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PeaT1-induced systemic acquired resistance in tobacco follows salicylic acid-dependent pathway

机译:PeaT1诱导的烟草系统获得性抗性遵循水杨酸依赖性途径

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摘要

Systemic acquired resistance (SAR) is an inducible defense mechanism which plays a central role in protecting plants from pathogen attack. A new elicitor, PeaT1 from Alternaria tenuissima, was expressed in Escherichia coil and characterized with systemic acquired resistance to tobacco mosaic virus (TMV). PeaT1-treated plants exhibited enhanced systemic resistance with a significant reduction in number and size of TMV lesions on wild tobacco leaves as compared with control. The quantitative analysis of TMV CP gene expression with real-time quantitative PCR showed there was reduction in TMV virus concentration after PeaT1 treatment. Similarly, peroxidase (POD) activity and lignin increased significantly after PeaT1 treatment. The real-time quantitative PCR revealed that PeaT1 also induced the systemic accumulation of pathogenesis-related gene, PR-1a and PR-1b which are the markers of systemic acquired resistance (SAR), NPR1 gene for salicylic acid (SA) signal transduction pathway and PAL gene for SA synthesis. The accumulation of SA and the failure in development of similar level of resistance as in wild type tobacco plants in PeaT1 treated nahG transgenic tobacco plants indicated that PeaT1-induced resistance depended on SA accumulation. The present work suggested that the molecular mechanism of PeaT1 inducing disease resistance in tobacco was likely through the systemic acquired resistance pathway mediated by salicylic acid and the NPR1 gene.
机译:系统获得性抗性(SAR)是一种可诱导的防御机制,在保护植物免受病原体侵袭方面起着核心作用。一种新的激发子,来自墨西哥链格孢的PeaT1,在大肠杆菌中表达,并具有对烟草花叶病毒(TMV)的系统获得性抗性。与对照相比,用PeaT1处理的植物表现出增强的系统抗性,并且野生烟叶上TMV病变的数量和大小显着减少。实时定量PCR对TMV CP基因表达的定量分析表明,经PeaT1处理后TMV病毒浓度降低。同样,在PeaT1处理后,过氧化物酶(POD)活性和木质素显着增加。实时定量PCR表明,PeaT1还诱导了与病程相关基因PR-1a和PR-1b的系统积累,这些基因是系统性获得性抗性(SAR),水杨酸(SA)信号转导途径的NPR1基因的标志和用于AL合成的PAL基因。在PeaT1处理的nahG转基因烟草植物中,SA的积累和与野生型烟草植物相似的抗性水平发展失败,表明PeaT1诱导的抗性取决于SA的积累。目前的工作表明,PeaT1诱导烟草抗病性的分子机制很可能是通过水杨酸和NPR1基因介导的系统获得性抗性途径实现的。

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