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Extracts from cultures of Pseudomonas fluorescens induce defensive patterns of gene expression and enzyme activity while depressing visible injury and reactive oxygen species in Arabidopsis thaliana challenged with pathogenic Pseudomonas syringae

机译:荧光假单胞菌培养物中的提取物诱导了基因表达和酶活性的防御模式同时抑制了致病性假单胞菌对拟南芥的可见损伤和活性氧物种

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摘要

We evaluated the ability of metabolic elicitors extracted from Pseudomonas fluorescens N21.4 to induce systemic resistance (ISR) in Arabidopsis thaliana against the pathogen Pseudomonas syringae DC3000. Metabolic elicitors were obtained from bacteria-free culture medium with n-hexane, ethyl acetate and n-butanol in three consecutive extractions. Each extract showed plant protection activity. The n-hexane fraction was the most effective and was used to study the signal transduction pathways involved by evaluating expression of marker genes of the salicylic acid (SA) signalling pathway (NPR1, PR1, ICS and PR2) and the jasmonic acid/ethylene (JA/ET) signalling pathway (PDF1, MYC2, LOX2 and PR3). In addition, the level of oxidative stress was tested by determining the activity of enzymes related to the ascorbate-glutathione cycle. N-hexane extracts stimulated both pathways based on overexpression of ICS, PR1, PR2, PDF1 and LOX2 genes. In addition, activity of the pathogenesis-related proteins glucanase (PR2) and chitinase (PR3), lipoxygenase and polyphenol oxidase was enhanced together with an increased capacity to remove reactive oxygen species (ROS). This was associated with less oxidative stress as indicated by a decrease in malondialdehyde (MDA), suggesting a causative link between defensive metabolism against P. syringae and ROS scavenging.
机译:我们评估了从荧光假单胞菌N21.4提取的代谢引发剂诱导拟南芥对病原体丁香假单胞菌DC3000的系统抗性(ISR)的能力。从无菌细菌培养基中连续三步提取代谢激发剂,该培养基具有正己烷,乙酸乙酯和正丁醇。每种提取物均显示出植物保护活性。正己烷馏分是最有效的,可用于评估水杨酸(SA)信号传导途径(NPR1,PR1,ICS和PR2)和茉莉酸/乙烯( JA / ET)信号通路(PDF1,MYC2,LOX2和PR3)。另外,通过确定与抗坏血酸-谷胱甘肽循环有关的酶的活性来测试氧化应激的水平。 N-己烷提取物基于ICS, PR1 PR2 PDF1 LOX2 基因的过度表达刺激了这两个途径。此外,与发病机理相关的蛋白葡聚糖酶(PR2)和几丁质酶(PR3),脂氧合酶和多酚氧化酶的活性增强,同时去除活性氧(ROS)的能力也增强。如丙二醛(MDA)降低所表明的,这与较少的氧化应激有关,表明防御代谢与 P之间存在因果关系。丁香和ROS清除。

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