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Nuclear gene silencing directs reception of long-distance mRNA silencing in Arabidopsis

机译:核基因沉默指导拟南芥中长途mRNA沉默的接收

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In plants, silencing of mRNA can be transmitted from cell to cell and also over longer distances from roots to shoots. To investigate the long-distance mechanism, WT and mutant shoots were grafted onto roots silenced for an mRNA. We show that three genes involved in a chromatin silencing pathway, NRPDIa encoding RNA polymerase IVa, RNA-dependent RNA polymerase 2 (RDR2), and DICER-like 3 (DCL3). are required for reception of long-distance mRNA silencing in the shoot. A mutant representing a fourth gene in the pathway, argonaute4 (ago4), was also partially compromised in the reception of silencing. This pathway produces 24-nt siRNAs and resulted in decapped RNA, a known substrate for amplification of dsRNA by RDR6. Activation of silencing in grafted shoots depended on RDR6, but no 24-nt siRNAs were detected in mutant rdr6 shoots, indicating that RDR6 also plays a role in initial signal perception. After amplification of decapped transcripts, DCL4 and DCL2 act hierarchically as they do in antiviral resistance to produce 21- and 22-nt siRNAs, respectively, and these guide mRNA degradation. Several dcl genotypes were also tested for their capacity to transmit the mobile silencing signal from the rootstock. dc1-8 and a dcl2 dcl3 dc/4 triple mutant are compromised in micro-RNA and siRNA biogenesis, respectively, but were unaffected in signal transmission.
机译:在植物中,mRNA的沉默可以在细胞之间传递,也可以在从根到芽的更长距离内传递。为了研究长距离机制,将野生型和突变芽移植到沉默了mRNA的根上。我们显示了涉及染色质沉默途径的三个基因,NRPDIa编码RNA聚合酶IVa,RNA依赖性RNA聚合酶2(RDR2)和DICER样3(DCL3)。是接收芽中长途mRNA沉默所必需的。代表途径中第四个基因的突变体argonaute4(ago4)在沉默中也受到了部分损害。该途径产生24-nt siRNA,并产生脱盖的RNA,即通过RDR6扩增dsRNA的已知底物。嫁接芽中沉默的激活取决于RDR6,但在突变rdr6芽中未检测到24-nt siRNA,这表明RDR6在初始信号感知中也起作用。脱盖转录物扩增后,DCL4和DCL2在抗病毒抗性中起分层作用,分别产生21-nt和22-nt siRNA,它们指导mRNA降解。还测试了几种dcl基因型从砧木传输移动沉默信号的能力。 dc1-8和dcl2 dcl3 dc / 4三重突变体分别在微RNA和siRNA生物发生中受损,但在信号传递中不受影响。

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