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黑腹果蝇中母体和合子性别特异性基因的相互作用。

Maternal and zygotic sex-specific gene interactions in Drosophila melanogaster.

作者信息

Cline T W

出版信息

Genetics. 1980 Dec;96(4):903-26. doi: 10.1093/genetics/96.4.903.

Abstract

Sex-lethal (Sxl) is a vital, X-chromosome gene involved in Drosophila sex determination. The most striking aspect of the phenotype of daughterless (da), an autosomal maternal-effect mutation, may be explained by effects on the functioning of the Sxl gene in the zygote. In this paper, new aspects of interactions between various combinations of Sxl and da alleles are explored in order to understand better the complex da phenotype. The study focuses on the relationship between maternal and zygotic da+ gene functions, and on the relationship between aspects of the da phenotype that are sex-specific and aspects that are not. The SxlM#1 allele, which counteracts the female-specific maternal effect of da, is shown to have no effect on two other aspects of the da phenotype (one maternal, one primarily zygotic) that are not sex-specific. The female-lethal da maternal effect is shown to kill daughters even when the progeny are entirely wild-type with respect to da. Recessive mutant alleles of the two genes can interact synergistically when both are heterozygous with their wild-type alleles, disrupting the development of most of the daughters. Surprisingly, even a deficiency of the da+ locus can produce a dominant, temperature-sensitive, female-lethal maternal effect. A new class of subliminal Sxlf alleles is described. These spontaneous mutations can confuse analysis of both da and Sxl if their presence is not appreciated. Finally, conditions are described that facilitate the study of the Enhancer of daughterless mutation.

摘要

性别致死基因(Sex-lethal,Sxl)是果蝇性别决定过程中一个至关重要的X染色体基因。无女儿基因(daughterless,da)是一种常染色体母体效应突变,其表型最显著的方面或许可以通过对合子中Sxl基因功能的影响来解释。在本文中,我们探究了Sxl和da等位基因各种组合之间相互作用的新方面,以便更好地理解复杂的da表型。该研究聚焦于母体和合子da+基因功能之间的关系,以及da表型中性别特异性方面和非性别特异性方面之间的关系。能抵消da的雌性特异性母体效应的SxlM#1等位基因,对da表型的另外两个非性别特异性方面(一个是母体效应,一个主要是合子效应)没有影响。即使子代在da基因方面完全是野生型,da的雌性致死母体效应也会导致女儿死亡。当这两个基因的隐性突变等位基因与它们的野生型等位基因都是杂合子时,二者可以协同相互作用,破坏大多数女儿的发育。令人惊讶的是,即使da+基因座存在缺失,也能产生显性的、温度敏感的雌性致死母体效应。本文描述了一类新的隐性Sxlf等位基因。如果没有意识到它们的存在,这些自发突变会干扰对da和Sxl的分析。最后,本文描述了有助于研究无女儿基因增强子突变的条件。

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