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Physical linkage and mate preference generate linkage disequilibrium for behavioral isolation in two parapatric crickets

机译:身体上的联系和伴侣的偏爱会产生联系不平衡从而在两只父母旁中隔离行为

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摘要

Behavioral isolation is a potent barrier to gene flow and a source of striking diversity in the animal kingdom. However, it remains unclear if the linkage disequilibrium (LD) between sex‐specific traits required for behavioral isolation results mostly from physical linkage between signal and preference loci or from directional mate preferences. Here, we test this in the field crickets Gryllus rubens and G. texensis. These closely related species diverged with gene flow and have strongly differentiated songs and preference functions for the mate calling song rhythm. We map quantitative trait loci for signal and preference traits (pQTL) as well as for gene expression associated with these traits (eQTL). We find strong, positive genetic covariance between song traits and between song and preference. Our results show that this is in part explained by incomplete physical linkage: although both linked pQTL and eQTL couple male and female traits, major effect loci for different traits were never on the same chromosome. We suggest that the finely tuned, highly divergent preference functions are likely an additional source of LD between male and female traits in this system. Furthermore, pleiotropy of gene expression presents an underappreciated mechanism to link sexually dimorphic phenotypes.
机译:行为隔离是阻碍基因流动的强大障碍,也是动物界惊人的多样性来源。然而,尚不清楚行为隔离所需的性别特质之间的连锁不平衡(LD)主要是由信号和偏好位点之间的物理连锁还是定向配偶的偏好导致的。在这里,我们在田Gryllus rubens和G. texensis中进行测试。这些密切相关的物种随着基因流的变化而发散,并且在配偶呼叫节奏方面对歌曲和偏好功能有着强烈的区分。我们为信号和偏好性状(pQTL)以及与这些性状相关的基因表达(eQTL)映射了定量性状基因座。我们发现歌曲特征之间以及歌曲和喜好之间存在强大的正遗传协方差。我们的结果表明,部分原因是由于不完全的物理连锁所致:尽管连锁的pQTL和eQTL都具有雄性和雌性特征,但不同性状的主要影响基因座却从来不在同一条染色体上。我们建议,在此系统中,经过微调,高度不同的偏好函数可能是男性和女性特征之间的LD的另一个来源。此外,基因表达的多效性提出了一种将性双态表型联系起来的机制。

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