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Structure-function relationship of a citrus salicylate methylesterase and role of salicylic acid in citrus canker resistance

机译:柑橘水杨酸甲酯酶的结构-功能关系及水杨酸在柑桔溃疡病抗性中的作用

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摘要

Salicylic acid (SA) and its methyl ester, methyl salicylate (MeSA) are well known inducers of local and systemic plant defense responses, respectively. MeSA is a major mediator of systemic acquired resistance (SAR) and its conversion back into SA is thought to be required for SAR. In many plant species, conversion of MeSA into SA is mediated by MeSA esterases of the SABP2 family. Here we show that the Citrus sinensis SABP2 homologue protein CsMES1 catalyzes the hydrolysis of MeSA into SA. Molecular modeling studies suggest that CsMES1 shares the same structure and SA-binding mode with tobacco SABP2. However, an amino acid polymorphism in the active site of CsMES1-related proteins suggested an important role in enzyme regulation. We present evidence that the side chain of this polymorphic residue directly influences enzyme activity and SA binding affinity in CsMES proteins. We also show that SA and CsMES1 transcripts preferentially accumulate during the incompatible interaction between Xanthomonas aurantifolii pathotype C and sweet orange plants. Moreover, we demonstrate that SA and MeSA inhibited citrus canker caused by Xanthomonas citri, whereas an inhibitor of CsMES1 enhanced canker formation, suggesting that CsMES1 and SA play a role in the local defense against citrus canker bacteria.
机译:水杨酸(SA)及其甲酯,水杨酸甲酯(MeSA)分别是局部和全身植物防御反应的众所周知的诱导剂。 MeSA是系统性获得性抵抗力(SAR)的主要介体,SAR认为需要将其转换回SA。在许多植物物种中,MeSA转化为SA是由SABP2家族的MeSA酯酶介导的。在这里,我们显示了柑橘SABP2同源蛋白CsMES1催化MeSA水解成SA。分子建模研究表明,CsMES1与烟草SABP2具有相同的结构和SA结合模式。但是,CsMES1相关蛋白的活性位点的氨基酸多态性表明在酶调节中的重要作用。我们目前的证据,这种多态性残基的侧链直接影响CsMES蛋白中的酶活性和SA结合亲和力。我们还显示SA和CsMES1转录本优先积累在Xanthomonas aurantifolii致病型C与甜橙植物之间不相容的相互作用中。此外,我们证明了SA和MeSA抑制了由柠檬黄单胞菌引起的柑橘溃疡病,而CsMES1的抑制剂增强了溃疡病的形成,这表明CsMES1和SA在针对柑橘溃疡病菌的局部防御中起作用。

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