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最后的堡垒?对来自杂交区的冈比亚按蚊种对雄性进行X染色体基因分型,揭示了主要候选“物种形成基因组岛”内的复杂重组。

The last bastion? X chromosome genotyping of Anopheles gambiae species pair males from a hybrid zone reveals complex recombination within the major candidate 'genomic island of speciation'.

作者信息

Caputo Beniamino, Pichler Verena, Mancini Emiliano, Pombi Marco, Vicente José L, Dinis Joao, Steen Keith, Petrarca Vincenzo, Rodrigues Amabelia, Pinto Joao, Della Torre Alessandra, Weetman David

机构信息

Istituto Pasteur Italia - Fondazione Cenci Bolognetti, Dipartimento di Sanità Pubblica e Malattie Infettive, Università 'Sapienza', Piazzale Aldo Moro 5, 00185, Rome, Italy.

Global Health and Tropical Medicine, Instituto de Higiene e Medicina Tropical, Universidade Nova de Lisboa, Rua daJunqueira, 100, 1349-008, Lisboa, Portugal.

出版信息

Mol Ecol. 2016 Nov;25(22):5719-5731. doi: 10.1111/mec.13840. Epub 2016 Nov 3.

Abstract

Speciation with gene flow may be aided by reduced recombination helping to build linkage between genes involved in the early stages of reproductive isolation. Reduced recombination on chromosome X has been implicated in speciation within the Anopheles gambiae complex, species of which represent the major Afrotropical malaria vectors. The most recently diverged, morphologically indistinguishable, species pair, A. gambiae and Anopheles coluzzii, ubiquitously displays a 'genomic island of divergence' spanning over 4 Mb from chromosome X centromere, which represents a particularly promising candidate region for reproductive isolation genes, in addition to containing the diagnostic markers used to distinguish the species. Very low recombination makes the island intractable for experimental recombination studies, but an extreme hybrid zone in Guinea Bissau offers the opportunity for natural investigation of X-island recombination. SNP analysis of chromosome X hemizygous males revealed: (i) strong divergence in the X-island despite a lack of autosomal divergence; (ii) individuals with multiple-recombinant genotypes, including likely double crossovers and localized gene conversion; (iii) recombination-driven discontinuity both within and between the molecular species markers, suggesting that the utility of the diagnostics is undermined under high hybridization. The largely, but incompletely protected nature of the X centromeric genomic island is consistent with a primary candidate area for accumulation of adaptive variants driving speciation with gene flow, while permitting some selective shuffling and removal of genetic variation.

摘要

基因流存在时的物种形成可能得益于重组减少,这有助于在生殖隔离早期涉及的基因之间建立连锁。X染色体上重组减少与冈比亚按蚊复合体的物种形成有关,该复合体中的物种是非洲热带地区主要的疟疾传播媒介。最近分化、形态上难以区分的物种对,冈比亚按蚊和科氏按蚊,普遍显示出一个从X染色体着丝粒起跨越超过4兆碱基的“分化基因组岛”,除了包含用于区分这两个物种的诊断标记外,该区域还是生殖隔离基因特别有前景的候选区域。极低的重组率使得该岛难以用于实验性重组研究,但几内亚比绍的一个极端杂交带为自然研究X染色体岛的重组提供了机会。对X染色体半合子雄性的单核苷酸多态性分析显示:(i)尽管常染色体没有分化,但X染色体岛上存在强烈分化;(ii)具有多种重组基因型的个体,包括可能的双交换和局部基因转换;(iii)分子物种标记内部和之间由重组驱动的不连续性,这表明在高杂交情况下诊断标记的效用受到损害。X染色体着丝粒基因组岛在很大程度上但不完全受到保护的性质,与驱动基因流物种形成的适应性变异积累的主要候选区域一致,同时允许一些选择性的基因改组和遗传变异的去除。

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