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Research progress of NPR genes in signal pathway of salicylic acid mediated plant disease resistance

机译:NPR基因在水杨酸介导的植物抗病性信号通路中的研究进展

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Salicylic acid (SA) is considered to be an endogenous signal molecule in plants, and it is related to many resistances in plants. In Arabidopsis, Non-expressor of pathogenesis-related gene1 (NPR1) mediates the expression of pathogenesis-related genes (PRs) and systemic acquired resistance (SAR) induced by SA. NPR1 is a key factor in SA signaling pathway, and the research shows that NPR1, NPR3 and NPR4 play a key role in SA mediated plant disease resistance. In this review, the interaction between NPR and transcription factors is discussed, and we also describe the progress of NPR in SA mediated SAR signal transduction pathway, likewise, we introduce the relationship between NPR1 and its paralogues NPR3/NPR4. This paper analyzes the research prospect of NPR as the intersection of multiple signal paths.
机译:水杨酸(SA)被认为是植物中的内源性信号分子,它与植物中的许多抗性有关。在拟南芥中,发病相关基因1的非表达子(NPR1)介导SA诱导的发病相关基因(PRs)和系统获得性抗性(SAR)的表达。 NPR1是SA信号通路中的关键因素,研究表明NPR1,NPR3和NPR4在SA介导的植物抗病性中起关键作用。在这篇综述中,我们讨论了NPR和转录因子之间的相互作用,并且我们还描述了NPR在SA介导的SAR信号转导途径中的进展,同样,我们介绍了NPR1及其旁系同源物NPR3 / NPR4之间的关系。本文分析了NPR作为多信号路径的交叉点的研究前景。

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