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Paramutation in Drosophila Requires Both Nuclear and Cytoplasmic Actors of the piRNA Pathway and Induces Cis-spreading of piRNA Production

机译:果蝇的突变需要piRNA途径的核和细胞质演员并诱导piRNA生产的顺式传播。

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摘要

Transposable element activity is repressed in the germline in animals by PIWI-interacting RNAs (piRNAs), a class of small RNAs produced by genomic loci mostly composed of TE sequences. The mechanism of induction of piRNA production by these loci is still enigmatic. We have shown that, in Drosophila melanogaster, a cluster of tandemly repeated P-lacZ-white transgenes can be activated for piRNA production by maternal inheritance of a cytoplasm containing homologous piRNAs. This activated state is stably transmitted over generations and allows trans-silencing of a homologous transgenic target in the female germline. Such an epigenetic conversion displays the functional characteristics of a paramutation, i.e., a heritable epigenetic modification of one allele by the other. We report here that piRNA production and trans-silencing capacities of the paramutated cluster depend on the function of the rhino, cutoff, and zucchini genes involved in primary piRNA biogenesis in the germline, as well as on that of the aubergine gene implicated in the ping-pong piRNA amplification step. The 21-nt RNAs, which are produced by the paramutated cluster, in addition to 23- to 28-nt piRNAs are not necessary for paramutation to occur. Production of these 21-nt RNAs requires Dicer-2 but also all the piRNA genes tested. Moreover, cytoplasmic transmission of piRNAs homologous to only a subregion of the transgenic locus can generate a strong paramutated locus that produces piRNAs along the whole length of the transgenes. Finally, we observed that maternally inherited transgenic small RNAs can also impact transgene expression in the soma. In conclusion, paramutation involves both nuclear (Rhino, Cutoff) and cytoplasmic (Aubergine, Zucchini) actors of the piRNA pathway. In addition, since it is observed between nonfully homologous loci located on different chromosomes, paramutation may play a crucial role in epigenome shaping in Drosophila natural populations.
机译:PIWI相互作用的RNA(piRNA)是动物的生殖系中转座因子活性的抑制,PIWI相互作用的RNA(piRNA)是一类由主要由TE序列组成的基因组位点产生的小RNA。这些基因座诱导piRNA产生的机制仍然是个谜。我们已经表明,在果蝇中,一串串联重复的P-lacZ-white转基因可以通过母体遗传包含同源piRNA的piRNA产生而被激活。该激活状态稳定地世代传递,并允许雌性种系中同源转基因靶标的沉默。这种表观遗传转化显示出突变的功能特征,即,一个等位基因被另一个等位基因可遗传地表观遗传修饰。我们在这里报告,piRNA的产生和突变体簇的反沉默能力取决于参与种系中主要piRNA生物发生的犀牛,截断和西葫芦基因的功能,以及与ping有关的茄子基因的功能-pong piRNA扩增步骤。除了23到28 nt的piRNA之外,由突变的簇产生的21 nt的RNA并不是发生突变的必要条件。这些21 nt RNA的产生需要Dicer-2,但也需要测试所有piRNA基因。而且,仅与转基因基因座的一个子区域同源的piRNA的胞质传递可以产生强的突变基因座,其沿着转基因的整个长度产生piRNA。最后,我们观察到母体遗传的转基因小RNA也会影响体中转基因的表达。总之,突变涉及到piRNA途径的核(Rhino,Cutoff)和细胞质(Aubergine,Zucchini)参与者。另外,由于在位于不同染色体的非完全同源基因座之间观察到突变,所以突变可能在果蝇自然种群的表观基因组形成中起关键作用。

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