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首页> 外文期刊>Molecular Biotechnology >Isolation, Characterization, and Structure Analysis of a Non-TIR-NBS-LRR Encoding Candidate Gene from MYMIV-Resistant Vigna mungo
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Isolation, Characterization, and Structure Analysis of a Non-TIR-NBS-LRR Encoding Candidate Gene from MYMIV-Resistant Vigna mungo

机译:耐MYMIV的Vigna mungo的非TIR-NBS-LRR编码候选基因的分离,鉴定和结构分析

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摘要

Yellow mosaic disease of Vigna mungo caused by Mungbean yellow mosaic India virus (MYMIV) is still a major threat in the crop production. A candidate disease resistance (R) gene, CYR1 that co-segregates with MYMIV-resistant populations of V. mungo has been isolated. CYR1 coded in silico translated protein sequence comprised of 1,176 amino acids with coiled coil structure at the N-terminus, central nucleotide binding site (NBS) and C-terminal leucine-rich repeats (LRR) that belongs to non-TIR-NBS-LRR subfamily of plant R genes. CYR1 transcript was unambiguously expressed during incompatible plant virus interactions. A putative promoter-like sequence present upstream of this candidate gene perhaps regulates its expression. Enhanced transcript level upon MYMIV infection suggests involvement of this candidate gene in conferring resistance against the virus. In silico constructed 3D models of NBS and LRR regions of this candidate protein and MYMIV-coat protein (CP) revealed that CYR1-LRR forms an active pocket and successively interacts with MYMIV-CP during docking, like that of receptor–ligand interaction; indicating a critical role of CYR1 as signalling molecule to protect V. mungo plants from MYMIV. This suggests involvement of CYR1 in recognizing MYMIV-effector molecule thus contributing to incompatible interaction. This study is the first stride to understand molecular mechanism of MYMIV resistance.
机译:由绿豆黄色花叶印度病毒(MYMIV)引起的Vigna mungo黄色花叶病仍然是作物生产中的主要威胁。已分离出一种候选疾病抗性(R)基因CYR1,该基因与耐MYMIV的芒格霉菌群体共分离。 CYR1编码的计算机翻译的蛋白质序列,由1,176个氨基酸组成,在N端具有卷曲螺旋结构,中心核苷酸结合位点(NBS)和属于非TIR-NBS-LRR的C端富含亮氨酸的重复序列(LRR)植物R基因的亚家族。在不相容的植物病毒相互作用中,CYR1转录物被明确表达。存在于该候选基因上游的推定的类似启动子的序列也许调节其表达。 MYMIV感染后转录水平升高表明该候选基因参与了对病毒的抗性。在计算机上构建了该候选蛋白和MYMIV-外壳蛋白(CP)的NBS和LRR区的3D模型,结果表明CYR1-LRR形成了一个活性囊,并在对接期间与MYMIV-CP相互作用,就像受体-配体相互作用一样。提示CYR1作为保护V.mungo植物免受MYMIV侵害的信号分子至关重要。这表明CYR1参与识别MYMIV效应分子,从而导致不兼容的相互作用。该研究是了解MYMIV抗性分子机制的第一步。

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