Department of Environmental and Natural Resources Management, University of Ioannina, 2 Seferi St., 30100, Agrinio, Greece.
Extremophiles. 2012 Mar;16(2):285-96. doi: 10.1007/s00792-012-0429-0. Epub 2012 Jan 19.
The bacterial community structure of a chromium water bath, a chromium drainage waste system, a chromium pretreatment tank, and a trivalent chromium precipitation tank from the Hellenic Aerospace Industry S.A. was assessed using 16S rRNA libraries and a high-density DNA microarray (PhyloChip). 16S rRNA libraries revealed a bacterial diversity consisting of 14 distinct operational taxonomic units belonging to five bacterial phyla: Alphaproteobacteria, Betaproteobacteria, Gammaproteobacteria, Actinobacteria, and Bacteroidetes. However, employing a novel microarray-based approach (PhyloChip), a high bacterial diversity consisting of 30 different phyla was revealed, with representatives of 181 different families. This made it possible to identify a core set of genera present in all wastewater treatment stages examined, consisting of members of Alphaproteobacteria, Betaproteobacteria, Gammaproteobacteria, Deltaproteobacteria, Epsilonproteobacteria, and Bacteroidetes. In the chromium pretreatment tank, where the concentration of Cr(VI) is high (2.3 mg/l), we identified the presence of Pseudomonadales, Actinomycetales, and Enterobacteriales in abundance. In the chromium precipitation tank, where the concentration of Cr(III) is high, the dominant bacteria consortia were replaced by members of Rhodocyclales and Chloroflexi. The bacterial community structure changed significantly with changes in the chromium concentration. This in-depth analysis should prove useful for the design and development of improved bioremediation strategies.
采用 16S rRNA 文库和高密度 DNA 微阵列(PhyloChip)评估了来自 Hellenic Aerospace Industry S.A.的铬水浴、铬废水排放系统、铬预处理槽和三价铬沉淀槽的细菌群落结构。16S rRNA 文库揭示了一种细菌多样性,由属于五个细菌门的 14 个不同操作分类单元组成:α变形菌门、β变形菌门、γ变形菌门、放线菌门和拟杆菌门。然而,采用新型基于微阵列的方法(PhyloChip),揭示了一种由 30 个不同门组成的高细菌多样性,代表了 181 个不同的科。这使得有可能确定存在于所有检查的废水处理阶段的核心一组属,由α变形菌门、β变形菌门、γ变形菌门、δ变形菌门、ε变形菌门和拟杆菌门的成员组成。在铬预处理槽中,Cr(VI)浓度很高(2.3mg/l),我们发现假单胞菌目、放线菌目和肠杆菌目大量存在。在 Cr(III)浓度高的铬沉淀槽中,优势细菌群落被 Rhodocyclales 和 Chloroflexi 的成员所取代。细菌群落结构随着铬浓度的变化而显著改变。这种深入分析对于设计和开发改进的生物修复策略应该是有用的。