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首页> 外文期刊>Applied and Environmental Microbiology >Isolation of Geobacter species from diverse sedimentary environments.
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Isolation of Geobacter species from diverse sedimentary environments.

机译:从不同的沉积环境中分离出土壤杆菌物种。

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In an attempt to better understand the microorganisms responsible for Fe(III) reduction in sedimentary environments, Fe(III)-reducing microorganisms were enriched for and isolated from freshwater aquatic sediments, a pristine deep aquifer, and a petroleum-contaminated shallow aquifer. Enrichments were initiated with acetate or toluene as the electron donor and Fe(III) as the electron acceptor. Isolations were made with acetate or benzoate. Five new strains which could obtain energy for growth by dissimilatory Fe(III) reduction were isolated. All five isolates are gram-negative strict anaerobes which grow with acetate as the electron donor and Fe(III) as the electron acceptor. Analysis of the 16S rRNA sequence of the isolated organisms demonstrated that they all belonged to the genus Geobacter in the delta subdivision of the Proteobacteria. Unlike the type strain, Geobacter metallireducens, three of the five isolates could use H2 as an electron donor for Fe(III) reduction. The deep subsurface isolate is the first Fe(III) reducer shown to completely oxidize lactate to carbon dioxide, while one of the freshwater sediment isolates is only the second Fe(III) reducer known that can oxidize toluene. The isolation of these organisms demonstrates that Geobacter species are widely distributed in a diversity of sedimentary environments in which Fe(III) reduction is an important process.
机译:为了更好地了解造成沉积环境中Fe(III)还原的微生物,还原Fe(III)的微生物从淡水水生沉积物,原始深层含水层和石油污染的浅层含水层中富集并分离出来。用乙酸盐或甲苯作为电子给体,并用Fe(III)作为电子受体开始富集。用乙酸盐或苯甲酸盐进行隔离。分离出五种可以通过异化还原Fe(III)获得生长能量的新菌株。所有五个分离物都是革兰氏阴性严格厌氧菌,它们以乙酸盐作为电子供体,Fe(III)作为电子受体生长。对分离的生物的16S rRNA序列的分析表明,它们全部属于变形杆菌三角洲细分中的Geobacter属。与典型菌株Geobacter metallireducens不同,五个分离物中的三个可以使用H2作为还原Fe(III)的电子供体。深层地下分离物是第一种将乳酸完全氧化为二氧化碳的Fe(III)还原剂,而淡水沉积物分离物只是已知的第二种可氧化甲苯的Fe(III)还原剂。这些生物的分离表明,地球细菌物种广泛分布在多种沉积环境中,其中还原Fe(III)是一个重要过程。

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