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蛱蝶科艳斑蝶中的自然选择与遗传多样性

Natural Selection and Genetic Diversity in the Butterfly Heliconius melpomene.

作者信息

Martin Simon H, Möst Markus, Palmer William J, Salazar Camilo, McMillan W Owen, Jiggins Francis M, Jiggins Chris D

机构信息

Department of Zoology, University of Cambridge, CB2 3EH, United Kingdom

Department of Zoology, University of Cambridge, CB2 3EH, United Kingdom.

出版信息

Genetics. 2016 May;203(1):525-41. doi: 10.1534/genetics.115.183285. Epub 2016 Mar 26.

Abstract

A combination of selective and neutral evolutionary forces shape patterns of genetic diversity in nature. Among the insects, most previous analyses of the roles of drift and selection in shaping variation across the genome have focused on the genus Drosophila A more complete understanding of these forces will come from analyzing other taxa that differ in population demography and other aspects of biology. We have analyzed diversity and signatures of selection in the neotropical Heliconius butterflies using resequenced genomes from 58 wild-caught individuals of Heliconius melpomene and another 21 resequenced genomes representing 11 related species. By comparing intraspecific diversity and interspecific divergence, we estimate that 31% of amino acid substitutions between Heliconius species are adaptive. Diversity at putatively neutral sites is negatively correlated with the local density of coding sites as well as nonsynonymous substitutions and positively correlated with recombination rate, indicating widespread linked selection. This process also manifests in significantly reduced diversity on longer chromosomes, consistent with lower recombination rates. Although hitchhiking around beneficial nonsynonymous mutations has significantly shaped genetic variation in H. melpomene, evidence for strong selective sweeps is limited overall. We did however identify two regions where distinct haplotypes have swept in different populations, leading to increased population differentiation. On the whole, our study suggests that positive selection is less pervasive in these butterflies as compared to fruit flies, a fact that curiously results in very similar levels of neutral diversity in these very different insects.

摘要

选择性和中性进化力量的结合塑造了自然界中遗传多样性的模式。在昆虫中,之前大多数关于漂变和选择在塑造全基因组变异中作用的分析都集中在果蝇属。要更全面地理解这些力量,需要分析其他在种群统计学和生物学其他方面存在差异的分类群。我们利用58只野生捕获的美凤蝶个体的重测序基因组以及另外21个代表11个相关物种的重测序基因组,分析了新热带区赫利孔蝶属蝴蝶的多样性和选择特征。通过比较种内多样性和种间差异,我们估计赫利孔蝶属物种之间31%的氨基酸替换是适应性的。假定中性位点的多样性与编码位点的局部密度以及非同义替换呈负相关,与重组率呈正相关,表明存在广泛的连锁选择。这一过程也表现为较长染色体上的多样性显著降低,这与较低的重组率一致。尽管有益的非同义突变周围的搭便车现象显著塑造了美凤蝶的遗传变异,但总体而言,强烈选择性清除的证据有限。不过,我们确实确定了两个区域,在不同种群中不同的单倍型已经横扫,导致种群分化增加。总体而言,我们的研究表明,与果蝇相比,正选择在这些蝴蝶中的普遍性较低,奇怪的是,这一事实导致了这些非常不同的昆虫中中性多样性水平非常相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e028/4858797/0022ceee1bca/525fig1.jpg

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