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水稻条纹叶枯病毒编码的一种RNA沉默抑制子的特性及亚细胞定位

Characterization and subcellular localization of an RNA silencing suppressor encoded by Rice stripe tenuivirus.

作者信息

Xiong Ruyi, Wu Jianxiang, Zhou Yijun, Zhou Xueping

机构信息

State Key Laboratory of Rice Biology, Institute of Biotechnology, Zhejiang University, Hangzhou 310029, People's Republic of China.

出版信息

Virology. 2009 Apr 25;387(1):29-40. doi: 10.1016/j.virol.2009.01.045. Epub 2009 Feb 28.

Abstract

Rice stripe virus (RSV) is a single-stranded (ss) RNA virus belonging to the genus Tenuivirus. RSV is present in many East Asian countries and causes severe diseases in rice fields, especially in China. In this study, we analyzed six proteins encoded by the virus for their abilities to suppress RNA silencing in plant using a green fluorescent protein (GFP)-based transient expression assay. Our results indicate that NS3 encoded by RSV RNA3, but not other five RSV encoded proteins, can strongly suppress local GFP silencing in agroinfiltrated Nicotiana benthamiana leaves. NS3 can reverse the GFP silencing, it can also prevent long distance spread of silencing signals which have been reported to be necessary for inducing systemic silencing in host plants. The NS3 protein can significantly reduce the levels of small interfering RNAs (siRNAs) in silencing cells, and was found to bind 21-nucleotide ss-siRNA, siRNA duplex and long ssRNA but not long double-stranded (ds)-RNA. Both N and C terminal of the NS3 protein are critical for silencing suppression, and mutation of the putative nuclear localization signal decreases its local silencing suppression efficiency and blocks its systemic silencing suppression. The NS3-GFP fusion protein and NS3 were shown to accumulate predominantly in nuclei of onion, tobacco and rice cells through transient expression assay or immunocytochemistry and electron microscopy. In addition, transgenic rice and tobacco plants expressing the NS3 did not show any apparent alteration in plant growth and morphology, although NS3 was proven to be a pathogenicity determinant in the PVX heterogenous system. Taken together, our results demonstrate that RSV NS3 is a suppressor of RNA silencing in planta, possibly through sequestering siRNA molecules generated in cells that are undergoing gene silencing.

摘要

水稻条纹病毒(RSV)是一种单链(ss)RNA病毒,属于纤细病毒属。RSV存在于许多东亚国家,在稻田中引发严重病害,在中国尤为如此。在本研究中,我们利用基于绿色荧光蛋白(GFP)的瞬时表达分析,分析了该病毒编码的六种蛋白抑制植物RNA沉默的能力。我们的结果表明,RSV RNA3编码的NS3蛋白,而非其他五种RSV编码蛋白,能够强烈抑制农杆菌浸润的本氏烟草叶片中的局部GFP沉默。NS3能够逆转GFP沉默,还能阻止沉默信号的长距离传播,而沉默信号的长距离传播据报道是在宿主植物中诱导系统性沉默所必需的。NS3蛋白能够显著降低沉默细胞中小干扰RNA(siRNA)的水平,并且发现它能结合21核苷酸的单链siRNA、siRNA双链体和长单链RNA,但不结合长双链(ds)RNA。NS3蛋白的N端和C端对于沉默抑制都至关重要,假定的核定位信号发生突变会降低其局部沉默抑制效率,并阻断其系统性沉默抑制。通过瞬时表达分析或免疫细胞化学及电子显微镜观察发现,NS3-GFP融合蛋白和NS3主要在洋葱、烟草和水稻细胞的细胞核中积累。此外,尽管NS3在PVX异源系统中被证明是一个致病性决定因素,但表达NS3的转基因水稻和烟草植株在植物生长和形态上并未表现出任何明显变化。综上所述,我们的结果表明,RSV NS3是植物中RNA沉默的抑制因子,可能是通过隔离在经历基因沉默的细胞中产生的siRNA分子来实现的。

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