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Molecular analysis of microbial diversity in corrosion samples from energy transmission towers

机译:能量传输塔腐蚀样品中微生物多样性的分子分析

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Microbial diversity in corrosion samples from energy transmission towers was investigated using molecular methods. Ribosomal DNA fragments were used to assemble gene libraries. Sequence analysis indicated 10 bacterial genera within the phyla Proteobacteria, Firmicutes, Actinobacteria and Bacteroidetes. In the two libraries generated from corroded screw-derived samples, the genus Acinetobacter was the most abundant. Acinetobacter and Clostridium spp. dominated, with similar percentages, in the libraries derived from corrosion scrapings. Fungal clones were affiliated with 14 genera belonging to the phyla Ascomycota and Basidiomycota; of these, Capnobotryella and Fellomyces were the most abundant fungi observed. Several of the microorganisms had not previously been associated with biofilms and corrosion, reinforcing the need to use molecular techniques to achieve a more comprehensive assessment of microbial diversity in environmental samples.
机译:使用分子方法研究了来自能量传输塔的腐蚀样品中的微生物多样性。核糖体DNA片段用于组装基因文库。序列分析表明,门菌中有10个细菌属,包括Proteobacteria,Fimicutes,Actinobacteria和Bacteroidetes。在从腐蚀的螺丝衍生样品生成的两个文库中,不动杆菌属最丰富。不动杆菌和梭状芽胞杆菌。在由腐蚀刮屑衍生的库中,以相似的百分比占主导地位。真菌克隆与14个属分别属于子囊菌和担子菌属。其中,Capnobotryella和Fellomyces是观察到的最丰富的真菌。某些微生物以前没有与生物膜和腐蚀相关联,这增加了使用分子技术对环境样品中微生物多样性进行更全面评估的必要性。

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