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拟暗果蝇和塞舌尔果蝇之间交配识别的遗传学

The genetics of mating recognition between Drosophila simulans and D. sechellia.

作者信息

Civetta Alberto, Cantor Elliott J F

机构信息

Department of Biology, University of Winnipeg, 515 Portage Avenue, Winnipeg, Manitoba, Canada R3B 2E9.

出版信息

Genet Res. 2003 Oct;82(2):117-26. doi: 10.1017/s0016672303006360.

Abstract

During courtship, visual and chemical signals are often exchanged between the sexes. The proper exchange of such signals ensures intraspecific recognition. We have examined the genetic basis of interspecific differences in male mating behaviour and pheromone concentration between Drosophila simulans and D. sechellia by using Drosophila simulans/D. sechellia introgression lines. Our results show a majority of quantitative trait loci (QTLs) explaining variation in both male mating behaviour and pheromone concentration to be located on the third chromosome. One QTL found on the third chromosome explains variation in time needed to start courtship and copulation as well as time spent courting. The position of such QTL (approximately 84A-88B) with effects on courtship and copulation aspects of mating includes the candidate sex determination gene doublesex (84E5-6) and Voila (86E1-2), a gene that affects male courtship in D. melanogaster. One additional third chromosome QTL explained variation in 7-tricosene pheromone concentrations among males. The interval mapping position of this QTL (approximately 68E-76E) did not overlap with the position detected for differences in mating behaviour and the intervals did not include candidate genes previously identified as having an effect on D. melanogaster cuticular hydrocarbon production. We did not detect any directionality of the effect of Drosophila sechellia allele introgressions in male mating recognition.

摘要

在求偶过程中,两性之间常常会交换视觉和化学信号。此类信号的恰当交换确保了种内识别。我们通过使用拟暗果蝇/塞舌尔果蝇渐渗系,研究了拟暗果蝇和塞舌尔果蝇之间雄性交配行为和信息素浓度种间差异的遗传基础。我们的结果表明,大多数解释雄性交配行为和信息素浓度变化的数量性状位点(QTL)位于第三条染色体上。在第三条染色体上发现的一个QTL解释了开始求偶和交配所需时间以及求偶所花费时间的变化。这种对交配的求偶和交配方面有影响的QTL(约84A - 88B)的位置包括候选性别决定基因双性基因(84E5 - 6)和Voila(86E1 - 2),后者是一个影响黑腹果蝇雄性求偶行为的基因。另一个位于第三条染色体上的QTL解释了雄性中7 - 二十三碳烯信息素浓度的变化。这个QTL的区间定位位置(约68E - 76E)与交配行为差异所检测到的位置不重叠,并且这些区间不包括先前已确定对黑腹果蝇表皮碳氢化合物产生有影响的候选基因。我们未检测到塞舌尔果蝇等位基因渐渗对雄性交配识别影响的任何方向性。

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