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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Alleviation of drought stress effects in sunflower seedlings by the exopolysaccharides producing Pseudomonas putida strain GAP-P45
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Alleviation of drought stress effects in sunflower seedlings by the exopolysaccharides producing Pseudomonas putida strain GAP-P45

机译:产生恶臭假单胞菌菌株GAP-P45的胞外多糖减轻向日葵幼苗的干旱胁迫效应

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Production of exopolysaccharides (EPS) can be used as a criteria for the isolation of stress tolerant microorganisms. In the present study, EPS-producing fluorescent pseudomonads were isolated from alfisols, vertisols, inseptisols, oxisols, and aridisols of different semiarid millet growing regions of India and were screened in vitro for drought tolerance in trypticase soy broth supplemented with different concentrations of polyethylene glycol (PEG6000). Out of the total 81 isolates, 26 could tolerate maximum level of stress (-0.73MPa) and were monitored for the amount of EPS produced under maximum level of water stress. The strain GAP-P45, isolated from alfisol of sunflower rhizosphere, showed the highest level of EPS production under water stress conditions, was identified as Pseudomonas putida on the basis of 16S rDNA sequence analysis, and was used as seed treatment to study its effect in alleviating drought stress effects in sunflower seedlings. Inoculation of Pseudomonas sp. strain GAP-P45 increased the survival, plant biomass, and root adhering soil/root tissue ratio of sunflower seedlings subjected to drought stress. The inoculated bacteria could efficiently colonize the root adhering soil and rhizoplane and increase the percentage of stable soil aggregates. Scanning electron microscope studies showed the formation of biofilm of inoculated bacteria on the root surface and this, along with a better soil structure, might have protected the plants from the water stress.
机译:胞外多糖(EPS)的产生可以用作分离耐压力微生物的标准。在本研究中,从印度不同半干旱小米产区的铝溶胶,垂直异构体,inseptisols,oxisols和aridisols中分离出了产生EPS的荧光假单胞菌,并在体外筛选了补充有不同浓度聚乙二醇的胰蛋白酶大豆肉汤中的耐旱性。 (PEG6000)。在总共81个分离株中,有26个可以耐受最大胁迫水平(-0.73MPa),并监测了在最大水分胁迫下产生的EPS量。分离自向日葵根际土壤中的GAP-P45菌株,在水分胁迫条件下表现出最高的EPS产量,在16S rDNA序列分析的基础上被鉴定为恶臭假单胞菌,并被用作种子处理以研究其作用。减轻向日葵幼苗的干旱胁迫影响。接种假单胞菌。 GAP-P45菌株提高了干旱胁迫下向日葵幼苗的存活,植物生物量和根系附着的土壤/根组织比。接种的细菌可以有效地在附着根的土壤和根际上定殖,并增加稳定土壤团聚体的百分比。扫描电子显微镜研究表明,根表面已接种细菌的生物膜形成,加上更好的土壤结构,可能保护了植物免受水分胁迫。

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