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首页> 外文期刊>Journal of plant nutrition and soil science >Inoculation of tomato plants with selected PGPR represents a feasible alternative to chemical fertilization under salt stress
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Inoculation of tomato plants with selected PGPR represents a feasible alternative to chemical fertilization under salt stress

机译:用所选PGPR接种番茄植物代表了盐胁迫下的化学施肥的可行替代品

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摘要

Plant growth-promoting rhizobacteria (PGPR) are soil bacteria that colonize the rhizosphere of plants, enhance plant growth, and may alleviate environmental stress, thus constituting a powerful tool in sustainable agriculture. Here, we compared the capacity of chemical fertilization to selected PGPR strains to promote growth and alleviate salinity stress in tomato plants (Solanum lycopersicum L.). A pot experiment was designed with two main factors: fertilization (chemical fertilization, bacterial inoculation with seven PGPR, or a non-fertilized non-inoculated control) and salt stress (0 or 100 mM NaCl). In the absence of stress, a clear promotion of growth, a positive effect on plant physiology (elevated F-v/F-m), and enhanced N, P, and K concentrations were observed in inoculated plants compared to non-fertilized controls. Salinity negatively affected most variables analyzed, but inoculation with certain strains reduced some of the negative effects on growth parameters and plant physiology (water loss and K+ depletion) in a moderate but significant manner. Chemical fertilization clearly exceeded the positive effects of inoculation under non-stressed conditions, but conversely, biofertilization with some strains outperformed chemical fertilization under salt stress. The results point at inoculation with selected PGPR as a viable economical and environment-friendly alternative to chemical fertilization in salinity-affected soils.
机译:植物生长促进的根茎(PGPR)是土壤细菌,可殖民植物的根际,增强植物生长,并可缓解环境压力,从而构成可持续农业的强大工具。在此,我们将化学施肥能力与选定的PGPR菌株进行了比较,以促进番茄植物(Solanum Lycopersicum L.)中的生长和缓解盐度胁迫。锅实验设计有两个主要因素:施肥(化学施肥,七PGPR或非施肥的非接种对照)和盐胁迫(0或100mM NaCl)。在没有压力的情况下,与非受精对照相比,在接种植物中,观察到促进生长的促进,对植物生理学(升高的F-V / F-M)和增强的N,P和K浓度进行阳性作用。盐度对大多数分析的变量产生负面影响,但与某些菌株的接种减少了对生长参数和植物生理学(水丢失和K +耗尽)的一些负面影响,以适度但显着的方式。化学施肥明显超过了非压力条件下接种的积极作用,但相反地,在盐胁迫下具有一些菌株的生物元素优于化学施肥。用所选PGPR接种的结果点作为盐度受影响的土壤中化学施肥的可行经济和环保替代品。

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