Moehring Amanda J, Li Jian, Schug Malcolm D, Smith Shelly G, deAngelis Matthew, Mackay Trudy F C, Coyne Jerry A
Department of Genetics, North Carolina State University, Raleigh, North Carolina 27695, USA.
Genetics. 2004 Jul;167(3):1265-74. doi: 10.1534/genetics.103.024364.
Sexual isolating mechanisms that act before fertilization are often considered the most important genetic barriers leading to speciation in animals. While recent progress has been made toward understanding the genetic basis of the postzygotic isolating mechanisms of hybrid sterility and inviability, little is known about the genetic basis of prezygotic sexual isolation. Here, we map quantitative trait loci (QTL) contributing to prezygotic reproductive isolation between the sibling species Drosophila simulans and D. mauritiana. We mapped at least seven QTL affecting discrimination of D. mauritiana females against D. simulans males, three QTL affecting D. simulans male traits against which D. mauritiana females discriminate, and six QTL affecting D. mauritiana male traits against which D. simulans females discriminate. QTL affecting sexual isolation act additively, are largely different in males and females, and are not disproportionately concentrated on the X chromosome: The QTL of greatest effect are located on chromosome 3. Unlike the genetic components of postzygotic isolation, the loci for prezygotic isolation do not interact epistatically. The observation of a few QTL with moderate to large effects will facilitate positional cloning of genes underlying sexual isolation.
在受精前起作用的性隔离机制通常被认为是导致动物物种形成的最重要的遗传障碍。虽然在理解杂种不育和杂种 inviability 的合子后隔离机制的遗传基础方面最近取得了进展,但对于合子前性隔离的遗传基础知之甚少。在这里,我们绘制了导致近缘物种拟果蝇和毛里求斯果蝇之间合子前生殖隔离的数量性状基因座(QTL)。我们绘制了至少七个影响毛里求斯果蝇雌性对拟果蝇雄性的识别的 QTL,三个影响拟果蝇雄性特征(毛里求斯果蝇雌性会据此进行识别)的 QTL,以及六个影响毛里求斯果蝇雄性特征(拟果蝇雌性会据此进行识别)的 QTL。影响性隔离的 QTL 以累加方式起作用,在雄性和雌性中差异很大,并且在 X 染色体上分布并不异常集中:影响最大的 QTL 位于 3 号染色体上。与合子后隔离的遗传成分不同,合子前隔离的基因座不存在上位性相互作用。观察到一些具有中等至较大效应的 QTL 将有助于对性隔离潜在基因进行定位克隆。