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原神经基因scute被招募至果蝇性别决定途径。

Recruitment of the proneural gene scute to the Drosophila sex-determination pathway.

作者信息

Wrischnik Lisa A, Timmer John R, Megna Lisa A, Cline Thomas W

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley, California 94720-3204, USA.

出版信息

Genetics. 2003 Dec;165(4):2007-27. doi: 10.1093/genetics/165.4.2007.

Abstract

In flies, scute (sc) works with its paralogs in the achaete-scute-complex (ASC) to direct neuronal development. However, in the family Drosophilidae, sc also acquired a role in the primary event of sex determination, X chromosome counting, by becoming an X chromosome signal element (XSE)-an evolutionary step shown here to have occurred after sc diverged from its closest paralog, achaete (ac). Two temperature-sensitive alleles, sc(sisB2) and sc(sisB3), which disrupt only sex determination, were recovered in a powerful F1 genetic selection and used to investigate how sc was recruited to the sex-determination pathway. sc(sisB2) revealed 3' nontranscribed regulatory sequences likely to be involved. The sc(sisB2) lesion abolished XSE activity when combined with mutations engineered in a sequence upstream of all XSEs. In contrast, changes in Sc protein sequence seem not to have been important for recruitment. The observation that the other new allele, sc(sisB3), eliminates the C-terminal half of Sc without affecting neurogenesis and that sc(sisB1), the most XSE-specific allele previously available, is a nonsense mutant, would seem to suggest the opposite, but we show that housefly Sc can substitute for fruit fly Sc in sex determination, despite lacking Drosophilidae-specific conserved residues in its C-terminal half. Lack of synergistic lethality among mutations in sc, twist, and dorsal argue against a proposed role for sc in mesoderm formation that had seemed potentially relevant to sex-pathway recruitment. The screen that yielded new sc alleles also generated autosomal duplications that argue against the textbook view that fruit fly sex signal evolution recruited a set of autosomal signal elements comparable to the XSEs.

摘要

在果蝇中,scute(sc)与其在无刚毛 - 毛状体复合体(ASC)中的旁系同源基因共同作用,指导神经元发育。然而,在果蝇科中,sc还通过成为X染色体信号元件(XSE),在性别决定的主要事件——X染色体计数中发挥了作用。本文显示,这一进化步骤发生在sc与其最接近的旁系同源基因无刚毛(ac)分化之后。在一项强大的F1遗传筛选中获得了两个仅破坏性别决定的温度敏感等位基因sc(sisB2)和sc(sisB3),并用于研究sc是如何被招募到性别决定途径中的。sc(sisB2)揭示了可能涉及的3'非转录调控序列。当与在所有XSE上游序列中设计的突变结合时,sc(sisB2)损伤消除了XSE活性。相比之下,Sc蛋白序列的变化似乎对招募并不重要。另一个新等位基因sc(sisB3)消除了Sc的C末端一半而不影响神经发生,以及之前可用的最具XSE特异性的等位基因sc(sisB1)是一个无义突变体,这一观察结果似乎表明情况相反,但我们表明家蝇Sc在性别决定中可以替代果蝇Sc,尽管其C末端一半缺乏果蝇科特有的保守残基。sc、twist和dorsal突变之间缺乏协同致死性,这与sc在中胚层形成中曾被认为可能与性别途径招募相关的拟议作用相悖。产生新sc等位基因的筛选还产生了常染色体重复,这与教科书观点相悖,该观点认为果蝇性别信号进化招募了一组与XSE相当的常染色体信号元件。

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本文引用的文献

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TRIPLOID INTERSEXES IN DROSOPHILA MELANOGASTER.黑腹果蝇中的三倍体雌雄间性体。
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