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RNAi-dependent and RNAi-independent mechanisms contribute to the silencing of RIPed sequences in Neurospora crassa

机译:RNAi依赖和RNAi独立的机制有助于神经孢菌中RIPed序列的沉默。

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RNA interference (RNAi) can silence genes at the transcriptional level by targeting locus-specific Lys9H3 methylation or at the post-transcriptional level by targeting mRNA degradation. Here we have cloned and sequenced genomic regions methylated in Lys9H3 in Neurospora crassa to test the requirements for components of the RNAi pathway in this modification. We find that 90% of clones map to repeated sequences and relics of transposons that have undergone repeat-induced point mutations (RIP). We find siRNAs derived from transposon relics indicating that the RNA! machinery targets these regions. This is confirmed by the fact that the presence of these siRNAs depends on components of the RNAi pathway such as the RdRP (QDE-1), the putative RecQ helicase (QDE-3) and the two Dicer enzymes. We show that Lys9H3 methylation of RIP sequences is not affected in mutants of the RNAi pathway indicating that the RNAi machinery is not involved in transcriptional gene silencing in Neurospora. We find that RIP regions are transcribed and that the transcript level increases in the mutants of the RNAi pathway. These data suggest that the biological function of the Neurospora RNA! machinery is to control transposon relics and repeated sequences by targeting degradation of transcripts derived from these regions.
机译:RNA干扰(RNAi)可以通过靶向基因座特异性Lys9H3甲基化在转录水平上沉默基因,或者可以通过靶向mRNA降解在转录后水平沉默基因。在这里,我们已经克隆和测序了cryospora crassa中Lys9H3中甲基化的基因组区域,以测试此修饰中RNAi途径组分​​的要求。我们发现90%的克隆映射到重复序列和转座子的遗迹,这些转座子已经经历了重复诱导的点突变(RIP)。我们发现了来自转座子文物的siRNA,表明该RNA!机械瞄准这些地区。这些事实的存在证实了这一点,这些siRNA的存在取决于RNAi途径的组成部分,例如RdRP(QDE-1),推定的RecQ解旋酶(QDE-3)和两种Dicer酶。我们表明,RIP序列的Lys9H3甲基化在RNAi途径的突变体中不受影响,表明RNAi机器不参与Neurospora中的转录基因沉默。我们发现RIP区域被转录,并且转录水平在RNAi途径的突变体中增加。这些数据表明Neurospora RNA的生物学功能!通过靶向降解源自这些区域的转录本来控制转座子文物和重复序列的机制。

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