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简单的 Y 常染色体不相容导致了黑腹果蝇和美洲果蝇正反交杂种雄性不育。

Simple Y-autosomal incompatibilities cause hybrid male sterility in reciprocal crosses between Drosophila virilis and D. americana.

机构信息

Department of Biology, University of Rochester, Rochester, New York 14627, USA.

出版信息

Genetics. 2010 Mar;184(3):779-87. doi: 10.1534/genetics.109.112896. Epub 2010 Jan 4.

Abstract

Postzygotic reproductive isolation evolves when hybrid incompatibilities accumulate between diverging populations. Here, I examine the genetic basis of hybrid male sterility between two species of Drosophila, Drosophila virilis and D. americana. From these analyses, I reach several conclusions. First, neither species carries any autosomal dominant hybrid male sterility alleles: reciprocal F(1) hybrid males are perfectly fertile. Second, later generation (backcross and F(2)) hybrid male sterility between D. virilis and D. americana is not polygenic. In fact, I identified only three genetically independent incompatibilities that cause hybrid male sterility. Remarkably, each of these incompatibilities involves the Y chromosome. In one direction of the cross, the D. americana Y is incompatible with recessive D. virilis alleles at loci on chromosomes 2 and 5. In the other direction, the D. virilis Y chromosome causes hybrid male sterility in combination with recessive D. americana alleles at a single QTL on chromosome 5. Finally, in contrast with findings from other Drosophila species pairs, the X chromosome has only a modest effect on hybrid male sterility between D. virilis and D. americana.

摘要

合子后生殖隔离是在分化种群之间积累杂交不相容性时进化而来的。在这里,我研究了两种果蝇(黑腹果蝇和美洲果蝇)之间杂种雄性不育的遗传基础。通过这些分析,我得出了几个结论。首先,两个物种都没有携带任何常染色体显性杂交雄性不育等位基因:正反交 F1 杂种雄性完全可育。其次,黑腹果蝇和美洲果蝇之间的后代(回交和 F2)杂种雄性不育不是多基因的。事实上,我只鉴定出了三个导致杂种雄性不育的遗传独立不相容性。值得注意的是,这些不相容性中的每一个都涉及到 Y 染色体。在杂交的一个方向上,美洲果蝇的 Y 染色体与染色体 2 和 5 上隐性黑腹果蝇等位基因不相容。在另一个方向上,黑腹果蝇的 Y 染色体与染色体 5 上一个 QTL 的隐性美洲果蝇等位基因结合导致杂种雄性不育。最后,与其他果蝇物种对的研究结果相比,X 染色体对黑腹果蝇和美洲果蝇之间的杂种雄性不育只有适度的影响。

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