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Kin-Aggregations Explain Chaotic Genetic Patchiness a Commonly Observed Genetic Pattern in a Marine Fish

机译:亲族聚集体解释了海水鱼类的混沌遗传斑atch一种常见的遗传模式。

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摘要

The phenomenon of chaotic genetic patchiness is a pattern commonly seen in marine organisms, particularly those with demersal adults and pelagic larvae. This pattern is usually associated with sweepstakes recruitment and variable reproductive success. Here we investigate the biological underpinnings of this pattern in a species of marine goby Coryphopterus personatus. We find that populations of this species show tell-tale signs of chaotic genetic patchiness including: small, but significant, differences in genetic structure over short distances; a non-equilibrium or “chaotic” pattern of differentiation among locations in space; and within locus, within population deviations from the expectations of Hardy-Weinberg equilibrium (HWE). We show that despite having a pelagic larval stage, and a wide distribution across Caribbean coral reefs, this species forms groups of highly related individuals at small spatial scales (<10 metres). These spatially clustered family groups cause the observed deviations from HWE and local population differentiation, a finding that is rarely demonstrated, but could be more common than previously thought.
机译:遗传上的混乱斑驳现象是海洋生物中常见的一种模式,尤其是那些具有成年海底鱼类和上层幼虫的生物。这种模式通常与抽奖活动和可变的生殖成功有关。在这里,我们调查了这种模式在海洋虾虎鱼科鱼的物种的生物学基础。我们发现该物种的种群显示出混乱的遗传斑驳的迹象,包括:短距离内遗传结构的微小但显着的差异;空间中位置之间的非平衡或“混乱”分化模式;在场所内,在与Hardy-Weinberg平衡(HWE)期望值偏离的总体范围内。我们显示,尽管具有上层幼体阶段,并且在加勒比珊瑚礁中分布广泛,但该物种在较小的空间尺度(<10米)上形成了高度相关的个体群体。这些空间上聚集的家庭群体导致观察到的与HWE和当地人口分化的偏差,这一发现很少得到证实,但可能比以前认为的更为普遍。

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