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Bacterial diversity of the cultivable fraction of a marine electroactive biofilm

机译:海洋电活性生物膜可培养部分的细菌多样性

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Stainless steel electrodes were cathodically polarized at -200 mV versus an Ag/AgCl reference electrode in natural seawater in order to produce current The current increased and stabilized at 0.5 A/m(2) in less than 10 days The cultivable fraction of the microbial biofilm population formed on the surface of the current harvesting cathodes was examined by culture dependent techniques Three hundred fifty six isolates were obtained They were primarily characterized by whole cell fatty acid methyl ester analysis followed by 16S rRNA gene sequencing The results showed that the isolates represented different phylogenetic groups including members of the Alpha- and Gammaproteobacteria, the phylum Firmicutes, the family Flavobacteriacae and the phylum Actinobacteria Denaturing gradient gel electrophoresis demonstrated that the microbial population of the biofilm formed on the cathode and of the surrounding seawater comprised the same dominant members This study demonstrated that the cultivable microbial fraction of a marine electroactive biofilm is phylogenetically highly diverse
机译:不锈钢电极在天然海水中相对于Ag / AgCl参比电极在-200 mV上发生阴极极化,以产生电流电流在不到10天的时间内增加并稳定在0.5 A / m(2)微生物生物膜的可培养部分通过培养依赖性技术检查了在当前收获阴极表面上形成的菌群。获得了356株菌株,它们的主要特征是通过全细胞脂肪酸甲酯分析,然后进行16S rRNA基因测序。结果表明,这些菌株代表了不同的系统发育包括α-和γ-变形杆菌,硬毛门,黄杆菌科和放线菌门的组变性梯度凝胶电泳表明,在阴极和周围海水中形成的生物膜的微生物群也包含相同的主要成员。那可耕种的海洋电活性生物膜的微生物部分在系统发育上高度多样

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