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配子选择有利于一妻多夫制和自交。

Gametic selection favours polyandry and selfing.

机构信息

School of Biological Sciences, University of East Anglia, Norwich, Norfolk, United Kingdom.

CNRS, UMR7144 Adaptation et Diversité en Milieu Marin, Station Biologique de Roscoff, Roscoff, France.

出版信息

PLoS Genet. 2024 Feb 16;20(2):e1010660. doi: 10.1371/journal.pgen.1010660. eCollection 2024 Feb.

Abstract

Competition among pollen or sperm (gametic selection) can cause evolution. Mating systems shape the intensity of gametic selection by determining the competitors involved, which can in turn cause the mating system itself to evolve. We model the bidirectional relationship between gametic selection and mating systems, focusing on variation in female mating frequency (monandry-polyandry) and self-fertilisation (selfing-outcrossing). First, we find that monandry and selfing both reduce the efficiency of gametic selection in removing deleterious alleles. This means that selfing can increase mutation load, in contrast to cases without gametic selection where selfing purges deleterious mutations and decreases mutation load. Second, we explore how mating systems evolve via their effect on gametic selection. By manipulating gametic selection, polyandry can evolve to increase the fitness of the offspring produced. However, this indirect advantage of post-copulatory sexual selection is weak and is likely to be overwhelmed by any direct fitness effects of mating systems. Nevertheless, gametic selection can be potentially decisive for selfing evolution because it significantly reduces inbreeding depression, which favours selfing. Thus, the presence of gametic selection could be a key factor driving selfing evolution.

摘要

花粉或精子之间的竞争(配子选择)可以导致进化。交配系统通过决定涉及的竞争者来塑造配子选择的强度,这反过来又可以导致交配系统本身进化。我们模拟了配子选择和交配系统之间的双向关系,重点研究了雌性交配频率(单配多配)和自交(自交杂交)的变化。首先,我们发现单配和自交都会降低去除有害等位基因的配子选择效率。这意味着自交会增加突变负荷,与没有配子选择的情况形成对比,后者通过自交清除有害突变并降低突变负荷。其次,我们探讨了交配系统如何通过对配子选择的影响而进化。通过操纵配子选择,多配可以进化以提高后代的适应性。然而,这种合后性选择的间接优势很弱,很可能被交配系统的任何直接适应性影响所淹没。尽管如此,配子选择对于自交进化可能是一个决定性因素,因为它显著降低了近交衰退,有利于自交。因此,配子选择的存在可能是推动自交进化的关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/621e/10903963/dca6f6dfdc4d/pgen.1010660.g001.jpg

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