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通过全基因组扫描确定的局部适应性区域中的序列分化。

Sequence differentiation in regions identified by a genome scan for local adaptation.

作者信息

Wood Henry M, Grahame John W, Humphray Sean, Rogers Jane, Butlin Roger K

机构信息

Institute of Integrative and Comparative Biology, University of Leeds, Leeds LS29JT, UK.

出版信息

Mol Ecol. 2008 Jul;17(13):3123-35. doi: 10.1111/j.1365-294X.2008.03755.x. Epub 2008 May 28.

Abstract

Genome scans using large numbers of randomly selected markers have revealed a small proportion of loci that deviate from neutral expectations and so may mark genomic regions that contribute to local adaptation. Measurements of sequence differentiation and identification of genes in these regions is important but difficult, especially in organisms with limited genetic information available. We have followed up a genome scan in the marine gastropod, Littorina saxatilis, by searching a bacterial artificial chromosome library with differentiated and undifferentiated markers, sequencing four bacterial artificial chromosomes and then analysing sequence variation in population samples for fragments at, and close to the original marker polymorphisms. We show that sequence differentiation follows the patterns expected from the original marker frequencies, that differentiated markers identify independent and highly localized sites and that these sites fall outside coding regions. Two differentiated loci are characterized by insertions of putative transposable elements that appear to have increased in frequency recently and which might influence expression of downstream genes. These results provide strong candidate loci for the study of local adaptation in Littorina. They demonstrate an approach that can be applied to follow up genome scans in other taxa and they show that the genome scan approach can lead rapidly to candidate genes in nonmodel organisms.

摘要

使用大量随机选择的标记进行基因组扫描,已揭示出一小部分偏离中性预期的基因座,因此这些基因座可能标记了有助于局部适应的基因组区域。测量这些区域的序列分化并鉴定其中的基因很重要但也很困难,尤其是在可用遗传信息有限的生物体中。我们对海洋腹足纲动物粗糙滨螺进行了基因组扫描,随后通过用分化和未分化的标记物搜索细菌人工染色体文库、对四个细菌人工染色体进行测序,然后分析群体样本中原始标记多态性处及附近片段的序列变异。我们表明,序列分化遵循原始标记频率预期的模式,分化的标记物识别独立且高度局部化的位点,并且这些位点位于编码区域之外。两个分化的基因座的特征是假定的转座元件插入,这些转座元件的频率最近似乎有所增加,可能会影响下游基因的表达。这些结果为粗糙滨螺局部适应的研究提供了强有力的候选基因座。它们展示了一种可应用于跟进其他分类群基因组扫描的方法,并且表明基因组扫描方法可以迅速找到非模式生物中的候选基因。

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