首页> 美国卫生研究院文献>Springer Open Choice >Involvement of metabolic components volatile compounds PR proteins and mechanical strengthening in multilayer protection of cucumber plants against Rhizoctonia solani activated by Trichoderma atroviride TRS25
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Involvement of metabolic components volatile compounds PR proteins and mechanical strengthening in multilayer protection of cucumber plants against Rhizoctonia solani activated by Trichoderma atroviride TRS25

机译:代谢成分挥发性化合物PR蛋白的参与以及机械增强对黄瓜植物抵抗由木霉阿魏病毒TRS25激活的茄枯萎病的多层保护

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摘要

In the present study, the spread of Rhizoctonia solani-induced disease was limited when cucumber plants were pretreated with Trichoderma atroviride TRS25. The systemic disease suppression was related to TRS25-induced resistance (TISR) induction with simultaneous plant growth promotion. Protection of cucumber was related to enhanced activity of defense enzymes, e.g., guaiacol peroxidase (GPX), syringaldazine peroxidase (SPX), phenylalanine ammonia lyase (PAL), and polyphenol oxidase (PPO) as well as phenolic (PC) concentration increases in the conditions of hydrogen peroxide (H2O2) accumulation, resulting in thiobarbituric acid reactive substance (TBARS) decrease. Moreover, the obtained results indicated that TISR might depend on accumulation of salicylic acid derivatives, that is methyl salicylate (MeSA), ethylhexyl salicylate (EHS), salicylic acid glucosylated conjugates (SAGC), and β-cyclocitral as well as volatile organic compounds (VOC) such as Z-3-hexanal, Z-3-hexenol, and E-2-hexenal. The results point to important, not previously documented, roles of these VOC in TISR signaling with up-regulation of PR1 and PR5 gene characteristic of systemic acquired resistance (SAR) and of PR4 gene, marker of induced systemic resistance (ISR). The study established that TRS25 enhanced deposition of callose and lignin in specialized plant cells, which protected vascular system in cucumber shoots and roots as well as assimilation cells and dermal tissues in shoots and leaves. These compounds protected cucumber organs against R. solani influence and made them more flexible and resilient, which contributed to better nutrition and hydration of plants. The growth promotion coupled with systemic mobilization of biochemical and mechanical strengthening might be involved in multilayer protection of cucumber against R. solani activated by TRS25.
机译:在本研究中,当黄瓜植物经阿魏木霉TRS25预处理时,茄枯萎病致病性传播受到限制。全身性疾病抑制与TRS25诱导的抗性(TISR)诱导同时促进植物生长有关。黄瓜的保护与防御酶的活性增强有关,例如愈创木酚过氧化物酶(GPX),丁香嗪过氧化物酶(SPX),苯丙氨酸氨裂解酶(PAL)和多酚氧化酶(PPO)以及酚(PC)浓度的增加。在过氧化氢(H2O2)积累的条件下,导致硫代巴比妥酸反应性物质(TBARS)降低。此外,获得的结果表明TISR可能取决于水杨酸衍生物的积累,即水杨酸甲酯(MeSA),水杨酸乙基己基酯(EHS),水杨酸葡糖基化缀合物(SAGC)和β-环柠檬醛以及挥发性有机化合物( VOC),例如Z-3-hexanal,Z-3-hexenol和E-2-hexenal。结果表明,这些VOC在TISR信号中起着重要的作用,而TISR信号上调了系统性获得性抗性(SAR)和诱导性系统抗性(ISR)的标志物PR4和PR1和PR5基因的特征。研究表明,TRS25增强了特定植物细胞中of质和木质素的沉积,从而保护了黄瓜芽和根中的血管系统以及芽和叶中的同化细胞和真皮组织。这些化合物可保护黄瓜器官免受茄根腐病的影响,并使它们更具柔韧性和弹性,从而有助于改善植物的营养和水分。促进生长以及系统地动员生化和机械强化可能参与黄瓜对TRS25激活的茄状红斑狼疮的多层保护。

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