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大规模候选基因扫描揭示了化学感受基因在豌豆蚜宿主植物专化和物种形成中的作用。

Large-scale candidate gene scan reveals the role of chemoreceptor genes in host plant specialization and speciation in the pea aphid.

机构信息

Centre National de la Recherche Scientifique CNRS-Institut des Sciences de l'Evolution UMR 5554, cc065 Université Montpellier 2, 34095 Montpellier, France.

出版信息

Evolution. 2012 Sep;66(9):2723-38. doi: 10.1111/j.1558-5646.2012.01612.x. Epub 2012 Apr 12.

Abstract

Understanding the drivers of speciation is critical to interpreting patterns of biodiversity. The identification of the genetic changes underlying adaptation and reproductive isolation is necessary to link barriers to gene flow to the causal origins of divergence. Here, we present a novel approach to the genetics of speciation, which should complement the commonly used approaches of quantitative trait locus mapping and genome-wide scans for selection. We present a large-scale candidate gene approach by means of sequence capture, applied to identifying the genetic changes underlying reproductive isolation in the pea aphid, a model system for the study of ecological speciation. Targeted resequencing enabled us to scale up the candidate gene approach, specifically testing for the role of chemosensory gene families in host plant specialization. Screening for the signature of divergence under selection at 172 candidate and noncandidate loci, we revealed a handful of loci that show high levels of differentiation among host races, which almost all correspond to odorant and gustatory receptor genes. This study offers the first indication that some chemoreceptor genes, often tightly linked together in the genome, could play a key role in local adaptation and reproductive isolation in the pea aphid and potentially other phytophagous insects. Our approach opens a new route toward the functional genomics of ecological speciation.

摘要

理解物种形成的驱动因素对于解释生物多样性模式至关重要。确定适应和生殖隔离的遗传变化对于将基因流的障碍与分歧的因果起源联系起来是必要的。在这里,我们提出了一种新的物种形成遗传学方法,这应该补充常用的数量性状位点图谱和全基因组选择扫描方法。我们通过序列捕获提出了一种大规模的候选基因方法,应用于鉴定豌豆蚜生殖隔离的遗传变化,这是研究生态物种形成的模型系统。靶向重测序使我们能够扩大候选基因方法的规模,专门测试化学感觉基因家族在宿主植物特化中的作用。在 172 个候选和非候选基因座中筛选选择下的分歧特征,我们发现了少数几个在宿主种群中表现出高度分化的基因座,这些基因座几乎都对应于气味和味觉受体基因。这项研究首次表明,一些化学感觉基因,通常在基因组中紧密连锁,可能在豌豆蚜和潜在的其他植食性昆虫的局部适应和生殖隔离中发挥关键作用。我们的方法为生态物种形成的功能基因组学开辟了一条新途径。

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