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Shadow enhancers as a source of evolutionary novelty.作为进化新奇性来源的影子增强子。
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Evidence for the evolutionary nascence of a novel sex determination pathway in honeybees.蜜蜂中一种新的性别决定途径进化起源的证据。
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Nonautonomous sex determination controls sexually dimorphic development of the Drosophila gonad.非自主性别决定控制果蝇性腺的两性发育。
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The transformer gene in Bactrocera oleae: the genetic switch that determines its sex fate.油橄榄实蝇中的转化基因:决定其性别命运的遗传开关。
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Male-Specific Lethal Mutations of DROSOPHILA MELANOGASTER . II. Parameters of Gene Action during Male Development.黑腹果蝇雄性特异致死突变。Ⅱ. 雄性发育过程中基因作用的参数。
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Drosophila melanogaster male somatic cells feminized solely by TraF can collaborate with female germ cells to make functional eggs.仅由TraF诱导雌性化的果蝇雄性体细胞可与雌性生殖细胞协作产生功能性卵子。
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具有进化意义的性别反向调控:果蝇性别决定基因性致死基因受其靶标变换基因的刺激

Sexual back talk with evolutionary implications: stimulation of the Drosophila sex-determination gene sex-lethal by its target transformer.

作者信息

Siera Scott G, Cline Thomas W

机构信息

Department of Molecular and Cell Biology, Division of Genetics, Genomics and Development, University of California, Berkeley, California 94720-3204, USA.

出版信息

Genetics. 2008 Dec;180(4):1963-81. doi: 10.1534/genetics.108.093898. Epub 2008 Oct 9.

DOI:10.1534/genetics.108.093898
PMID:18845845
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2600935/
Abstract

We describe a surprising new regulatory relationship between two key genes of the Drosophila sex-determination gene hierarchy, Sex-lethal (Sxl) and transformer (tra). A positive autoregulatory feedback loop for Sxl was known to maintain somatic cell female identity by producing SXL-F protein to continually instruct the target gene transformer (tra) to make its feminizing product, TRA-F. We discovered the reciprocal regulatory effect by studying genetically sensitized females: TRA-F from either maternal or zygotic tra expression stimulates Sxl-positive autoregulation. We found female-specific tra mRNA in eggs as predicted by this tra maternal effect, but not predicted by the prevailing view that tra has no germline function. TRA-F stimulation of Sxl seems to be direct at some point, since Sxl harbors highly conserved predicted TRA-F binding sites. Nevertheless, TRA-F stimulation of Sxl autoregulation in the gonadal soma also appears to have a cell-nonautonomous aspect, unprecedented for somatic Sxl regulation. This tra-Sxl retrograde regulatory circuit has evolutionary implications. In some Diptera, tra occupies Sxl's position as the gene that epigenetically maintains female identity through direct positive feedback on pre-mRNA splicing. The tra-mediated Sxl feedback in Drosophila may be a vestige of regulatory redundancy that facilitated the evolutionary transition from tra to Sxl as the master sex switch.

摘要

我们描述了果蝇性别决定基因层级中两个关键基因——性别致死基因(Sex-lethal,Sxl)和变异性状基因(transformer,tra)之间一种令人惊讶的新调控关系。已知Sxl存在一个正向自调控反馈环,通过产生SXL-F蛋白来维持体细胞的雌性身份,该蛋白持续指导靶基因变异性状基因(tra)产生其雌性化产物TRA-F。我们通过研究基因敏感型雌性果蝇发现了这种相互调控作用:来自母本或合子tra表达的TRA-F刺激Sxl正向自调控。正如这种tra母本效应所预测的那样,我们在卵中发现了雌性特异性的tra mRNA,但这与tra没有生殖系功能的主流观点相悖。TRA-F对Sxl的刺激在某些方面似乎是直接的,因为Sxl含有高度保守的预测TRA-F结合位点。然而,TRA-F对性腺体细胞中Sxl自调控的刺激似乎也具有细胞非自主性的一面,这在体细胞Sxl调控中是前所未有的。这种tra-Sxl逆行调控回路具有进化意义。在一些双翅目昆虫中,tra占据了Sxl的位置,即通过对前体mRNA剪接的直接正反馈从表观遗传学上维持雌性身份的基因。果蝇中tra介导的Sxl反馈可能是调控冗余的遗迹,这种冗余促进了从tra到Sxl作为主要性别开关这一进化转变。