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首页> 外文期刊>BioMed research international >Potential for Plant Growth Promotion of Rhizobacteria Associated withSalicorniaGrowing in Tunisian Hypersaline Soils
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Potential for Plant Growth Promotion of Rhizobacteria Associated withSalicorniaGrowing in Tunisian Hypersaline Soils

机译:在突尼斯高盐土上生长的与盐生细菌相关的根际细菌的植物生长潜力

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Soil salinity and drought are among the environmental stresses that most severely affect plant growth and production around the world. In this study the rhizospheres ofSalicorniaplants and bulk soils were collected fromSebkhetandChotthypersaline ecosystems in Tunisia. Depiction of bacterial microbiome composition by Denaturing Gradient Gel Electrophoresis unveiled the occurrence of a high bacterial diversity associated withSalicorniaroot system. A large collection of 475 halophilic and halotolerant bacteria was established fromSalicorniarhizosphere and the surrounding bulk soil, and the bacteria were characterized for the resistance to temperature, osmotic and saline stresses, and plant growth promotion (PGP) features. TwentyHalomonasstrains showed resistance to a wide set of abiotic stresses and were able to perform different PGP activitiesin vitroat 5% NaCl, including ammonia and indole-3-acetic acid production, phosphate solubilisation, and potential nitrogen fixation. By using agfp-labelled strain it was possible to demonstrate thatHalomonasis capable of successfully colonisingSalicorniaroots in the laboratory conditions. Our results indicated that the culturable halophilic/halotolerant bacteria inhabiting salty and arid ecosystems have a potential to contribute to promoting plant growth under the harsh salinity and drought conditions. These halophilic/halotolerant strains could be exploited in biofertilizer formulates to sustain crop production in degraded and arid lands.
机译:土壤盐分和干旱是最严重影响全球植物生长和生产的环境压力之一。本研究从突尼斯的SebkhetandChotthypersaline生态系统中收集了Salicornia植物的根际和大量土壤。通过变性梯度凝胶电泳对细菌微生物组组成的描述揭示了与Salicorniaroot系统相关的高度细菌多样性的发生。从盐生根际和周围的土壤中建立了475种嗜盐和卤代菌的大量收集物,并对这些细菌进行了耐温,渗透和盐胁迫以及植物生长促进(PGP)功能的表征。二十种卤代亚种对多种非生物胁迫均表现出抗性,并且能够在5%NaCl中体外执行不同的PGP活性,包括氨和吲哚-3-乙酸的生产,磷酸盐的溶解以及潜在的固氮作用。通过使用agfp标记的菌株,有可能证明Halomonasis能够在实验室条件下成功定居盐生根。我们的结果表明,在盐碱和干旱条件下,居住在咸水和干旱生态系统中的可培养的嗜盐/耐盐细菌具有促进植物生长的潜力。这些嗜盐/耐盐菌株可用于生物肥料配方中,以维持退化和干旱土地上的作物生产。

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