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Genomic signatures of local adaptation reveal source-sink dynamics in a high gene flow fish species

机译:局部适应的基因组特征揭示了高基因流鱼类中的源水槽动态

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Understanding source-sink dynamics is important for conservation management, particularly when climatic events alter species' distributions. Following a 2011 'marine heatwave' in Western Australia, we observed high recruitment of the endemic fisheries target species Choerodon rubescens, towards the cooler (southern) end of its distribution. Here, we use a genome wide set of 14 559 single-nucleotide polymorphisms (SNPs) to identify the likely source population for this recruitment event. Most loci (76%) showed low genetic divergence across the species' range, indicating high levels of gene flow and confirming previous findings using neutral microsatellite markers. However, a small proportion of loci showed strong patterns of differentiation and exhibited patterns of population structure consistent with local adaptation. Clustering analyses based on these outlier loci indicated that recruits at the southern end of C. rubescens' range originated 400?km to the north, at the centre of the species' range, where average temperatures are up to 3?°C warmer. Survival of these recruits may be low because they carry alleles adapted to an environment different to the one they now reside in, but their survival is key to establishing locally adapted populations at and beyond the range edge as water temperatures increase with climate change.
机译:了解源汇动力学对于保护管理很重要,特别是当气候事件改变物种的分布时。在西澳大利亚州的2011年“海洋热浪”之后,我们观察了高级招募了流行的流行渔业靶样系列卷破,朝着其分布的凉爽(南方)结束。在这里,我们使用基因组宽的1459个单核苷酸多态性(SNP)来确定该招聘活动的可能源头。大多数基因座(76%)显示出种类的低遗传分歧,表明使用中性微卫星标记的高水平的基因流动和确认先前的发现。然而,小比例的基因座显示出强烈的分化模式,并表现出与局部适应一致的人口结构模式。基于这些异常座的聚类分析表明,C.南端C. Rubescens'范围的新兵到北方的400 km,在物种范围的中心,平均温度高达3?°C温暖。这些新兵的生存可能很低,因为它们随身携带适应与他们现在所在的环境不同的环境,但它们的生存是在水温随着气候变化的增加时建立局部适应群体的关键。

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