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Root inoculation with Azotobacter chroococcum 76A enhances tomato plants adaptation to salt stress under low N conditions

机译:具有偶氮杆菌的根部接种76A增强了番茄植物在低N条件下适应盐胁迫

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The emerging roles of rhizobacteria in improving plant nutrition and stress protection have great potential for sustainable use in saline soils. We evaluated the function of the salt-tolerant strain Azotobacter chroococcum 76A as stress protectant in an important horticultural crop, tomato. Specifically we hypothesized that treatment of tomato plants with A. chroococcum 76A could improve plant performance under salinity stress and sub-optimal nutrient regimen. Inoculation of Micro Tom tomato plants with A. chroococcum 76A increased numerous growth parameters and also conferred protective effects under both moderate (50?mM NaCl) and severe (100?mM NaCl) salt stresses. These benefits were mostly observed under reduced nutrient regimen and were less appreciable in optimal nitrogen conditions. Therefore, the efficiency of A. chroococcum 76A was found to be dependent on the nutrient status of the rhizosphere. The expression profiles of LEA genes indicated that A. chroococcum 76A treated plants were more responsive to stress stimuli when compared to untreated controls. However, transcript levels of key nitrogen assimilation genes revealed that the optimal nitrogen regimen, in combination with the strain A. chroococcum 76A, may have saturated plant’s ability to assimilate nitrogen. Roots inoculation with A. chroococcum 76A tomato promoted tomato plant growth, stress tolerance and nutrient assimilation efficiency under moderate and severe salinity. Inoculation with beneficial bacteria such as A. chroococcum 76A may be an ideal solution for low-input systems, where environmental constraints and limited chemical fertilization may affect the potential yield.
机译:流动杆菌在改善植物营养和应力保护方面的新兴作用具有良好的可持续用处盐土壤的潜力。我们评估了耐盐菌株AzoTootobacter 76a在重要的园艺作物中作为应激保护剂的功能。具体地说,我们假设用A. chroococcum 76a治疗番茄植物可以改善盐度应力和次优营养方案下的植物性能。接种微汤汤植物用A. chroococcum 76a增加了许多生长参数,并且还在中等(50毫米NaCl)和严重(100毫米NaCl)盐胁迫下赋予了保护作用。在减少的营养方案下,这些益处主要观察到,并且在最佳氮气条件下对较少的意识。因此,发现A.Chroococcum 76a的效率取决于根际的营养状况。 Lea基因的表达谱表明,与未处理的对照相比,A. chroocccum 76a处理的植物更响应于应激刺激。然而,关键氮同化基因的转录物水平显示,最佳氮方案与菌株A.Chroococcum 76a组合,可能具有饱和植物的氮化氮的能力。用A. Chroococcum 76a番茄接种的根部促进了中度和严重盐度下的番茄植物生长,胁迫耐受性和营养增生效率。与诸如A.Chroococcum 76a的有益细菌的接种可以是低输入系统的理想解决方案,其中环境限制和有限的化学施肥可能会影响潜在的产量。

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