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Evolution of Multiple Additive Loci Caused Divergence between Drosophila yakuba and D. santomea in Wing Rowing during Male Courtship

机译:多种添加剂位点的形成与演进永赛艇男求爱期间果蝇yakuba和D. santomea之间产生分歧

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摘要

In Drosophila, male flies perform innate, stereotyped courtship behavior. This innate behavior evolves rapidly between fly species, and is likely to have contributed to reproductive isolation and species divergence. We currently understand little about the neurobiological and genetic mechanisms that contributed to the evolution of courtship behavior. Here we describe a novel behavioral difference between the two closely related species D. yakuba and D. santomea: the frequency of wing rowing during courtship. During courtship, D. santomea males repeatedly rotate their wing blades to face forward and then back (rowing), while D. yakuba males rarely row their wings. We found little intraspecific variation in the frequency of wing rowing for both species. We exploited multiplexed shotgun genotyping (MSG) to genotype two backcross populations with a single lane of Illumina sequencing. We performed quantitative trait locus (QTL) mapping using the ancestry information estimated by MSG and found that the species difference in wing rowing mapped to four or five genetically separable regions. We found no evidence that these loci display epistasis. The identified loci all act in the same direction and can account for most of the species difference.
机译:在果蝇中,雄蝇表现出先天的,定型的求爱行为。这种先天的行为在蝇类之间迅速发展,并可能有助于生殖隔离和物种分化。我们目前对促成求爱行为进化的神经生物学和遗传机制了解甚少。在这里,我们描述了两个密切相关的物种D. yakuba和D. santomea之间的一种新颖的行为差异:求爱期间机翼划船的频率。在求爱期间,D。santomea雄性反复旋转翅膀的翼片,使其面向前然后向后(划行),而yakuba雄性雄性很少划翼。我们发现两种物种的翼划艇频率几乎没有种内差异。我们利用多路散弹枪基因分型(MSG),以单道Illumina测序对两个回交群体进行基因分型。我们使用MSG估计的祖先信息进行了数量性状基因座(QTL)定位,发现机翼划船中的物种差异映射到四个或五个遗传上可分离的区域。我们没有发现这些基因座显示上位性的证据。识别出的基因座都朝着相同的方向起作用,并且可以解释大多数物种差异。

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