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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Phytohormone Profiles Induced by Trichoderma Isolates Correspond with Their Biocontrol and Plant Growth-Promoting Activity on Melon Plants
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Phytohormone Profiles Induced by Trichoderma Isolates Correspond with Their Biocontrol and Plant Growth-Promoting Activity on Melon Plants

机译:木霉分离物诱导的植物激素概况与其对瓜类植物的生防和促进植物生长的活性相对应。

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摘要

The application of Trichoderma strains with biocontrol and plant growth-promoting capacities to plant substrates can help reduce the input of chemical pesticides and fertilizers in agriculture. Some Trichoderma isolates can directly affect plant pathogens, but they also are known to influence the phytohormonal network of their host plant, thus leading to an improvement of plant growth and stress tolerance. In this study, we tested whether alterations in the phytohormone signature induced by different Trichoderma isolates correspond with their ability for biocontrol and growth promotion. Four Trichoderma isolates were collected from agricultural soils and were identified as the species Trichoderma harzianum (two isolates), Trichoderma ghanense, and Trichoderma hamatum. Their antagonistic activity against the plant pathogen Fusarium oxysporum f. sp. melonis was tested in vitro, and their plant growth-promoting and biocontrol activity against Fusarium wilt on melon plants was examined in vivo, and compared to that of the commercial strain T. harzianum T-22. Several growth- and defense-related phytohormones were analyzed in the shoots of plants that were root-colonized by the different Trichoderma isolates. An increase in auxin and a decrease in cytokinins and abscisic acid content were induced by the isolates that promoted the plant growth. Principal component analysis (PCA) was used to evaluate the relationship between the plant phenotypic and hormonal variables. PCA pointed to a strong association of auxin induction with plant growth stimulation by Trichoderma. Furthermore, the disease-protectant ability of the Trichoderma strains against F. oxysporum infection seems to be more related to their induced alterations in the content of the hormones abscisic acid, ethylene, and the cytokinin trans-zeatin riboside than to the in vitro antagonism activity against F. oxysporum.
机译:将具有生物防治和促进植物生长能力的木霉菌株应用于植物基质可以帮助减少农业中化学农药和化肥的投入。一些木霉菌分离物可以直接影响植物病原体,但也已知它们会影响其寄主植物的植物激素网络,从而导致植物生长和胁迫耐受性的改善。在这项研究中,我们测试了由不同木霉分离物诱导的植物激素特征改变是否与其生物防治和促进生长的能力相对应。从农业土壤中收集了四种分离的木霉菌,它们被鉴定为哈茨木霉菌(两种分离株),加纳木霉和哈姆木霉。它们对植物病原菌镰刀菌f的拮抗活性。 sp。对甜瓜进行体外测试,并在体内检查了甜瓜对瓜类植物枯萎病的生长促进作用和生物防治活性,并将其与商品菌株哈茨木霉T-22进行了比较。在被不同木霉分离物根定根的植物的芽中,分析了几种与生长和防御相关的植物激素。生长素的增加和细胞分裂素和脱落酸含量的降低是由促进植物生长的分离物诱导的。主成分分析(PCA)用于评估植物表型和激素变量之间的关系。 PCA指出生长素诱导与木霉属植物刺激植物生长密切相关。此外,木霉菌菌株抗尖孢镰刀菌感染的疾病防护能力似乎与它们诱导的脱落酸,乙烯和细胞分裂素反玉米蛋白核苷含量的改变有关,而不是与体外拮抗活性有关。反对oxysporum。

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