首页> 外文期刊>Plant physiology >Virus-induced gene silencing of Argonaute genes in Nicotiana benthamiana demonstrates that extensive systemic silencing requires Argonaute1-like and Argonaute4-like genes
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Virus-induced gene silencing of Argonaute genes in Nicotiana benthamiana demonstrates that extensive systemic silencing requires Argonaute1-like and Argonaute4-like genes

机译:烟草对本氏烟草中的Argonaute基因进行病毒诱导的基因沉默表明,广泛的系统沉默需要Argonaute1类和Argonaute4类基因

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Several distinct pathways of RNA silencing operate in plants with roles including the suppression of virus accumulation, control of endogenous gene expression, and direction of DNA and chromatin modifications. Proteins of the Dicer-Like and Argonaute ( AGO) families have key roles within these silencing pathways and have distinct biochemical properties. We are interested in the relationships between different silencing pathways and have used Nicotiana benthamiana as a model system. While not being an amenable plant for traditional genetics, N. benthamiana is extensively used for RNA-silencing studies. Using virus-induced gene silencing technology we demonstrate that both NbAGO1- and NbAGO4-like genes are required for full systemic silencing but not for silencing directed by an inverted repeat transgene. Phenotypic differences between the virus-induced gene silencing plants indicate that NbAGO1 and NbAGO4 like act at different stages of the silencing pathways. Suppression of NbAGO1 expression recapitulated the hypomorphic mutant phenotype of certain Arabidopsis ( Arabidopsis thaliana) ago1 alleles, however, suppression of NbAgo4 like resulted in phenotypes differing in some respects from those reported for Arabidopsis ago4. We suggest that the small interfering RNA amplification step required for full systemic silencing is dependent upon a nuclear event requiring the activity of NbAGO4 like.
机译:RNA沉默的几种不同途径在植物中起作用,其作用包括抑制病毒积累,控制内源基因表达以及DNA和染色质修饰的方向。 Dicer-Like和Argonaute(AGO)家族的蛋白质在这些沉默途径中起关键作用,并具有独特的生化特性。我们对不同沉默途径之间的关系感兴趣,并已使用本氏烟草作为模型系统。尽管本达姆猪笼草不是传统遗传学的一种适宜植物,但它被广泛用于RNA沉默研究。使用病毒诱导的基因沉默技术,我们证明NbAGO1-和NbAGO4-样基因都是完全系统沉默所必需的,而不是由反向重复转基因指导的沉默。病毒诱导的基因沉默植物之间的表型差异表明,NbAGO1和NbAGO4类似物在沉默途径的不同阶段起作用。 NbAGO1表达的抑制概括了某些拟南芥(Arabidopsis thaliana)ago1等位基因的亚型突变表型,但是,像NbAgo4这样的抑制作用导致其表型在某些方面与报道的拟南芥ago4不同。我们建议完全系统沉默所需的小干扰RNA扩增步骤取决于需要NbAGO4等活性的核事件。

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