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首页> 外文期刊>Australasian Plant Pathology >Evaluating the strength of RNA silencing suppressor proteins encoded by two geminiviruses using assay based on reversal of GFP silencing
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Evaluating the strength of RNA silencing suppressor proteins encoded by two geminiviruses using assay based on reversal of GFP silencing

机译:基于GFP沉默的逆转,评估由两种Geminiviruses编码的RNA沉默抑制蛋白的强度

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摘要

Virus Induced Gene Silencing (VIGS) is conserved and dynamic gene regulation machinery, which plays an active role in shielding plants against viral infections. In counter-defense, viruses encode proteins that can suppress RNA silencing to ensure successful systemic invasion. The AC2 protein of Tomato Leaf Curl New Delhi Virus (ToLCV-AC2) and Mungbean Yellow Mosaic India Virus (MYMIV-AC2) are well-characterized suppressors of RNA silencing. In this study we have compared the structure and suppressor strength of ToLCV-AC2 and MYMIV-AC2, to gain insight on the conservation of the RNA silencing suppression activities. The relative suppressor strength was measured using an assay based on the reversal of GFP silencing and quantitated in terms of the amount of reversal of GFP expression and the sustenance of the reversal activity. The phenotypic observations in the reversal of silencing assay were further corroborated with molecular analysis. Our results indicate that ToLCV-AC2 exhibited weaker RNA silencing suppression than MYMIV-AC2. The suppression activity of ToLCV-AC2 is supplemented by related, though weak, activities encoded by ToLCV-AC4 and ToLCV-AV2 proteins. Collectively the three ToLCV proteins showed suppressor strength comparable to MYMIV-AC2. These results indicate that in all probability the ToLCV deploys more than one RNA silencing suppressor protein to synergistically counteract the host RNA silencing mechanism.
机译:病毒诱导的基因沉默(Vigs)是保守的和动态基因调节机械,其在屏蔽植物免受病毒感染中起着积极作用。在反防中,病毒编码蛋白质可以抑制RNA沉默以确保成功的全身入侵。番茄叶卷曲的AC2蛋白卷曲新德里病毒(Tolcv-AC2)和Mungbean黄色马赛克印度病毒(Mymiv-AC2)是RNA沉默的巨大抑制。在这项研究中,我们已经比较了TolCV-AC2和MyMiv-AC2的结构和抑制强度,以获得对RNA沉默抑制活动的保护的洞察力。使用基于GFP沉默的反转和定量的GFP表达的逆转量和逆转活性的寄生量来测量相对抑制强度。在分子分析中进一步证实了沉默测定逆转的表型观察。我们的结果表明,TolCV-AC2表现出比MyMIV-AC2更弱的RNA沉默抑制。通过Tolcv-AC4和TolCV-AV2蛋白编码的弱,耐丙-AC2的抑制活性尤其缺点。共同地,三种TolCV蛋白显示出与Mymiv-AC2相当的抑制强度。这些结果表明,在所有概率中,TolCV部署多于一个RNA沉默抑制蛋白以协同抵消宿主RNA沉默机制。

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