为 (1) 有性和无性繁殖下适应的动态不同,而表观遗传继承提供的机会可能会以不同的方式影响这些动态;(2) 在无性繁殖中,可以绕过与减数分裂相关的表观遗传重编程机制,这可能会促进无性生物中表观遗传变异的积累。在这里,我们评估了表观遗传对无性生物适应的贡献的现有证据。我们认为,表观遗传变异的两个方面应该对无性生物特别重要,即代内和代间的表观遗传介导的表型可塑性,以及通过随机表观突变的可遗传变异。对表观遗传重编程机制的评估表明,与有性繁殖相比,某些形式的无性繁殖(但不是所有形式)增强了表观遗传标记在代际间稳定传递的可能性。然而,对这些预测的有性-无性差异的直接测试实际上几乎没有。在各种无性生物中,已经证明了从亲代到克隆后代的 DNA 甲基化、转录组和表型的稳定传递,并且来自自然种群的无性基因型显示出具有特定栖息地的 DNA 甲基化。我们讨论了如何将这些初始观察结果扩展到证明对适应的表观遗传贡献。

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