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关于通过基因座内策略冲突导致战术间遗传相关性受到侵蚀的证据不一。

Mixed evidence for the erosion of intertactical genetic correlations through intralocus tactical conflict.

作者信息

Pike K N, Tomkins J L, Buzatto B A

机构信息

Centre for Evolutionary Biology, School of Animal Biology (M092), The University of Western Australia, Crawley, WA, Australia.

出版信息

J Evol Biol. 2017 Jun;30(6):1195-1204. doi: 10.1111/jeb.13093. Epub 2017 May 11.

Abstract

Alternative reproductive tactics, whereby members of the same sex use different tactics to secure matings, are often associated with conditional intrasexual dimorphisms. Given the different selective pressures on males adopting each mating tactic, intrasexual dimorphism is more likely to arise if phenotypes are genetically uncoupled and free to evolve towards their phenotypic optima. However, in this context, genetic correlations between male morphs could result in intralocus tactical conflict (ITC). We investigated the genetic architecture of male dimorphism in bulb mites (Rhizoglyphus echinopus) and earwigs (Forficula auricularia). We used half-sibling breeding designs to assess the heritability and intra/intersexual genetic correlations of dimorphic and monomorphic traits in each species. We found two contrasting patterns; F. auricularia exhibited low intrasexual genetic correlations for the dimorphic trait, suggesting that the ITC is moving towards a resolution. Meanwhile, R. echinopus exhibited high and significant intrasexual genetic correlations for most traits, suggesting that morphs in the bulb mite may be limited in evolving to their optima. This also shows that intrasexual dimorphisms can evolve despite strong genetic constraints, contrary to current predictions. We discuss the implications of this genetic constraint and emphasize the potential importance of ITC for our understanding of intrasexual dimorphisms.

摘要

替代繁殖策略是指同性成员采用不同策略来确保交配,它通常与条件性的同性二态性相关联。鉴于采用每种交配策略的雄性面临不同的选择压力,如果表型在基因上没有关联且能够自由地朝着其表型最优状态进化,那么同性二态性更有可能出现。然而,在这种情况下,雄性形态之间的遗传相关性可能会导致基因座内策略冲突(ITC)。我们研究了球螨(Rhizoglyphus echinopus)和蠼螋(Forficula auricularia)雄性二态性的遗传结构。我们采用半同胞育种设计来评估每个物种中双态和单态性状的遗传力以及同性/异性遗传相关性。我们发现了两种截然不同的模式;蠼螋的双态性状表现出较低的同性遗传相关性,这表明ITC正在朝着解决的方向发展。与此同时,球螨的大多数性状表现出高度且显著的同性遗传相关性,这表明球螨的形态在向最优状态进化时可能受到限制。这也表明,尽管存在强大的遗传限制,同性二态性仍可进化,这与当前的预测相反。我们讨论了这种遗传限制的影响,并强调了ITC对于我们理解同性二态性的潜在重要性。

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