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果蝇两个姐妹物种间隔离机制的遗传学

THE GENETICS OF AN ISOLATING MECHANISM BETWEEN TWO SIBLING SPECIES OF DROSOPHILA.

作者信息

Coyne Jerry A

机构信息

Department of Ecology and Evolution, University of Chicago, 1101 East 57th Street, Chicago, Illinois, 60637.

出版信息

Evolution. 1993 Jun;47(3):778-788. doi: 10.1111/j.1558-5646.1993.tb01233.x.

Abstract

Matings between Drosophila simulans females and males of the sibling species D. mauritiana are of abnormally short duration. These rapid matings interrupt the transfer of sperm, leading to substantial reproductive isolation in interspecific as compared to intraspecific copulations. Genetic analysis of this behavior shows that it is influenced much more by the male than the female genotype, with genes from D. simulans being dominant. In males, shortened copulation is caused by interspecific divergence at a minimum of three loci, with one gene on each of the major chromosomes. This is an underestimate of the true number of loci affecting the trait, which could be much larger. The two autosomes have the largest effect, whereas that of the X chromosome is much smaller. The genetic architecture of copulation duration and the larger effect of male than female genotype suggest that females can detect and discriminate against differences in male genitalia.

摘要

拟暗果蝇(Drosophila simulans)的雌性与同属的毛里求斯果蝇(D. mauritiana)的雄性之间的交配持续时间异常短。这些快速交配会中断精子的传递,与种内交配相比,导致种间出现显著的生殖隔离。对这种行为的遗传分析表明,它受雄性基因型的影响远大于雌性基因型,拟暗果蝇的基因具有主导作用。在雄性中,交配时间缩短至少由三个基因座的种间差异引起,每个主要染色体上各有一个基因。这是对影响该性状的基因座真实数量的低估,实际数量可能更多。两条常染色体的影响最大,而X染色体的影响要小得多。交配持续时间的遗传结构以及雄性基因型比雌性基因型的影响更大,这表明雌性能够检测并区分雄性生殖器的差异。

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