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首页> 外文期刊>Frontiers in Microbiology >Plant Drought Tolerance Enhancement by Trehalose Production of Desiccation-Tolerant Microorganisms
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Plant Drought Tolerance Enhancement by Trehalose Production of Desiccation-Tolerant Microorganisms

机译:植物干旱耐受性耐药性耐性微生物的产量增强

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A collection of desiccation-tolerant xeroprotectant-producing microorganisms was screened for their ability to protect plants against drought, and their role as plant growth-promoting rhizobacteria was investigated in two different crops (tomato and pepper). The most commonly described biochemical mechanisms for plant protection against drought by microorganisms including the production of phytohormones, antioxidants and xeroprotectants were analyzed. In particular, the degree of plant protection against drought provided by these microorganisms was characterized. After studying the findings and comparing them with results of the closest taxonomic relatives at the species and strain levels, we propose that trehalose produced by these microorganisms is correlated with their ability to protect plants against drought. This proposal is based on the increased protection of plants against drought by the desiccation-sensitive microorganism Pseudomonas putida KT2440, which expresses the ots AB genes for trehalose biosynthesis in trans .
机译:筛选出一种干燥的耐酸性产生的微生物,用于保护植物免受干旱的能力,以及它们在两种不同的作物(番茄和胡椒)中研究了植物生长促进的流虫的作用。分析了在包括生产植物激素,抗氧化剂和Xeropotectants的微生物的植物保护的最常用的生化机制。特别是,植物保护程度对这些微生物提供的干旱的保护程度的特征在于。在研究结果并将它们与物种和菌株水平的最近分类亲属的结果进行比较后,我们提出了这些微生物产生的海藻糖与其保护植物免受干旱的能力相关。该提案基于植物对干燥敏感性微生物普赖达KT2440对植物的增加,这表达了反式中海藻糖生物合成的OTS AB基因。

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