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黑腹果蝇交配因子间的上位性导致与 D. pseudoobscura bogotana 的杂种雄性不育。

Epistasis among Drosophila persimilis factors conferring hybrid male sterility with D. pseudoobscura bogotana.

机构信息

Biology Department, Duke University, Durham, North Carolina, United States of America.

出版信息

PLoS One. 2010 Oct 27;5(10):e15377. doi: 10.1371/journal.pone.0015377.

Abstract

The Bateson-Dobzhansky-Muller model posits that hybrid incompatibilities result from genetic changes that accumulate during population divergence. Indeed, much effort in recent years has been devoted to identifying genes associated with hybrid incompatibilities, often with limited success, suggesting that hybrid sterility and inviability are frequently caused by complex interactions between multiple loci and not by single or a small number of gene pairs. Our previous study showed that the nature of epistasis between sterility-conferring QTL in the Drosophila persimilis-D. pseudoobscura bogotana species pair is highly specific. Here, we further dissect one of the three QTL underlying hybrid male sterility between these species and provide evidence for multiple factors within this QTL. This result indicates that the number of loci thought to contribute to hybrid dysfunction may have been underestimated, and we discuss how linkage and complex epistasis may be characteristic of the genetics of hybrid incompatibilities. We further pinpoint the location of one locus that confers hybrid male sterility when homozygous, dubbed "mule-like", to roughly 250 kilobases.

摘要

贝特森-多布赞斯基-穆勒模型假设杂种不亲和性是由于种群分歧过程中积累的遗传变化引起的。事实上,近年来,人们已经投入了大量精力来识别与杂种不亲和性相关的基因,但往往收效甚微,这表明杂种不育和活力不足通常是由多个基因座之间的复杂相互作用引起的,而不是由单个或少数几个基因对引起的。我们之前的研究表明,在果蝇 persimilis-D. pseudoobscura bogotana 种对中,导致不育的 QTL 之间的上位性性质具有高度特异性。在这里,我们进一步剖析了这两个物种之间杂种雄性不育的三个 QTL 之一,并提供了该 QTL 内多个因素的证据。这一结果表明,认为对杂种功能障碍有贡献的基因座数量可能被低估了,我们讨论了连锁和复杂上位性如何可能是杂种不亲和性遗传的特征。我们进一步确定了一个纯合时导致杂种雄性不育的基因座的位置,将其命名为“骡样”,大致位于 250 千碱基对左右。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d76a/2965152/cd037bb265e5/pone.0015377.g001.jpg

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