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首页> 外文期刊>Frontiers in Plant Science >PECTOPLATE: the simultaneous phenotyping of pectin methylesterases, pectinases, and oligogalacturonides in plants during biotic stresses
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PECTOPLATE: the simultaneous phenotyping of pectin methylesterases, pectinases, and oligogalacturonides in plants during biotic stresses

机译:PECTOPLATE:在生物胁迫期间植物中果胶甲酯酶,果胶酶和寡半乳糖苷的同时表型

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摘要

Degradation of pectin, a major component of plant cell wall, is important for fungal necrotrophs to achieve a successful infection. The activities of pectin methylesterases (PMEs) from both plants and pathogens and the degree and pattern of pectin methylesterification are critical for the outcome of plant–pathogen interaction. Partial degradation of pectin by pectin degrading enzymes releases oligogalacturonides (OGs), elicitors of plant defense responses. Few analytical techniques are available to monitor pectin methylesterification-modulating machineries and OGs produced during plant pathogen interaction. In the present study, ruthenium red is presented as useful dye to monitor both Botrytis cinerea mycelium growth and the induction of PME activity in plant tissue during fungal infection. Moreover a simple, inexpensive and sensitive method, named PECTOPLATE, is proposed that allows a simultaneous phenotyping of PME and pectinase activities expressed during pathogen infection and of pectinase potential in generating OGs. The results in the manuscript also indicate that PME inhibitors can be used in PECTOPLATE as a tool to discriminate the activities of plant PMEs from those of pathogen PMEs expressed during pathogenesis.
机译:果胶是植物细胞壁的主要成分,其降解对于真菌性坏死菌成功感染至关重要。来自植物和病原体的果胶甲基酯酶(PME)的活性以及果胶甲基酯化的程度和模式对于植物与病原体相互作用的结果至关重要。果胶降解酶对果胶的部分降解会释放出低聚半乳糖苷(OG),这是植物防御反应的引发剂。很少有分析技术可监测植物病原体相互作用期间产生的果胶甲基酯化调节装置和OG。在本研究中,钌红作为有用的染料用于监测真菌感染期间灰葡萄孢菌的菌丝体生长和植物组织中PME活性的诱导。此外,提出了一种简单,便宜且灵敏的方法,称为PECTOPLATE,该方法可以同时对病原体感染期间表达的PME和果胶酶活性进行表型分析,并同时确定果胶酶在产生OG中的潜力。手稿中的结果还表明,PME抑制剂可在PECTOPLATE中用作区分植物PME活性和致病过程中表达的病原体PME活性的工具。

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