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Influence of Rhizoctonia solani and Trichoderma spp. in growth of bean ( Phaseolus vulgaris L.) and in the induction of plant defense-related genes

机译: Rhizoctonia solani Trichoderma spp的影响。 (菜豆)的生长和与植物防御相关基因的诱导

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Many Trichoderma species are well-known for their ability to promote plant growth and defense. We study how the interaction of bean plants with R. solani and/or Trichoderma affect the plants growth and the level of expression of defense-related genes. Trichoderma isolates were evaluated in vitro for their potential to antagonize R. solani . Bioassays were performed in climatic chambers and development of the plants was evaluated. The effect of Trichoderma treatment and/or R. solani infection on the expression of bean defense-related genes was analyzed by real-time PCR and the production of ergosterol and squalene was quantified. In vitro growth inhibition of R. solani was between 86 and 58%. In in vivo assays, the bean plants treated with Trichoderma harzianum T019 always had an increased size respect to control and the plants treated with this isolate did not decrease their size in presence of R. solani . The interaction of plants with R. solani and/or Trichoderma affects the level of expression of seven defense-related genes. Squalene and ergosterol production differences were found among the Trichoderma isolates, T019 showing the highest values for both compounds. T. harzianum T019 shows a positive effect on the level of resistance of bean plants to R. solani . This strain induces the expression of plant defense-related genes and produces a higher level of ergosterol, indicating its ability to grow at a higher rate in the soil, which would explain its positive effects on plant growth and defense in the presence of the pathogen.
机译:许多木霉属物种以促进植物生长和防御的能力而闻名。我们研究了豆类植物与茄茄和/或木霉的相互作用如何影响植物的生长和防御相关基因的表达水平。对木霉菌的分离物进行了拮抗solani solani的潜力。在气候室中进行生物测定并评估植物的发育。通过实时PCR分析木霉菌处理和/或茄状枯萎病感染对豆防御相关基因表达的影响,并对麦角固醇和角鲨烯的产生进行定量。 Sol。solani的体外生长抑制在86%至58%之间。在体内测定中,用哈茨木霉T019处理过的豆类植物相对于对照而言总是具有增加的大小,并且用这种分离株处理过的植物在有茄红腐霉菌的情况下没有减小它们的大小。植物与茄霉菌和/或木霉的相互作用影响了七个防御相关基因的表达水平。在木霉分离物中发现角鲨烯和麦角固醇的生产差异,T019显示两种化合物的最高值。哈茨木霉T019对豆类植物对solani的抗性水平表现出积极作用。该菌株诱导植物防御相关基因的表达并产生更高水平的麦角固醇,表明其在土壤中以较高速率生长的能力,这可以解释其在病原体存在下对植物生长和防御的积极作用。

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