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Redundancy of the Two Dicer Genes in Transgene-Induced Posttranscriptional Gene Silencing in Neurospora crassa

机译:在转基因诱导的芥菜中转基因诱导的转录后基因沉默中的两个切丁机基因的冗余。

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摘要

RNA interference (RNAi) in animals, cosuppression in plants, and quelling in fungi are homology-dependent gene silencing mechanisms in which the introduction of either double-stranded RNA (dsRNA) or transgenes induces sequence-specific mRNA degradation. These phenomena share a common genetic and mechanistic basis. The accumulation of short interfering RNA (siRNA) molecules that guide sequence-specific mRNA degradation is a common feature in both silencing mechanisms, as is the component of the RNase complex involved in mRNA cleavage. During RNAi in animal cells, dsRNA is processed into siRNA by an RNase III enzyme called Dicer. Here we show that elimination of the activity of two Dicer-like genes by mutation in the fungus Neurospora crassa eliminates transgene-induced gene silencing (quelling) and the processing of dsRNA to an siRNA form. The two Dicer-like genes appear redundant because single mutants are quelling proficient. This first demonstration of the involvement of Dicer in gene silencing induced by transgenes supports a model by which a dsRNA produced by the activity of cellular RNA-dependent RNA polymerases on transgenic transcripts is an essential intermediate of silencing.
机译:动物中的RNA干扰(RNAi),植物中的共抑制和真菌抑制是同源性相关的基因沉默机制,其中引入双链RNA(dsRNA)或转基因会诱导序列特异性mRNA降解。这些现象具有共同的遗传和机理基础。指导序列特异性mRNA降解的短干扰RNA(siRNA)分子的积累是两种沉默机制的共同特征,参与mRNA切割的RNase复合物的组成也是如此。在动物细胞中的RNAi期间,dsRNA被称为Dicer的RNase III酶加工成siRNA。在这里,我们显示了通过真菌神经孢菌中的突变消除两个Dicer样基因的活性,消除了转基因诱导的基因沉默(抑制)和dsRNA加工成siRNA的形式。这两个类似Dicer的基因似乎是多余的,因为单个突变体非常熟练。 Dicer参与转基因诱导的基因沉默的第一个证明支持一种模型,通过该模型,细胞RNA依赖性RNA聚合酶对转基因转录物的活性产生的dsRNA是沉默的重要中间产物。

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