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Functional analysis of Arabidopsis immune-related MAPKs uncovers a role for MPK3 as negative regulator of inducible defences

机译:拟南芥免疫相关MAPKs的功能分析揭示了MPK3作为诱导防御的负调节剂的作用

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摘要

BackgroundududMitogen-activated protein kinases (MAPKs) are key regulators of immune responses in animals and plants. In Arabidopsis, perception of microbe-associated molecular patterns (MAMPs) activates the MAPKs MPK3, MPK4 and MPK6. Increasing information depicts the molecular events activated by MAMPs in plants, but the specific and cooperative contributions of the MAPKs in these signalling events are largely unclear.udResultsududIn this work, we analyse the behaviour of MPK3, MPK4 and MPK6 mutants in early and late immune responses triggered by the MAMP flg22 from bacterial flagellin. A genome-wide transcriptome analysis reveals that 36% of the flg22-upregulated genes and 68% of the flg22-downregulated genes are affected in at least one MAPK mutant. So far MPK4 was considered as a negative regulator of immunity, whereas MPK3 and MPK6 were believed to play partially redundant positive functions in defence. Our work reveals that MPK4 is required for the regulation of approximately 50% of flg22-induced genes and we identify a negative role for MPK3 in regulating defence gene expression, flg22-induced salicylic acid accumulation and disease resistance to Pseudomonas syringae. Among the MAPK-dependent genes, 27% of flg22-upregulated genes and 76% of flg22-downregulated genes require two or three MAPKs for their regulation. The flg22-induced MAPK activities are differentially regulated in MPK3 and MPK6 mutants, both in amplitude and duration, revealing a highly interdependent network.udConclusionsududThese data reveal a new set of distinct functions for MPK3, MPK4 and MPK6 and indicate that the plant immune signalling network is choreographed through the interplay of these three interwoven MAPK pathways.
机译:背景 ud ud丝裂原激活的蛋白激酶(MAPK)是动植物免疫反应的关键调节剂。在拟南芥中,对微生物相关分子模式(MAMP)的感知激活了MAPK MPK3,MPK4和MPK6。越来越多的信息描述了植物中MAMPs激活的分子事件,但是在这些信号事件中MAPKs的特异性和协同作用尚不清楚。 udResults ud ud在这项工作中,我们分析了MPK3,MPK4和MPK6突变体在植物中的行为。细菌鞭毛蛋白的MAMP flg22触发的早期和晚期免疫反应。全基因组转录组分析显示,在至少一个MAPK突变体中,有36%的flg22上调基因和68%的flg22下调基因受到影响。到目前为止,MPK4被认为是免疫力的负调节剂,而MPK3和MPK6被认为在防御中起着部分多余的积极作用。我们的工作表明,MPK4是调节flg22诱导的基因的大约50%所必需的,我们发现MPK3在调节防御基因表达,flg22诱导的水杨酸积累和对丁香假单胞菌的抗病性中具有负作用。在MAPK依赖性基因中,27%的flg22上调基因和76%的flg22下调基因需要两个或三个MAPK进行调节。 flg22诱导的MAPK活性在MPK3和MPK6突变体中在幅度和持续时间上受到差异调节,揭示了高度相互依赖的网络。 ud结论 ud ud这些数据揭示了MPK3,MPK4和MPK6的一组新功能,并表明通过这三个交织的MAPK途径的相互作用,对植物免疫信号网络进行了编排。

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