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Dicer样蛋白2在拟南芥中转基因的传递性沉默中起主要作用。

DICER-LIKE2 plays a primary role in transitive silencing of transgenes in Arabidopsis.

作者信息

Mlotshwa Sizolwenkosi, Pruss Gail J, Peragine Angela, Endres Matthew W, Li Junjie, Chen Xuemei, Poethig R Scott, Bowman Lewis H, Vance Vicki

机构信息

Department of Biological Sciences, University of South Carolina, Columbia, South Carolina, United States of America.

出版信息

PLoS One. 2008 Mar 12;3(3):e1755. doi: 10.1371/journal.pone.0001755.

Abstract

Dicer-like (DCL) enzymes play a pivotal role in RNA silencing in plants, processing the long double-stranded RNA (dsRNA) that triggers silencing into the primary short interfering RNAs (siRNAs) that mediate it. The siRNA population can be augmented and silencing amplified via transitivity, an RNA-dependent RNA polymerase (RDR)-dependent pathway that uses the target RNA as substrate to generate secondary siRNAs. Here we report that Arabidopsis DCL2-but not DCL4-is required for transitivity in cell-autonomous, post-transcriptional silencing of transgenes. An insertion mutation in DCL2 blocked sense transgene-induced silencing and eliminated accumulation of the associated RDR-dependent siRNAs. In hairpin transgene-induced silencing, the dcl2 mutation likewise eliminated accumulation of secondary siRNAs and blocked transitive silencing, but did not block silencing mediated by primary siRNAs. Strikingly, in all cases, the dcl2 mutation eliminated accumulation of all secondary siRNAs, including those generated by other DCL enzymes. In contrast, mutations in DCL4 promoted a dramatic shift to transitive silencing in the case of the hairpin transgene and enhanced silencing induced by the sense transgene. Suppression of hairpin and sense transgene silencing by the P1/HC-Pro and P38 viral suppressors was associated with elimination of secondary siRNA accumulation, but the suppressors did not block processing of the stem of the hairpin transcript into primary siRNAs. Thus, these viral suppressors resemble the dcl2 mutation in their effects on siRNA biogenesis. We conclude that DCL2 plays an essential, as opposed to redundant, role in transitive silencing of transgenes and may play a more important role in silencing of viruses than currently thought.

摘要

类Dicer(DCL)酶在植物RNA沉默中起关键作用,它将触发沉默的长双链RNA(dsRNA)加工成介导沉默的初级短干扰RNA(siRNA)。siRNA群体可以通过传递性增加,沉默也可以通过传递性放大,传递性是一种依赖RNA的RNA聚合酶(RDR)的途径,它以靶RNA为底物产生次级siRNA。在这里,我们报道拟南芥DCL2而非DCL4是转基因细胞自主转录后沉默传递性所必需的。DCL2中的插入突变阻断了正义转基因诱导的沉默,并消除了相关的依赖RDR的siRNA的积累。在发夹转基因诱导的沉默中,dcl2突变同样消除了次级siRNA的积累并阻断了传递性沉默,但没有阻断初级siRNA介导的沉默。令人惊讶的是,在所有情况下,dcl2突变都消除了所有次级siRNA的积累,包括那些由其他DCL酶产生的次级siRNA。相反,在发夹转基因的情况下,DCL4中的突变促进了向传递性沉默的显著转变,并增强了正义转基因诱导的沉默。P1/HC-Pro和P38病毒抑制因子对发夹和正义转基因沉默的抑制与次级siRNA积累的消除有关,但这些抑制因子没有阻断发夹转录本茎部加工成初级siRNA。因此,这些病毒抑制因子在对siRNA生物合成的影响上类似于dcl2突变。我们得出结论,DCL2在转基因的传递性沉默中起重要而非冗余的作用,并且在病毒沉默中可能比目前认为的发挥更重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5640/2262140/2bcf44f75444/pone.0001755.g001.jpg

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