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Ethylene-Responsive Element-Binding Factor 5, ERF5, Is Involved in Chitin-Induced Innate Immunity Response

机译:乙烯响应元素结合因子5,ERF5,参与几丁质诱导的先天免疫反应。

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Our recent work demonstrated that chitin treatment modulated the expression of 118 transcription factor (TF) genes in Arabidopsis. To investigate the potential roles of these TF in chitin signaling and plant defense, we initiated an interaction study among these TF proteins, as well as two chitin-activated mitogen-activated protein kinases (MPK3 and MPK6), using a yeast two-hybrid system. This study revealed interactions among the following proteins: three ethylene-responsive element-binding factors (ERF), five WRKY transcription factors, one scarecrow-like (SCL), and the two MPK, in addition to many other interactions, reflecting a complex TF interaction network. Most of these interactions were subsequently validated by other methods, such as pull-down and in planta bimolecular fluorescence complementation assays. The key node ERF5 was shown to interact with multiple proteins in the network, such as ERF6, ERF8, and SCL13, as well as MPK3 and MPK6. Interestingly, ERF5 appeared to negatively regulate chitin signaling and plant defense against the fungal pathogen Alternaria brassicicola and positively regulate salicylic acid signaling and plant defense against the bacterial pathogen Pseudomonas syringae pv. tomato DC3000. Therefore, ERF5 may play an important role in plant innate immunity, likely through coordinating chitin and other defense pathways in plants in response to different pathogens.
机译:我们最近的工作表明,几丁质处理可以调节拟南芥中118个转录因子(TF)基因的表达。为了研究这些TF在几丁质信号传导和植物防御中的潜在作用,我们使用酵母双杂交系统启动了这些TF蛋白以及两种几丁质激活的促丝裂原激活蛋白激酶(MPK3和MPK6)之间的相互作用研究。 。这项研究揭示了以下蛋白质之间的相互作用:除许多其他相互作用外,三个乙烯反应性元素结合因子(ERF),五个WRKY转录因子,一个稻草人样(SCL)和两个MPK,反映了复杂的TF互动网络。这些相互作用中的大多数随后通过其他方法进行了验证,例如下拉法和植物双分子荧光互补测定法。关键节点ERF5已显示与网络中的多种蛋白质相互作用,例如ERF6,ERF8和SCL13以及MPK3和MPK6。有趣的是,ERF5似乎负调节甲壳质信号转导和抵抗真菌病原体铜绿链霉菌,正调节水杨酸信号转导和植物防御细菌性病原体丁香假单胞菌PV。番茄DC3000。因此,ERF5可能在植物先天免疫中起重要作用,可能是通过协调植物中的几丁质和其他防御途径来响应不同的病原体。

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