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首页> 外文期刊>Ecoscience >Metabolic profiles of microorganisms associated with the halophyte Salicornia europaea in soils with different levels of salinity
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Metabolic profiles of microorganisms associated with the halophyte Salicornia europaea in soils with different levels of salinity

机译:不同盐度土壤中与盐生植物欧洲盐生藻相关的微生物的代谢谱

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摘要

Plants have evolved a wide range of adaptation mechanisms that enable them to grow and develop in environments of high soil salinity. We examine the plant-microbial interactions of Salicornia europaea (Herbaceae) as potential mechanisms responsible for the high tolerance of halophytes to saline conditions. We evaluated the impact of different NaCl concentrations on microorganisms associated with S. europaea growing at 2 saline sites in central Poland: a salty meadow in the vicinity of a soda factory (anthropogenic salinity) and an area affected by natural brine (landscape park). The community-level physiological profiles of microorganisms associated with the plant were determined for endophytes from the roots, rhizosphere, and salt-affected soil. The highest total microbial metabolic activity, irrespective of the test site, was always in the rhizosphere, while the activity of endophytic and soil populations depended on salinity. In general, a higher total metabolic activity was observed at the test site exhibiting higher salt concentration. We propose that increased metabolic activity of microbial populations under increased salt stress can significantly contribute to the site adaptation of halophytes to saline conditions.
机译:植物已经进化出各种各样的适应机制,使它们能够在土壤盐分高的环境中生长和发育。我们研究了Salicornia europaea(Herbaceae)的植物与微生物的相互作用,这是造成盐生植物对盐分条件高度耐受的潜在机制。我们评估了不同NaCl浓度对与波兰中部2个盐碱地生长的欧洲链球菌相关的微生物的影响:苏打工厂附近的盐碱草甸(人为盐度)和受天然盐水影响的区域(景观公园)。确定了与植物相关的微生物的群落水平的生理特征,以确定根,根际和受盐影响的土壤中的内生菌。无论测试地点如何,最高的总微生物代谢活性始终位于根际,而内生和土壤种群的活性取决于盐度。通常,在显示较高盐浓度的测试部位观察到较高的总代谢活性。我们建议增加盐胁迫下微生物种群的代谢活性可以极大地促进盐生植物适应盐条件的位点。

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