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Fine-scale genetic structure due to adaptive divergence among microhabitats

机译:由于微生境之间的适应性差异而导致的小规模遗传结构

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摘要

It has been suggested that adaptive evolution on ecological timescales shapes communities. However, adaptation among environments relies on isolation or large selection coefficients that exceed migration effects. This reliance is tempered if adaptation is polygenic—does not depend on one allele completely replacing another but instead requires small allele frequency changes at many loci. Thus, whether individuals can evolve adaptation to fine-scale habitat variation (for example, microhabitats) is not resolved. Here we analyze the genetic divergence of the teleost fish, Fundulus heteroclitus, among microhabitats that are <200 m apart in three separate saltmarshes using 4741 single-nucleotide polymorphisms (SNPs). Among these SNPs, 1.3–2.3% have large and highly significant differences among microhabitats (mean FST=0.15; false discovery rate ⩽1%). The divergence among microhabitats for these outlier SNPs is larger than that among populations, exceeds neutral expectation and indicates surprising population structure among microhabitats. Thus, we suggest that polygenic selection is surprisingly effective in altering allele frequencies among many different SNPs that share similar biological functions in response to environmental and ecological differences over very small geographic distances. We acknowledge the evolutionary difficulty of large genetic divergence among well-connected habitats. Therefore, these studies are only the first step to discern whether natural selection is responsible and capable of effecting genetic divergence on such a fine scale.
机译:有人提出,生态时间尺度上的适应性进化塑造了群落。但是,环境之间的适应依赖于隔离或超出迁移影响的较大选择系数。如果适应性是多基因的,则这种依赖性会得到缓解-不依赖于一个等位基因完全替代另一等位基因,而是需要在许多基因座处进行小的等位基因频率变化。因此,个体是否可以进化以适应小规模生境变化(例如,微生境)尚无定论。在这里,我们使用4741个单核苷酸多态性(SNP)分析了硬骨鱼异食底栖鱼类在三个单独的盐沼中相距小于200μm的微生境之间的遗传差异。在这些SNP中,微生境之间存在1.3%至2.3%的巨大差异(高度FST = 0.15;错误发现率⩽1%)。这些离群SNP的微生境之间的差异大于种群之间的差异,超出了中性预期,表明微生境中的种群结构令人惊讶。因此,我们认为,多基因选择在改变非常小的地理距离上响应环境和生态差异的,具有相似生物学功能的许多不同SNP之间等位基因频率的改变中,出奇地有效。我们承认,联系紧密的生境之间存在较大遗传差异的进化困难。因此,这些研究只是辨别自然选择是否负责并能够在如此精细的规模上实现遗传差异的第一步。

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