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Improved plant resistance to drought is promoted by the root-associated microbiome as a water stress-dependent trait

机译:根系相关微生物组作为水分胁迫相关性状促进了植物抗旱性的提高

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摘要

Although drought is an increasing problem in agriculture, the contribution of the root-associated bacterial microbiome to plant adaptation to water stress is poorly studied. We investigated if the culturable bacterial microbiome associated with five grapevine rootstocks and the grapevine cultivar Barbera may enhance plant growth under drought stress. Eight isolates, over 510 strains, were tested in vivo for their capacity to support grapevine growth under water stress. The selected strains exhibited a vast array of plant growth promoting (PGP) traits, and confocal microscopy observation of gfp-labelled Acinetobacter and Pseudomonas isolates showed their ability to adhere and colonize both the Arabidopsis and grapevine rhizoplane. Tests on pepper plants fertilized with the selected strains, under both optimal irrigation and drought conditions, showed that PGP activity was a stress-dependent and not a per se feature of the strains. The isolates were capable of increasing shoot and leaf biomass, shoot length, and photosynthetic activity of drought-challenged grapevines, with an enhanced effect in drought-sensitive rootstock. Three isolates were further assayed for PGP capacity under outdoor conditions, exhibiting the ability to increase grapevine root biomass. Overall, the results indicate that PGP bacteria contribute to improve plant adaptation to drought through a water stress-induced promotion ability.
机译:尽管干旱在农业中是一个日益严重的问题,但对根相关细菌微生物组对植物适应水分胁迫的贡献的研究却很少。我们调查了与五种葡萄砧木和葡萄栽培品种Barbera相关的可培养细菌微生物组是否可以增强干旱胁迫下的植物生长。在体内测试了超过510个菌株的8个分离株在水分胁迫下支持葡萄生长的能力。所选菌株表现出各种各样的植物生长促进(PGP)性状,共聚焦显微镜观察gfp标记的不动杆菌和假单胞菌分离株显示出它们能够粘附和定居拟南芥和葡萄根际平面。在最佳灌溉和干旱条件下,对用选定菌株施肥的辣椒植物进行的测试表明,PGP活性是胁迫依赖性的,而不是菌株本身的特征。分离株能够增加干旱挑战的葡萄的枝条和叶片生物量,枝条长度和光合活性,对干旱敏感的砧木具有增强的作用。在室外条件下进一步分析了三种分离物的PGP能力,表现出增加葡萄根生物量的能力。总体而言,结果表明PGP细菌通过水分胁迫诱导的促进能力有助于提高植物对干旱的适应性。

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