Cctra是决定女性性别的主基因,它的自动调节需要Cctra -2基因的建立和维持。

M. Salvemini, M. Robertson, B. Aronson, P. Atkinson, L. C. Polito, G. Saccone
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引用次数: 126

摘要

在果蝇中,transformer-2 (TRA-2)是一种非性别特异性的辅助剪接因子,它通过与雌性特异性的TRA相互作用来促进雌性的性别分化。这两种蛋白积极调节双性(dsx)和无结果(fru)前mrna的剪接,这反过来调节表型和行为性二态性。在地中海果蝇certis capitata中,雌性特异性CcTRA同样不仅需要Ccdsx剪接,而且还需要发挥一种新的自调节功能,包括促进CcTRA pre-mRNA的雌性特异性剪接。本研究报道了果蝇转化-2基因(Cctra-2)同源物的分离和功能分析。在胚胎发育过程中,针对Cctra-2的瞬时RNAi导致XX蝇在成年可育伪雄性中发生完全性别逆转,并改变Cctra、Ccdsx和Ccfru的剪接模式。我们提出:1)与果蝇一样,Cctra-2对于促进Ccdsx和Ccfru pre-mRNA的雌性特异性剪合是必要的;2)与果蝇不同,Cctra-2对于在XX早期胚胎中建立雌性性别决定以及在发育过程中维持Cctra的正反馈调节是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ceratitis capitata transformer-2 gene is required to establish and maintain the autoregulation of Cctra, the master gene for female sex determination.
In Drosophila melanogaster, transformer-2 (TRA-2) which is a non-sex-specific auxiliary splicing factor, is required to promote female sexual differentiation by interaction with the female-specific TRA. The two proteins positively regulate the splicing of both doublesex (dsx) and fruitless (fru) pre-mRNAs, which in turn regulate phenotypic and behavioural sexual dimorphism. In the Mediterranean fruitfly Ceratitis capitata, the female-specific CcTRA is similarly required not only for Ccdsx splicing, but also to exert a novel autoregulatory function that consists of promoting female-specific splicing of Cctra pre-mRNA. This study reports the isolation and functional analysis of the C. capitata homologue of the Drosophila transformer-2 gene (Cctra-2). Transient RNAi against Cctra-2 during embryonic development causes the full sex reversal of XX flies in adult fertile pseudo-males, as well as changes in the splicing pattern of Cctra, Ccdsx and Ccfruitless (Ccfru). We propose that: 1) Cctra-2, as in Drosophila, is necessary for promoting Ccdsx and putative Ccfru pre-mRNA female-specific splicing and that 2) unlike in Drosophila, Cctra-2 appears to be necessary for establishing female sex determination in early XX embryos and for maintaining the positive feedback regulation of Cctra during development.
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