首页> 外文OA文献 >The last bastion? X chromosome genotyping ofAnopheles gambiaespecies pair males from a hybrid zone reveals complex recombination within the major candidate ‘genomic island of speciation’
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The last bastion? X chromosome genotyping ofAnopheles gambiaespecies pair males from a hybrid zone reveals complex recombination within the major candidate ‘genomic island of speciation’

机译:最后的堡垒? X染色体基因分型OnophelesGambiaEspecies对杂交区的男性揭示了主要候选物种的主要候选物种中的复合重组

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摘要

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.
机译:与基因流动形态可以通过降低重组帮助建立联动参与生殖隔离的早期阶段基因之间进行辅助。 X染色体上降低重组已经在形态牵连内的冈比亚按蚊复合物,其物种代表主要Afrotropical疟疾载体。最近发散,无法区分形态,物种对,冈比亚按蚊和按蚊coluzzii,遍在显示“基因组岛发散”从染色体着丝粒X,它代表了生殖隔离的基因特别有希望的候选区域中,除了跨越4 MB到包含用于区分物种的诊断用标记物。极低的重组,使实验研究重组岛内顽固,但在几内亚比绍极端的混合区提供了X-岛重组的自然调查的机会。 X染色体半合子男性的SNP分析显示:(一)强大的分歧在X岛尽管缺乏常染色体发散的; (ii)与多重组基因型,包括可能双重分频器和局部基因转变的个体; (ⅲ)重组驱动内和分子种类的标记之间的不连续性,这表明诊断的实用性在高压杂交破坏。在X着丝粒的基因组岛的大部分,但不完全受保护的性质是与用于自适应变体驱动用基因流动形态的积累的主要候选区域一致,同时允许一些选择性混排和去除遗传变异。

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