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首页> 外文期刊>Nature Genetics >Structural genomic changes underlie alternative reproductive strategies in the ruff (Philomachus pugnax)
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Structural genomic changes underlie alternative reproductive strategies in the ruff (Philomachus pugnax)

机译:结构基因组的变化是the鱼(Philomachus pugnax)繁殖策略的基础

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摘要

The ruff is a Palearctic wader with a spectacular lekking behavior where highly ornamented males compete for females(1-4). This bird has one of the most remarkable mating systems in the animal kingdom, comprising three different male morphs (independents, satellites and faeders) that differ in behavior, plumage color and body size. Remarkably, the satellite and faeder morphs are controlled by dominant alleles(5,6). Here we have used whole-genome sequencing and resolved the enigma of how such complex phenotypic differences can have a simple genetic basis. The Satellite and Faeder alleles are both associated with a 4.5-Mb inversion that occurred about 3.8 million years ago. We propose an evolutionary scenario where the Satellite chromosome arose by a rare recombination event about 500,000 years ago. The ruff mating system is the result of an evolutionary process in which multiple genetic changes contributing to phenotypic differences between morphs have accumulated within the inverted region.
机译:上衣是古希腊人的涉水动物,具有令人惊叹的跳水行为,其中有很多有装饰性的雄性与雌性竞争(1-4)。这种鸟具有动物界中最杰出的交配系统之一,包括三种不同的雄性变体(独立,卫星和成对的食性动物),它们的行为,羽毛颜色和体型各不相同。值得注意的是,卫星和衰落子的形态受显性等位基因控制(5,6)。在这里,我们使用了全基因组测序,并解决了这种复杂表型差异如何具有简单遗传基础的谜团。卫星和Faeder等位基因都与大约380万年前发生的4.5 Mb反转有关。我们提出了一种进化方案,其中卫星染色体是由大约500,000年前的罕见重组事件引起的。颈圈交配系统是一个进化过程的结果,在该过程中,导致形态之间表型差异的多种遗传变化已累积在反向区域内。

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