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Molecular Regulation of Host Defense Responses Mediated by Biological Anti-TMV Agent Ningnanmycin

机译:抗TMV生物剂宁南霉素介导的宿主防御反应的分子调控

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摘要

Ningnanmycin (NNM) belongs to microbial pesticides that display comprehensive antiviral activity against plant viruses. NNM treatment has been shown to efficiently delay or suppress the disease symptoms caused by tobacco mosaic virus (TMV) infection in local-inoculated or systemic-uninoculated tobacco leaves, respectively. However, the underlying molecular mechanism of NNM-mediated antiviral activity remains to be further elucidated. In this study, 414 differentially expressed genes (DEGs), including 383 which were up-regulated and 31 down-regulated, caused by NNM treatment in TMV-infected BY-2 protoplasts, were discovered by RNA-seq. In addition, KEGG analysis indicated significant enrichment of DEGs in the plant–pathogen interaction and MAPK signaling pathway. The up-regulated expression of crucial DEGs, including defense-responsive genes, such as the receptor-like kinase FLS2, RLK1, and the mitogen-activated protein kinase kinase kinase MAPKKK, calcium signaling genes, such as the calcium-binding protein CML19, as well as phytohormone responsive genes, such as the WRKY transcription factors WRKY40 and WRKY70, were confirmed by RT-qPCR. These findings provided valuable insights into the antiviral mechanisms of NNM, which indicated that the agent induces tobacco systemic resistance against TMV via activating multiple plant defense signaling pathways.
机译:宁南霉素(NNM)属于微生物农药,对植物病毒具有全面的抗病毒活性。已经显示,NNM处理可以有效地延迟或抑制分别在局部接种或系统未接种的烟叶中由烟草花叶病毒(TMV)感染引起的疾病症状。但是,NNM介导的抗病毒活性的潜在分子机制仍有待进一步阐明。在这项研究中,通过RNA序列发现了NTM处理引起TMV感染的BY-2原生质体中的414个差异表达基因(DEG),包括383个上调和31个下调。此外,KEGG分析表明DEGs在植物-病原体相互作用和MAPK信号通路中显着富集。关键DEG的表达上调,包括防御反应基因,例如受体样激酶FLS2,RLK1和促分裂原激活的蛋白激酶激酶MAPKKK,钙信号传导基因,例如钙结合蛋白CML19, RT-qPCR证实了植物激素应答基因,例如WRKY转录因子WRKY40和WRKY70。这些发现为NNM的抗病毒机制提供了有价值的见解,表明该药物可通过激活多种植物防御信号途径诱导烟草对TMV的系统抗性。

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