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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic and molecular analysis of the autosomal component of the primary sex determination signal of Drosophila melanogaster.
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Genetic and molecular analysis of the autosomal component of the primary sex determination signal of Drosophila melanogaster.

机译:果蝇的主要性别确定信号的常染色体成分的遗传和分子分析。

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摘要

Drosophila sex is determined by the action of the X:A chromosome balance on transcription of Sex-lethal (Sxl), a feminizing switch gene. We obtained loss-of-function mutations in denominator elements of the X:A signal by selecting for dominant suppressors of a female-specific lethal mutation in the numerator element, sisterlessA (sisA). Ten suppressors were recovered in this extensive genome-wide selection. All were mutations in deadpan (dpn), a pleiotropic locus previously discovered to be a denominator element. Detailed genetic and molecular characterization is presented of this diverse set of new dpn alleles including their effects on Sxl. Although selected only for impairment of sex-specific functions, all were also impaired in nonsex-specific functions. Male-lethal effects were anticipated for mutations in a major denominator element, but we found that viability of males lacking dpn function was reduced no more than 50% relative to their dpn- sisters. Moreover, loss of dpn activity in males caused only a modest derepression of the Sxl "establishment" promoter (Sxlpe), the X:A target. By itself, dpn cannot account for the masculinizing effect of increased autosomal ploidy, the effect that gave rise to the concept of the X:A ratio; nevertheless, if there are other denominator elements, our results suggest that their individual contributions to the sex-determination signal are even less than that of dpn. The time course of expression of dpn and of Sxl in dpn mutant backgrounds suggests that dpn is required for sex determination only during the later stages of X:A signaling in males to prevent inappropriate expression of Sxlpe in the face of increasing sis gene product levels.
机译:果蝇的性别决定于X:A染色体平衡对女性化转换基因Sex-致命(Sxl)转录的作用。我们通过选择分子元素中的女性特异性致死突变的显性抑制因子isterlessA(sisA),获得了X:A信号分母中的功能丧失突变。在这种广泛的全基因组选择中,回收了十种抑制剂。所有这些都是死区(dpn)中的突变,死区是以前发现是分母的多效性基因座。详细介绍了这组新的dpn等位基因的遗传和分子特征,包括其对Sxl的作用。尽管仅出于性别特定功能的损害而选择,但所有非性别特定功能也受到损害。预期主要分母元素中的突变会产生男性致死作用,但我们发现缺乏dpn功能的雄性的生存力相对于其dpn姐妹降低了不超过50%。此外,雄性中dpn活性的丧失仅引起Sxl“建立”启动子(Sxlpe)(X:A靶标)的适度抑制。 dpn本身无法解释常染色体倍性增加的男性化作用,这种作用引起了X:A比的概念;但是,如果还有其他分母元素,我们的结果表明,它们对性别决定信号的单独贡献甚至小于dpn。 dpn和Sxl在dpn突变体背景中表达的时间进程表明,仅在雄性X:A信号传导的后期才需要dpn来进行性别测定,以防止面对sis基因产物水平提高时Sxlpe的不适当表达。

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