首页> 外文OA文献 >A genome-wide survey of sexually dimorphic expression of Drosophila miRNAs identifies the steroid hormone-induced miRNA let-7 as a regulator of sexual identity.
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A genome-wide survey of sexually dimorphic expression of Drosophila miRNAs identifies the steroid hormone-induced miRNA let-7 as a regulator of sexual identity.

机译:对果蝇miRNa的性二态表达的全基因组调查确定了类固醇激素诱导的miRNa let-7作为性同一性的调节因子。

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摘要

MiRNAs bear an increasing number of functions throughout development and in the aging adult. Here we address their role in establishing sexually dimorphic traits and sexual identity in male and female Drosophila. Our survey of miRNA populations in each sex identifies sets of miRNAs differentially expressed in male and female tissues across various stages of development. The pervasive sex-biased expression of miRNAs generally increases with the complexity and sexual dimorphism of tissues, gonads revealing the most striking biases. We find that the male-specific regulation of the X chromosome is relevant to miRNA expression on two levels. First, in the male gonad, testis-biased miRNAs tend to reside on the X chromosome. Second, in the soma, X-linked miRNAs do not systematically rely on dosage compensation. We set out to address the importance of a sex-biased expression of miRNAs in establishing sexually dimorphic traits. Our study of the conserved let-7-C miRNA cluster controlled by the sex-biased hormone ecdysone places let-7 as a primary modulator of the sex-determination hierarchy. Flies with modified let-7 levels present doublesex-related phenotypes and express sex-determination genes normally restricted to the opposite sex. In testes and ovaries, alterations of the ecdysone-induced let-7 result in aberrant gonadal somatic cell behavior and non-cell-autonomous defects in early germline differentiation. Gonadal defects as well as aberrant expression of sex-determination genes persist in aging adults under hormonal control. Together, our findings place ecdysone and let-7 as modulators of a somatic systemic signal that helps establish and sustain sexual identity in males and females and differentiation in gonads. This work establishes the foundation for a role of miRNAs in sexual dimorphism and demonstrates that similar to vertebrate hormonal control of cellular sexual identity exists in Drosophila.
机译:在整个发育过程中和成年老龄中,miRNA都具有越来越多的功能。在这里,我们解决它们在建立果蝇雄性和雌性性二态性状和性认同中的作用。我们对每种性别的miRNA人群进行的调查确定了在各个发育阶段在男性和女性组织中差异表达的miRNA集。 miRNA普遍存在的性别偏见表达通常随着组织的复杂性和性别二态性而增加,性腺表现出最明显的偏见。我们发现X染色体的男性特异性调控与miRNA在两个水平上的表达有关。首先,在雄性腺中,睾丸偏向的miRNA倾向于驻留在X染色体上。其次,在体细胞中,X连锁的miRNA不系统地依赖剂量补偿。我们着手解决在建立性二态性状中miRNA的性别偏向表达的重要性。我们对由偏性激素蜕皮激素控制的let-7-C miRNA保守簇的研究将let-7用作性别决定体系的主要调节剂。修饰过的let-7水平的果蝇表现出与双性恋相关的表型,并表达通常决定于异性的性别决定基因。在睾丸和卵巢中,蜕皮激素诱导的let-7的改变导致早期生殖系分化中异常的性腺体细胞行为和非细胞自主缺陷。性别控制基因的性腺缺陷和异常表达在荷尔蒙控制下持续存在。总之,我们的发现将蜕皮激素和let-7用作体细胞系统性信号的调节剂,有助于建立和维持男性和女性的性认同以及性腺的分化。这项工作奠定了miRNA在性二态性中作用的基础,并证明了果蝇中存在类似于脊椎动物激素对细胞性身份的控制。

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