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Gluconacetobacter diazotrophicus Changes The Molecular Mechanisms of Root Development in Oryza sativa L. Growing Under Water Stress

机译:糖醋杆菌重氮营养改变了水分胁迫下水稻生长的根系分子机制

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摘要

Background: Inoculation with has shown to influence root development in red rice plants, and more recently, the induced systemic tolerance (IST) response to drought was also demonstrated. The goal of this study was to evaluate the inoculation effect of strain Pal5 on the amelioration of drought stress and root development in red rice ( L.). Methods: The experimental treatments consist of red rice plants inoculated with and without Pal5 in presence and absence of water restriction. Physiological, biochemical, and molecular analyses of plant roots were carried out, along with measurements of growth and biochemical components. Results: The plants showed a positive response to the bacterial inoculation, with root growth promotion and induction of tolerance to drought. An increase in the root area and higher levels of osmoprotectant solutes were observed in roots. Bacterial inoculation increased the drought tolerance and positively regulated certain root development genes against the water deficit in plants. Conclusion: Pal5 strain inoculation favored red rice plants by promoting various root growth and developmental mechanisms against drought stress, enabling root development and improving biochemical composition.
机译:背景:接种会影响红稻植物的根系发育,最近,还证明了诱导的对干旱的系统耐受(IST)反应。这项研究的目的是评估Pal5菌株对改善红米(L.)干旱胁迫和根系发育的作用。方法:实验处理包括在有水限制和无水限制的条件下接种有和没有Pal5的红稻植物。进行了植物根的生理,生化和分子分析,以及生长和生化成分的测量。结果:植物对细菌接种表现出积极的反应,促进了根的生长并诱导了对干旱的耐受性。在根中观察到根面积增加和渗透保护溶质含量更高。细菌接种提高了植物的耐旱性,并积极调节了某些根系发育基因以抵抗植物的水分缺乏。结论:Pal5菌株的接种通过促进各种根系生长和抵抗干旱胁迫的发育机制,促进根系发育并改善生化组成,从而有利于红稻植物。

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