首页> 外文OA文献 >Plant Growth Promotion and Biocontrol of Pythium ultimum by Saline Tolerant Trichoderma Isolates under Salinity Stress
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Plant Growth Promotion and Biocontrol of Pythium ultimum by Saline Tolerant Trichoderma Isolates under Salinity Stress

机译:通过盐度应力下盐水耐受性植物植物生长促进和钙菌的生物控制

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摘要

This present study evaluates three isolates of Trichoderma as plant growth promoting or biological control agents: Trichoderma aggressivum f. sp. europaeum, Trichoderma saturnisporum, and the marine isolate obtained from Posidonia oceanica, Trichoderma longibrachiatum. The purpose is to contribute to an overall reduction in pesticide residues in the fruit and the environment and to a decrease in chemical fertilizers, the excess of which aggravates one of the most serious abiotic stresses, salinity. The tolerance of the different isolates to increasing concentrations of sodium chloride was evaluated in vitro, as well as their antagonistic capacity against Pythium ultimum. The plant growth promoting capacity and effects of Trichoderma strains on the severity of P. ultimum on melon seedlings under saline conditions were also analysed. The results reveal that the three isolates of Trichoderma, regardless of their origin, alleviate the stress produced by salinity, resulting in larger plants with an air-dry weight percentage above 80% in saline stress conditions for T. longibrachiatum, or an increase in root-dry weight close to 50% when T. aggressivum f. sp. europaeum was applied. Likewise, the three isolates showed antagonistic activity against P. ultimum, reducing the incidence of the disease, with the highest response found for T. longibrachiatum. Biological control of P. ultimum by T. aggressivum f. sp. europaeum and T. saturnisporum is reported for the first time, reducing disease severity by 62.96% and 51.85%, respectively. This is the first description of T. aggressivum f. sp. europaeum as a biological control agent and growth promoter. The application of these isolates can be of enormous benefit to horticultural crops, in both seedbeds and greenhouses.
机译:本研究评估了三分离蛋白的三分之二作为植物生长促进或生物对照剂:Trichoderma Aggressivum F. sp。 Europaeum,Trichoderma Saturnisporum,以及从Posidonia Oceanica,Trichoderma Longibrachiatum获得的海洋孤立。目的是有助于果实和环境中农药残留的总体减少,并减少化肥,过量加剧了最严重的非生物胁迫,盐度之一。在体外评价不同分离物与氯化钠浓度的耐受性,以及抗钙钙菌的拮抗能力。还分析了植物生长促进能力和Trichoderma菌株对盐条件下甜瓜幼苗的P. Ultimum的严重程度的影响。结果表明,无论其起源,脂肪分离的三胞分离株,缓解盐度产生的应力,导致较大的植物在盐水胁迫条件下为80%以上的盐水胁迫条件,或增加根 - 当T. Aggressivum F时,重量接近50%。 sp。统筹应用。同样,三种分离物显示出对P.的拮抗活性,降低疾病的发病率,具有用于T.Sphibrachiatum的最高反应。抗原僵局F的生物控制。 sp。首次报告Europaeum和Saturnisporum,分别将疾病严重程度降低62.96%和51.85%。这是T. Aggressivum F的第一个描述。 sp。 Europaeum作为生物控制剂和生长启动子。这些分离株的应用可能对栽培作物,苗木和温室中的园艺作物具有巨大的益处。

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