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Soybean RNA interference lines silenced for eIF4E show broad potyvirus resistance

机译:对eIF4E沉默的大豆RNA干扰品系显示出广泛的对马铃薯病毒的抗性

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摘要

(SMV), a potyvirus, is the most prevalent and destructive viral pathogen in soybean‐planting regions of China. Moreover, other potyviruses, including bean common mosaic virus (BCMV) and watermelon mosaic virus (WMV), also threaten soybean farming. The eukaryotic translation initiation factor 4E (eIF4E) plays a critical role in controlling resistance/susceptibility to potyviruses in plants. In the present study, much higher SMV‐induced expression levels were detected in a susceptible soybean cultivar when compared with a resistant cultivar, suggesting the involvement of in the response to SMV by the susceptible cultivar. Yeast two‐hybrid and bimolecular fluorescence complementation assays showed that soybean eIF4E1 interacted with SMV VPg in the nucleus and with SMV NIa‐Pro/NIb in the cytoplasm, revealing the involvement of VPg, NIa‐Pro, and NIb in SMV infection and multiplication. Furthermore, transgenic soybeans silenced for eIF4E were produced using an RNA interference approach. Through monitoring for viral symptoms and viral titers, robust and broad‐spectrum resistance was confirmed against five SMV strains (SC3/7/15/18 and SMV‐R), BCMV, and WMV in the transgenic plants. Our findings represent fresh insights for investigating the mechanism underlying eIF4E‐mediated resistance in soybean and also suggest an effective alternative for breeding soybean with broad‐spectrum viral resistance.
机译:猪瘟病毒(SMV)是中国大豆种植区中最普遍和最具破坏性的病毒病原体。此外,包括大豆普通花叶病毒(BCMV)和西瓜花叶病毒(WMV)在内的其他马铃薯病毒也威胁着大豆种植。真核翻译起始因子4E(eIF4E)在控制植物对马铃薯病毒的抗性/敏感性中起关键作用。在本研究中,与抗性品种相比,在易感大豆品种中检测到更高的SMV诱导表达水平,表明易感品种参与了对SMV的反应。酵母双杂交和双分子荧光互补分析表明,大豆eIF4E1与细胞核中的SMV VPg和细胞质中的SMV NIa-Pro / NIb相互作用,显示VPg,NIa-Pro和NIb参与SMV感染和繁殖。此外,使用RNA干扰方法生产了沉默eIF4E的转基因大豆。通过监测病毒症状和病毒滴度,在转基因植物中证实了对五种SMV株(SC3 / 7/15/18和SMV-R),BCMV和WMV的耐受性和广谱耐受性。我们的发现代表了对研究eIF4E介导的大豆抗性机制的新见解,也为育种具有广谱病毒抗性的大豆提供了一种有效的替代方法。

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