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首页> 外文期刊>Microbial Ecology: An International Journal >Microbial Reduction of Fe(III) and SO4 (2-) and Associated Microbial Communities in the Alluvial Aquifer Groundwater and Sediments
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Microbial Reduction of Fe(III) and SO4 (2-) and Associated Microbial Communities in the Alluvial Aquifer Groundwater and Sediments

机译:在冲积含水层地下水和沉积物中的Fe(III)和SO4(2-)和相关的微生物群体的微生物还原

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摘要

Agricultural demands continuously increased use of groundwater, causing drawdown of water table and need of artificial recharge using adjacent stream waters. River water intrusion into groundwater can alter the geochemical and microbiological characteristics in the aquifer and subsurface. In an effort to investigate the subsurface biogeochemical activities before operation of artificial recharge at the test site, established at the bank of Nakdong River, Changwon, South Korea, organic carbon transported from river water to groundwater was mimicked and the effect on the indigenous microbial communities was investigated with the microcosm incubations of the groundwater and subsurface sediments. Laboratory incubations indicated microbial reduction of Fe(III) and sulfate. Next-generation Illumina MiSeq sequences of V4 region of 16S rRNA gene provided that the shifts of microbial taxa to Fe(III)-reducing and/or sulfate-reducing microorganisms such as Geobacter, Albidiferax, Desulfocapsa, Desulfuromonas, and Desulfovibrio were in good correlation with the sequential flourishment of microbial reduction of Fe(III) and sulfate as the incubations progressed. This suggests the potential role of dissolved organic carbons migrated with the river water into groundwater in the managed aquifer recharge system on the indigenous microbial community composition and following alterations of subsurface biogeochemistry and microbial metabolic activities.
机译:农业需求不断增加地下水的使用,导致水桌的缩减和使用相邻流水的人工补给。河水侵入地下水可以改变含水层和地下的地球化学和微生物特征。为了在测试现场进行人工补充前调查地下生物地球化学活动,在韩国昌洪河畔昌洪,从河水到地下水运输的有机碳,模仿了对土着微生物社区的影响通过地下水和地下沉积物进行了微观孵育。实验室孵育表明Fe(III)和硫酸盐的微生物还原。下一代Illumina miseq序列的16S rRNA基因的V4区域,提供了微生物分类群至Fe(III)的变化和/或硫酸盐还原的微生物,如地形术,alphidiferax,Desurocapsa,脱硫和脱硫性均呈良好的相关性随着孵育的进展,随着Fe(III)和硫酸盐的微生物还原的序集繁殖。这表明溶解的有机碳在土着微生物群落组成的管理含水层补给系统中与河水迁移到地下水中的潜在作用以及下落生物地球化学和微生物代谢活性的改变。

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