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Trichoderma atroviride Enhances Phenolic Synthesis and Cucumber Protection against Rhizoctonia solani

机译:Trichoderma atroviride增强了酚醛合成和对Rhizoctonia solani的黄瓜保护

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The treatment of cucumber plants with Trichoderma atroviride TRS25 (TRS25) provided protection against infection by Rhizoctonia solani. In plants inoculated with the pathogen, nontreated with Trichoderma, disease symptoms were observed on the roots, shoots, and leaves while in plants treated with TRS25 the spread of the disease was limited. The induction of systemic defence response in cucumber against R. solani infection seemed to be strongly related to the enhanced synthesis of phenolic compounds in plants. HPLC analysis indicated remarkable increases in the concentrations of 23 phenolics belonging to hydroxybenzoic acids, cinnamic acids, catechins, flavonols, flavons, and flavanons in the plants without systemic disease symptoms. We suggest that the accumulation of phenolic acids, flavonoids and de novo synthesis of catechins may strongly contribute to cucumber protection against R. solani.
机译:用阿托维木霉TRS25(TRS25)处理黄瓜植株可防止立枯病丝核菌感染。在未经木霉处理的接种病原菌的植物中,在根、茎和叶上观察到疾病症状,而在经TRS25处理的植物中,疾病的传播受到限制。黄瓜对R.solani感染的系统防御反应的诱导似乎与植物中酚类化合物的合成增强密切相关。HPLC分析表明,在没有系统性疾病症状的植物中,属于羟基苯甲酸、肉桂酸、儿茶素、黄酮醇、黄酮和黄烷酮的23种酚类化合物的浓度显著增加。我们认为,酚酸、黄酮类化合物的积累和儿茶素的从头合成可能对黄瓜对R.solani的保护有很大贡献。

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