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Effect of salinity on diazotrophic activity and microbial composition of phototrophic communities from Bitter-1 soda lake (Kulunda Steppe, Russia)

机译:盐度对苦味1苏打湖(Kulunda Steppe,俄罗斯)的反向营养活性和微生物组成的影响

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摘要

Bitter-1 is a shallow hypersaline soda lake in Kulunda Steppe (Altai region, Russia). During a study period between 2005 and 2016, the salinity in the littoral area of the lake fluctuated within the range from 85 to 400 g/L (in July of each year). Light-dependent nitrogen fixation occurred in this lake up to the salt-saturating conditions. The rates increased with a decrease in salinity, both under environmental conditions and in laboratory simulations. The salinities below 100 g/L were favorable for light-dependent nitrogen fixation, while the process was dramatically inhibited above 200 g/L salts. The analysis of nifH genes in environmental samples and in enrichment cultures of diazotrophic phototrophs suggested that anaerobic fermenting and sulfate-reducing bacteria could participate in the dark nitrogen fixation process up to soda-saturating conditions. However, we cannot exclude the possibility that haloalkaliphilic nonheterocystous cyanobacteria (Euhalothece sp. and Geitlerinema sp.) and anoxygenic purple sulfur bacteria (Ectothiorhodospira sp.) might also play a role in the process at light conditions. The heterocystous cyanobacterium Nodularia sp. develops at low salinity (below 80 g/L) that is not characteristic for Bitter-1 Lake and thus does not make a significant contribution to the nitrogen fixation in this lake.
机译:Bitter-1是Kulunda Steppe(阿尔泰地区,俄罗斯)的浅浓度苏打水。在2005年至2016年期间的研究期间,湖泊沿海地区的盐度波动在85至400克/ L(每年7月)的范围内。在该湖中发生光依赖性氮固定,直至盐饱和条件。该速率随着环境条件和实验室模拟的盐度降低而增加。低于100克/升的盐度是有利于光依赖性氮固定的,而该方法显着抑制了200g / L盐以上。在无苄营养光学术中对NiFH基因的分析和脂肪营养术的富集培养表明,厌氧发酵和还原细菌可以参与暗氮固定过程直至钠饱和条件。然而,我们不能排除Haloalkaliphilic无骨囊囊肿(Euhalothece SP。和Geitlerinema Sp。)和苯氧基紫色硫菌(Ectohorhodospira Sp.)的可能性也可能在轻质条件下在过程中发挥作用。杂囊性蓝杆菌Nodularia sp。在低盐度(低于80克/升)的苦涩-1湖的特征,因此不会对该湖中的氮固定作出显着贡献。

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