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Lack of fine-scale genetic structure and distant mating in natural populations of Fucus vesiculosus

机译:墨角榕自然种群缺乏精细的遗传结构和远距离交配

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ABSTRACT: Fine-scale spatial genetic structure (SGS) within populations reflects the dispersal behaviour of genes and individuals. Here we studied very small-scale SGS and mating patterns in the brown seaweed Fucus vesiculosus, a dioecious marine broadcast spawner with immediate settlement upon gamete release, which is predicted to strongly restrict gene flow. We estimated SGS, inbreeding and kinship for adults and recruits from habitats with contrasting exposures and patchiness (open coast and estuarine ecosystems) using microsatellite loci. Heterozygote deficiency was found for most adult populations but it was even higher for recruits, indicating inbreeding depression. At the fine spatial resolution of this study there was no spatial genetic structuring for 3 of the 5 populations studied across different habitats. Habitat could not explain the unrestricted gene flow in some populations. In the kinship analyses, we identified more putative mothers than fathers, suggesting that male gamete dispersal mediates gene flow at broader distances. However, the vast majority of the parents of the recruits could not be found among the adults sampled nearby, indicating unrestricted gene flow at these small scales. We propose 3 non-exclusive hypotheses for our findings: (1) unrestricted gene flow, (2) inbreeding depression eliminating most inbred individuals resulting from nearby related parents, (3) temporal Wahlund effects, mediated by a hypothetic genetic pool of a bank of microscopic forms persisting from previous generations.
机译:摘要:种群内的小规模空间遗传结构(SGS)反映了基因和个体的分散行为。在这里,我们研究了棕色海藻 Fucus vesiculosus 中的非常小规模的SGS和交配模式,它是一种雌雄异体的海洋繁殖产卵体,一旦配子释放,其立即沉降,这预计会强烈限制基因流。我们使用微卫星基因座估算了成年人和来自生境的SGS,近亲和近亲的亲缘关系,这些生境具有暴露和斑块(开放海岸和河口生态系统)形成鲜明对比。在大多数成年人群中发现杂合子缺乏,但新兵的杂合子缺乏甚至更高,表明近交抑郁症。在本研究的良好空间分辨率下,跨不同生境的5个种群中有3个没有空间遗传结构。生境无法解释某些种群中不受限制的基因流动。在亲属关系分析中,我们确定的推定母亲比父亲更多,这表明雄配子分散介导了更远距离的基因流。但是,在附近采样的成年人中找不到新兵的绝大多数父母,这表明在这些小规模的情况下,基因流动不受限制。我们针对我们的发现提出3个非排他性的假设:(1)不受限制的基因流;(2)近交抑郁消除了附近亲戚造成的大多数近交个体;(3)暂时的Wahlund效应,由一家银行的假设遗传库介导微观形式延续至今。

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