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From Embryo to Adult: piRNA-Mediated Silencing throughout Germline Development in Drosophila

机译:从胚胎到成年:果蝇种胚发育过程中piRNA介导的沉默。

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摘要

In metazoan germ cells, transposable element activity is repressed by small noncoding PIWI-associated RNAs (piRNAs). Numerous studies in Drosophila have elucidated the mechanism of this repression in the adult germline. However, when and how transposable element repression is established during germline development has not been addressed. Here, we show that homology-dependent trans silencing is active in female primordial germ cells from late embryogenesis through pupal stages, and that genes related to the adult piRNA pathway are required for silencing during development. In larval gonads, we detect -dependent piRNAs indicating de novo biogenesis of functional piRNAs during development. Those piRNAs exhibit the molecular signature of the “ping-pong” amplification step. Moreover, we show that Heterochromatin Protein 1a is required for the production of piRNAs coming from telomeric transposable elements. Furthermore, as in adult ovaries, incomplete, bimodal, and stochastic repression resembling variegation can occur at all developmental stages. Clonal analysis indicates that the repression status established in embryonic germ cells is maintained until the adult stage, suggesting the implication of a cellular memory mechanism. Taken together, data presented here show that piRNAs and their associated proteins are epigenetic components of a continuous repression system throughout germ cell development.
机译:在后生生殖细胞中,可转座元件的活性被小的非编码PIWI相关RNA(piRNA)抑制。果蝇中的许多研究阐明了成年种系中这种抑制的机制。然而,尚未解决何时以及如何在种系发育过程中建立转座子抑制。在这里,我们显示同源依赖性反式沉默在从胚胎后期发育到p期的雌性原始生殖细胞中是活跃的,并且与成年piRNA途径相关的基因是发育过程中沉默所必需的。在幼虫的性腺中,我们检测到依赖的piRNA,表明在发育过程中功能性piRNA的从头生物发生。那些piRNA表现出“乒乓”扩增步骤的分子特征。此外,我们显示异染色质蛋白1a是产生端粒转座因子piRNA所必需的。此外,如在成年卵巢中一样,在所有发育阶段都可能发生不完全,双峰和相似的杂散性抑制。克隆分析表明,在胚胎生殖细胞中建立的抑制状态一直保持到成年阶段,这暗示了细胞记忆机制的意义。综上所述,此处提供的数据表明piRNA及其相关蛋白是整个生殖细胞发育过程中连续阻抑系统的表观遗传成分。

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