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首页> 外文期刊>The Plant Cell >Arabidopsis RNA-Dependent RNA Polymerases and Dicer-Like Proteins in Antiviral Defense and Small Interfering RNA Biogenesis during Turnip Mosaic Virus Infection.
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Arabidopsis RNA-Dependent RNA Polymerases and Dicer-Like Proteins in Antiviral Defense and Small Interfering RNA Biogenesis during Turnip Mosaic Virus Infection.

机译:芜菁花叶病毒感染过程中抗病毒防御和小干扰RNA生物发生的拟南芥RNA依赖性RNA聚合酶和类似切丁酶的蛋白质。

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摘要

Plants respond to virus infections by activation of RNA-based silencing, which limits infection at both the single-cell and system levels. Viruses encode RNA silencing suppressor proteins that interfere with this response. Wild-type Arabidopsis thaliana is immune to silencing suppressor (HC-Pro)-deficient Turnip mosaic virus, but immunity was lost in the absence of DICER-LIKE proteins DCL4 and DCL2. Systematic analysis of susceptibility and small RNA formation in Arabidopsis mutants lacking combinations of RNA-dependent RNA polymerase (RDR) and DCL proteins revealed that the vast majority of virus-derived small interfering RNAs (siRNAs) were dependent on DCL4 and RDR1, although full antiviral defense also required DCL2 and RDR6. Among the DCLs, DCL4 was sufficient for antiviral silencing in inoculated leaves, but DCL2 and DCL4 were both involved in silencing in systemic tissues (inflorescences). Basal levels of antiviral RNA silencing and siRNA biogenesis were detected in mutants lacking RDR1, RDR2, and RDR6, indicating an alternate route to form double-stranded RNA that does not depend on the three previously characterized RDR proteins.
机译:植物通过激活基于RNA的沉默来应对病毒感染,从而限制了单细胞和系统水平的感染。病毒编码干扰这种反应的RNA沉默抑制蛋白。野生型拟南芥对沉默抑制子(HC-Pro)缺陷的芜菁花叶病毒具有免疫力,但是在缺乏DICER-LIKE蛋白DCL4和DCL2的情况下丧失了免疫力。对缺乏RNA依赖性RNA聚合酶(RDR)和DCL蛋白的组合的拟南芥突变体的敏感性和小RNA形成的系统分析表明,尽管完全抗病毒,但绝大多数病毒衍生的小干扰RNA(siRNA)都依赖于DCL4和RDR1。防御还需要DCL2和RDR6。在DCL中,DCL4足以在接种的叶片中产生抗病毒沉默,但DCL2和DCL4都参与了全身组织(花序)的沉默。在缺少RDR1,RDR2和RDR6的突变体中检测到了基础水平的抗病毒RNA沉默和siRNA生物发生,这表明形成双链RNA的另一种途径不依赖于先前鉴定的三种RDR蛋白。

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