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Anoxic Iron Cycling Bacteria from an Iron Sulfide- and Nitrate-Rich Freshwater Environment

机译:富含硫化铁和硝酸盐的淡水环境中的缺氧铁循环细菌

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摘要

In this study, both culture-dependent and culture-independent methods were used to determine whether the iron sulfide mineral- and nitrate-rich freshwater nature reserve Het Zwart Water accommodates anoxic microbial iron cycling. Molecular analyses (16S rRNA gene clone library and fluorescence in situ hybridization, FISH) showed that sulfur-oxidizing denitrifiers dominated the microbial population. In addition, bacteria resembling the iron-oxidizing, nitrate-reducing Acidovorax strain BrG1 accounted for a major part of the microbial community in the groundwater of this ecosystem. Despite the apparent abundance of strain BrG1-like bacteria, iron-oxidizing nitrate reducers could not be isolated, likely due to the strictly autotrophic cultivation conditions adopted in our study. In contrast an iron-reducing Geobacter sp. was isolated from this environment while FISH and 16S rRNA gene clone library analyses did not reveal any Geobacter sp.-related sequences in the groundwater. Our findings indicate that iron-oxidizing nitrate reducers may be of importance to the redox cycling of iron in the groundwater of our study site and illustrate the necessity of employing both culture-dependent and independent methods in studies on microbial processes.
机译:在这项研究中,使用依赖于文化和不依赖于文化的方法来确定富含硫化铁矿物和硝酸盐的淡水自然保护区Het Zwart Water是否适应缺氧微生物的铁循环。分子分析(16S rRNA基因克隆文库和荧光原位杂交,FISH)表明,硫氧化反硝化剂主导了微生物种群。另外,类似于氧化铁,还原硝酸盐的Acdocovorax菌株BrG1的细菌占该生态系统地下水微生物群落的主要部分。尽管菌株BrG1样细菌明显丰富,但仍未分离出氧化铁的硝酸盐还原剂,这可能是由于我们的研究采用了严格的自养培养条件。相反,还原铁的Geobacter sp.。从该环境中分离了FISH和16S rRNA基因克隆文库,但未发现地下水中任何与Geobacter sp。相关的序列。我们的发现表明,氧化铁的硝酸盐还原剂可能对我们研究地点的地下水中铁的氧化还原循环很重要,并且说明了在微生物过程研究中采用依赖于培养物的方法和独立方法的必要性。

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