首页> 外文期刊>Acta Physiologiae Plantarum >Pseudomonas chlororaphis: a salt-tolerant bacterial inoculant for plant growth stimulation under saline soil conditions
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Pseudomonas chlororaphis: a salt-tolerant bacterial inoculant for plant growth stimulation under saline soil conditions

机译:绿假单胞菌(Pseudomonas chlororaphis):一种耐盐细菌接种剂,可在盐渍土壤条件下刺激植物生长

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摘要

Saline soils constitute a serious production problem for vegetable crops as they are known to suppress plant growth. One of the possible measures to improve crop health in such conditions is to use salt-tolerant bacterial inoculants which can control diseases and promote plant growth. In the present work the ability of Pseudomonas chlororaphis isolate TSAU13 to promote cucumber and tomato plant growth and to improve fruit yield by protecting these plants against soil-borne pathogens in salinated soil were investigated. The bacterial strain stimulated shoot growth (up to 32%), dry matter (up to 43%), and the fruit yield of tomato and cucumber (up to 16%) compared to the uninoculated control plants under saline conditions. The strain was able to survive on the root of 2-month-old plants. 29% of the cucumber and 27% of the tomato plants which had grown in soil to which no Fusarium solani spores had been added were diseased, whereas in the presence of the pathogenic fungus 58% of the cucumber and 52% tomato plants had disease symptoms. P. chlororaphis TSAU13 showed statistically significant disease reduction in comparison to the Fusarium-uninfected and infected control plants. Those results showed that P. chlororaphis TSAU13 has a great biotechnological potential in improvement of vegetable production in commercial greenhouses under saline conditions.
机译:盐渍土构成了严重的蔬菜作物生产问题,因为它们会抑制植物生长。在这种条件下改善作物健康的可能措施之一是使用能控制疾病和促进植物生长的耐盐细菌接种剂。在目前的工作中,研究了绿假单胞菌分离TSAU13促进黄瓜和番茄植物生长并通过保护这些植物免受盐渍化土壤中土壤传播病原体侵害而提高果实产量的能力。与未接种盐溶液的对照植物相比,该细菌菌株刺激了枝条的生长(最高32%),干物质(最高43%)以及番茄和黄瓜的果实产量(最高16%)。该菌株能够在两个月大的植物的根部存活。在没有添加枯萎镰刀菌孢子的土壤中生长的黄瓜和番茄植物中,有29%和27%患病,而在有致病真菌的情况下,有58%的黄瓜和52%番茄植物有疾病症状。与镰刀菌未感染和感染的对照植物相比,叶绿假单胞菌TSAU13在统计学上显示出显着的病害减少。这些结果表明,在盐碱条件下,商业化温室中的叶绿假单胞菌TSAU13具有巨大的生物技术潜力。

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