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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Paenibacillus lentimorbus B-30488(r) controls early blight disease in tomato by inducing host resistance associated gene expression and inhibiting Alternaria solani
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Paenibacillus lentimorbus B-30488(r) controls early blight disease in tomato by inducing host resistance associated gene expression and inhibiting Alternaria solani

机译:慢病毒Paenibacillus lentimorbus B-30488(r)通过诱导宿主抗性相关基因表达并抑制茄格链霉菌来控制番茄的早疫病

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摘要

The ability of Paenibacillus lentimorbus B-30488(r) (B-30488(r)) in reducing the early blight (EB) disease caused by Alternaria solani in tomato was assessed. Foliar application of the bacteria reduced the disease incidence by 45.3% as compared to control. In vitro studies indicated that B-30488(r) effectively reduces the radial growth of A. solani in dual culture, and SEM studies demonstrated complete degradation of fungal hyphae on co-culture with B-30488(r). Both B-30488(r) and A. solani exhibited high similarity in the nutrient utilization of carbon sources present in tomato tissues. Changes in gene expression studied using RT-PCR analyses indicate significant up-regulation of defense and growth-related genes in tomato plants treated with B-30488(r) foliar spray and A. solani challenged plants pre-treated with B-30488(r) foliar spray. Principal component analysis results indicated that tomato plants treated with A. solani affected microbial community structure and population of the rhizosphere as compared to B-30488(r). Results suggest that P. lentimorbus B-30488(r) has a multiple mode of action for its biological control activity by inducing resistance in tomato plants, by degrading the pathogen cell wall, and by competing for similar sources of nutrients on the phyllosphere. Additionally, B-30488(r) would not affect microbial populations on the rhizosphere of the tomato plants.
机译:评估了慢病毒Paenibacillus Lentimorbus B-30488(r)(B-30488(r))减少番茄中链格孢菌引起的早疫病(EB)的能力。与对照相比,叶面施用细菌可将疾病发生率降低45.3%。体外研究表明,B-30488(r)在双重培养中有效降低了茄形假单胞菌的径向生长,而SEM研究表明,与B-30488(r)共培养时,真菌菌丝完全降解。 B-30488(r)和A. solani在番茄组织中碳源的养分利用方面均显示出高度相似性。使用RT-PCR分析研究的基因表达变化表明,用B-30488(r)叶面喷洒处理的番茄植物和用B-30488(r)预处理的茄疫病菌攻击的植物中防御和生长相关基因的显着上调)叶面喷雾。主成分分析结果表明,与B-30488(r)相比,用A. solani处理的番茄植株会影响微生物群落结构和根际种群。结果表明,P。lentimorbus B-30488(r)通过在番茄植株中诱导抗性,降解病原体细胞壁以及在叶球上竞争相似的养分来源,对其生物学控制活性具有多种作用模式。此外,B-30488(r)不会影响番茄植株根际上的微生物种群。

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