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Impact of soil salinity on the plant-growth – promoting and biological control abilities of root associated bacteria

机译:土壤盐分对根系相关细菌的促进植物生长和生物控制能力的影响

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摘要

The effectiveness of plant growth – promoting bacteria is variable under different biotic and abiotic conditions. Abiotic factors may negatively affect the beneficial properties and efficiency of the introduced PGPR inoculants. The aim of this study was to evaluate the effect of plant growth – promoting rhizobacteria on plant growth and on the control of foot and root rot of tomatoes caused by Fusarium solani under different soil salinity conditions. Among the five tested strains, only Pseudomonas chlororaphis TSAU13, and Pseudomonas extremorientalis TSAU20 were able to stimulate plant growth and act as biological controls of foot and root rot disease of tomato. The soil salinity did not negatively affect the beneficial impacts of these strains, as they were able to colonize and survive on the roots of tomato plants under both saline and non-saline soil conditions. The improved plant height and fruit yield of tomato was also observed for plants inoculated with P. extremorientalis TSAU20. Our results indicated that, saline condition is not crucial factor in obtaining good performance with respect to the plant growth stimulating and biocontrol abilities of PGPR strains. The bacterial inoculant also enhanced antioxidant enzymes activities thereby preventing ROS induced oxidative damage in plants, and the proline concentrations in plant tissue that play an important role in plant stress tolerance.
机译:植物生长的效果–促进细菌在不同的生物和非生物条件下是可变的。非生物因素可能会对引入的PGPR接种剂的有益特性和效率产生负面影响。这项研究的目的是评估在不同土壤盐分条件下茄根镰刀菌引起的植物生长-促进根际细菌对番茄的生长以及对番茄脚和根腐病的控制作用。在这五种测试菌株中,仅绿假单胞菌TSAU13和极端假单胞菌TSAU20能够刺激植物生长并充当番茄脚和根腐病的生物防治。土壤盐分并没有负面影响这些菌株的有益影响,因为它们能够在盐渍和非盐渍土壤条件下在番茄植物的根部定植并生存。还观察到了用极度假单胞菌TSAU20接种的植物的番茄的株高和果实产量得到改善。我们的结果表明,在刺激PGPR菌株的植物生长和生物防治能力方面,盐分条件并不是获得良好性能的关键因素。细菌孕育剂还增强了抗氧化酶的活性,从而防止了ROS诱导的植物氧化损伤,以及植物组织中脯氨酸的浓度在植物抗逆性中起重要作用。

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