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Patterns of Genomic Differentiation between Ecologically Differentiated M and S Forms of Anopheles gambiae in West and Central Africa

机译:西非和中非冈比亚按蚊生态分化的M型和S型之间的基因组分化模式

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Anopheles gambiae M and S are thought to be undergoing ecological speciation by adapting to different larval habitats. Toward an improved understanding of the genetic determinants and evolutionary processes shaping their divergence, we used a 400,000 single-nucleotide polymorphism (SNP) genotyping array to characterize patterns of genomic differentiation between four geographically paired M and S population samples from West and Central Africa. In keeping with recent studies based on more limited genomic or geographic sampling, divergence was not confined to a few isolated “speciation islands.” Divergence was both widespread across the genome and heterogeneous. Moreover, we find consistent patterns of genomic divergence across sampling sites and mutually exclusive clustering of M and S populations using genetic distances based on all 400,000 SNPs, implying that M and S are evolving collectively across the study area. Nevertheless, the clustering of local M and S populations using genetic distances based on SNPs from genomic regions of low differentiation is consistent with recent gene flow and introgression. To account for these data and reconcile apparent paradoxes in reported patterns of M–S genomic divergence and hybridization, we propose that extrinsic ecologically based postmating barriers vary in strength as environmental conditions fluctuate or change.
机译:冈比亚按蚊M和S被认为通过适应不同的幼虫栖息地而经历了生态物种形成。为了更好地理解遗传决定因素和形成其差异的进化过程,我们使用了400,000个单核苷酸多态性(SNP)基因分型阵列来表征来自西非和中非的四个地理配对的M和S种群样本之间的基因组分化模式。与基于更有限的基因组或地理采样的最新研究保持一致的是,分歧并不局限于少数几个孤立的“物种孤岛”。发散既在整个基因组中广泛存在,又是异质的。此外,我们发现基于所有400,000个SNP的遗传距离,在采样位点之间存在一致的基因组差异模式,并在M和S种群之间互斥聚类,这表明M和S在整个研究区域内正在共同发展。尽管如此,使用基于来自低分化基因组区域的SNP的遗传距离对本地M和S种群进行聚类与最近的基因流和基因渗入相一致。为了解释这些数据并调和报告的M–S基因组差异和杂交模式中的明显悖论,我们建议基于环境条件的波动或变化,基于外部生态学的繁殖障碍的强度也会有所不同。

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