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导致杂交桡足类合子后生殖隔离的相互作用的本质。

The nature of interactions that contribute to postzygotic reproductive isolation in hybrid copepods.

作者信息

Willett Christopher S

机构信息

Department of Biology, University of North Carolina, CB#3280 Coker Hall, Chapel Hill, NC 27599-3280, USA.

出版信息

Genetica. 2011 May;139(5):575-88. doi: 10.1007/s10709-010-9525-1. Epub 2010 Nov 23.

Abstract

Deleterious interactions within the genome of hybrids can lower fitness and result in postzygotic reproductive isolation. Understanding the genetic basis of these deleterious interactions, known as Dobzhansky-Muller incompatibilities, is the subject of intense current study that seeks to elucidate the nature of these deleterious interactions. Hybrids from crosses of individuals from genetically divergent populations of the intertidal copepod Tigriopus californicus provide a useful model in which to study Dobzhansky-Muller incompatibilities. Studies of the basis of postzygotic reproductive isolation in this species have revealed a number of patterns. First, there is evidence for a breakdown in genomic coadaptation between mtDNA-encoded and nuclear-encoded proteins that can result in a reduction in hybrid fitness in some crosses. It appears from studies of the individual genes involved in these interactions that although this coadaptation could lead to asymmetries between crosses, patterns of genotypic viabilities are not often consistent with simple models of genomic coadaptation. Second, there is a large impact of environmental factors on these deleterious interactions suggesting that they are not strictly intrinsic in nature. Temperature in particular appears to play an important role in determining the nature of these interactions. Finally, deleterious interactions in these hybrid copepods appear to be complex in terms of the number of genetic factors that interact to lead to reductions in hybrid fitness. This complexity may stem from three or more factors that all interact to cause a single incompatibility or the same factor interacting with multiple other factors independently leading to multiple incompatibilities.

摘要

杂种基因组内的有害相互作用会降低适应性,并导致合子后生殖隔离。了解这些有害相互作用的遗传基础,即所谓的多布赞斯基-穆勒不相容性,是当前一项深入研究的主题,该研究旨在阐明这些有害相互作用的本质。来自潮间带桡足类动物加州虎斑猛水蚤遗传分化种群个体杂交产生的杂种,为研究多布赞斯基-穆勒不相容性提供了一个有用的模型。对该物种合子后生殖隔离基础的研究揭示了一些模式。首先,有证据表明线粒体DNA编码的蛋白质和核编码的蛋白质之间的基因组共适应出现了破坏,这可能导致某些杂交组合中杂种适应性的降低。从对参与这些相互作用的单个基因的研究来看,尽管这种共适应可能导致杂交组合之间的不对称,但基因型生存能力模式并不总是与简单的基因组共适应模型一致。其次,环境因素对这些有害相互作用有很大影响,这表明它们在本质上并非严格内在的。特别是温度似乎在决定这些相互作用的性质方面起着重要作用。最后,就导致杂种适应性降低的相互作用的遗传因素数量而言,这些杂种桡足类动物中的有害相互作用似乎很复杂。这种复杂性可能源于三个或更多相互作用导致单一不相容性的因素,或者同一因素与多个其他因素独立相互作用导致多种不相容性。

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