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性致死基因是果蝇中主要的性别决定基因,在家蝇中其调控并非具有性别特异性。

Sex-lethal, the master sex-determining gene in Drosophila, is not sex-specifically regulated in Musca domestica.

作者信息

Meise M, Hilfiker-Kleiner D, Dübendorfer A, Brunner C, Nöthiger R, Bopp D

机构信息

Zoological Institute, University of Zürich-Irchel, Zürich, Switzerland.

出版信息

Development. 1998 Apr;125(8):1487-94. doi: 10.1242/dev.125.8.1487.

Abstract

Sex-lethal (Sxl) is the master switch gene for somatic sex determination in Drosophila melanogaster. In XX animals, Sxl becomes activated and imposes female development; in X(Y) animals, Sxl remains inactive and male development ensues. A switch gene for sex determination, called F, has also been identified in the housefly, Musca domestica. An active F dictates female development, while male development ensues when F is inactive. To test if the switch functions of Sxl and F are founded on a common molecular basis, we isolated the homologous Sxl gene in the housefly. Though highly conserved in sequence, Musca-Sxl is not sex-specifically regulated: the same transcripts and protein isoforms are expressed in both male and female animals throughout development. Musca-Sxl is apparently not controlled by the primary sex-determining signal and, thus, is unlikely to correspond to the F gene. Ectopic expression of Musca-SXL protein in Drosophila does not exert any noticeable effects on the known target genes of endogenous Sxl. Instead, forced overexpression of the transgene eventually results in lethality of both XY and XX animals and in developmental abnormalities in some escaper XY animals. Similar results were obtained with the Sxl homologue of Ceratitis capitata (Saccone, G., Peluso, I., Artiaco, D. , Giodano, E., Bopp, D. and Polito, L. C. (1998) Development 125, 1495-1500) suggesting that, in these non-drosophilid species, Sxl performs a function different from that in sex determination.

摘要

性致死基因(Sex-lethal,Sxl)是黑腹果蝇体细胞性别决定的主控基因。在XX个体中,Sxl被激活并决定雌性发育;在X(Y)个体中,Sxl保持无活性,雄性发育随之发生。在家蝇(Musca domestica)中也鉴定出一种性别决定开关基因,称为F。F基因激活时决定雌性发育,无活性时则导致雄性发育。为了测试Sxl和F的开关功能是否基于共同的分子基础,我们在家蝇中分离出了同源的Sxl基因。尽管家蝇Sxl在序列上高度保守,但它并非性别特异性调控:在整个发育过程中,雄性和雌性动物都表达相同的转录本和蛋白质异构体。家蝇Sxl显然不受主要性别决定信号的控制,因此不太可能与F基因相对应。在家蝇中异位表达家蝇SXL蛋白对果蝇内源性Sxl的已知靶基因没有产生任何明显影响。相反,转基因的强制过表达最终导致XY和XX个体死亡,一些存活的XY个体出现发育异常。在果实蝇(Ceratitis capitata)的Sxl同源物中也得到了类似结果(Saccone, G., Peluso, I., Artiaco, D., Giodano, E., Bopp, D. and Polito, L. C. (1998) Development 125, 1495 - 1500),这表明在这些非果蝇类物种中,Sxl执行的功能与性别决定中的功能不同。

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