首页> 外文期刊>Plant Biotechnology Journal >Scaffold protein GhMORG1 enhances the resistance of cotton to Fusarium oxysporum by facilitating the MKK6‐MPK4 cascade
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Scaffold protein GhMORG1 enhances the resistance of cotton to Fusarium oxysporum by facilitating the MKK6‐MPK4 cascade

机译:Scaffold蛋白Ghmorg1通过促进MKK6-MPK4级联来增强棉花对镰刀菌的抗性

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In eukaryotes, MAPK scaffold proteins are crucial for regulating the function of MAPK cascades. However, only a few MAPK scaffold proteins have been reported in plants, and the molecular mechanism through which scaffold proteins regulate the function of the MAPK cascade remains poorly understood. Here, we identified GhMORG1, a GhMKK6‐GhMPK4 cascade scaffold protein that positively regulates the resistance of cotton to Fusarium oxysporum. GhMORG1 interacted with GhMKK6 and GhMPK4, and the overexpression of GhMORG1 in cotton protoplasts dramatically increased the activity of the GhMKK6‐GhMPK4 cascade. Quantitative phosphoproteomics was used to clarify the mechanism of GhMORG1 in regulating disease resistance, and thirty‐two proteins were considered as the putative substrates of the GhMORG1‐dependent GhMKK6‐GhMPK4 cascade. These putative substrates were involved in multiple disease resistance processes, such as cellular amino acid metabolic processes, calcium ion binding and RNA binding. The kinase assays verified that most of the putative substrates were phosphorylated by the GhMKK6‐GhMPK4 cascade. For functional analysis, nine putative substrates were silenced in cotton, respectively. The resistance of cotton to F.?oxysporum was decreased in the substrate‐silenced cottons. These results suggest that GhMORG1 regulates several different disease resistance processes by facilitating the phosphorylation of GhMKK6‐GhMPK4 cascade substrates. Taken together, these findings reveal a new plant MAPK scaffold protein and provide insights into the mechanism of plant resistance to pathogens.
机译:在真核生物中,MAPK支架蛋白质对于调节MAPK级联功能至关重要。然而,在植物中仅报告了几种MAPK支架蛋白质,并且支架蛋白质通过该分子机制通过该分子机制调节MAPK级联的功能仍然难以理解。在这里,我们识别GHMORG1,GHMKK6-GHMPK4级联支架蛋白质,积极调节棉花的抗性对雪松孢子症。 GhMorg1与GHMKK6和GHMPK4互动,HGMorg1在棉质原生质体中的过度表达显着增加了GHMKK6-GHMPK4级联的活动。定量磷蛋白酶用于澄清GHMorg1在调节抗病抗性方面的机制,并且将三十两种蛋白质被认为是GHMorg1依赖的GHMK6-GHMPK4级联的推定基材。这些推定的底物涉及多种抗病性过程,例如细胞氨基酸代谢过程,钙离子结合和RNA结合。激酶测定证实,大多数推定的底物由GHMKK6-GHMPK4级联磷酸化。对于功能性分析,分别在棉花中沉默九个推定的基材。棉花沉默的棉质中棉花的抗性降低。这些结果表明,GHMorg1通过促进GHMKK6-GHMPK4级联基材的磷酸化来调节几种不同的抗病过程。总之,这些发现揭示了一种新的植物Mapk支架蛋白,并提供了植物抗病机构的机制的见解。

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