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行为隔离的遗传基础:Drosophila mauritiana 和 D. sechellia 之间的差异。

The genetic basis of behavioral isolation between Drosophila mauritiana and D. sechellia.

机构信息

Department of Biology, University of Rochester, Rochester, NY 14627, USA.

出版信息

Evolution. 2012 Jul;66(7):2182-90. doi: 10.1111/j.1558-5646.2012.01600.x. Epub 2012 Apr 29.

Abstract

Understanding how species form is a fundamental question in evolutionary biology. Identifying the genetic bases of barriers that prevent gene flow between species provides insight into how speciation occurs. Here, I analyze a poorly understood reproductive isolating barrier, prezygotic reproductive isolation. I perform a genetic analysis of prezygotic isolation between two closely related species of Drosophila, D. mauritiana and D. sechellia. I first confirm the existence of strong behavioral isolation between D. mauritiana females and D. sechellia males. Next, I examine the genetic basis of behavioral isolation by (1) scanning an existing set of introgression lines for chromosomal regions that have a large effect on isolation; and (2) mapping quantitative trait loci (QTL) that underlie behavioral isolation via backcross analysis. In particular, I map QTL that determine whether a hybrid backcross female and a D. sechellia male will mate. I identify a single significant QTL, on the X chromosome, suggesting that few major-effect loci contribute to behavioral isolation between these species. In further work, I refine the map position of the QTL to a small region of the X chromosome.

摘要

了解物种是如何形成的是进化生物学中的一个基本问题。确定阻止物种间基因流动的遗传基础,可以深入了解物种形成的方式。在这里,我分析了一个理解甚少的生殖隔离障碍,即合子前生殖隔离。我对两个密切相关的果蝇物种,D. mauritiana 和 D. sechellia 之间的合子前隔离进行了遗传分析。我首先证实了 D. mauritiana 雌性和 D. sechellia 雄性之间存在强烈的行为隔离。接下来,我通过(1)扫描一组现有的渐渗系,寻找对隔离有较大影响的染色体区域;以及(2)通过回交分析,绘制控制行为隔离的数量性状基因座(QTL)来研究行为隔离的遗传基础。具体来说,我绘制了决定杂交回交雌性与 D. sechellia 雄性是否交配的 QTL。我鉴定出一个位于 X 染色体上的单一显著 QTL,这表明少数主要效应基因座对这些物种之间的行为隔离有贡献。在进一步的工作中,我将 QTL 的图谱位置精确定位到 X 染色体的一个小区域。

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