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Plant Drought Tolerance Enhancement by Trehalose Production of Desiccation-Tolerant Microorganisms

机译:海藻糖生产的耐干燥微生物提高了植物的耐旱性

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摘要

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 otsAB genes for trehalose biosynthesis in trans.
机译:筛选了一组能产生脱水干燥作用的抗微生物保护剂的微生物保护植物免受干旱的能力,并在两种不同的农作物(番茄和胡椒)中研究了它们作为植物促生根瘤菌的作用。分析了最普遍描述的植物抗微生物干旱作用的生化机制,包括植物激素,抗氧化剂和抗旱剂的产生。特别地,表征了由这些微生物提供的植物抵抗干旱的程度。在研究了这些发现并将它们与最接近的生物分类亲戚的物种和品系水平的结果进行比较之后,我们提出这些微生物产生的海藻糖与它们保护植物免受干旱的能力有关。该提议是基于对干燥敏感的恶臭假单胞菌KT2440增强植物抗旱保护的,该假单胞菌可表达otsAB基因以反式海藻糖的生物合成。

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