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Structural and Functional Dynamics of Sulfate-Reducing Populations in Bacterial Biofilms

机译:细菌生物膜中硫酸盐还原种群的结构和功能动力学。

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摘要

We describe the combined application of microsensors and molecular techniques to investigate the development of sulfate reduction and of sulfate-reducing bacterial populations in an aerobic bacterial biofilm. Microsensor measurements for oxygen showed that anaerobic zones developed in the biofilm within 1 week and that oxygen was depleted in the top 200 to 400 μm during all stages of biofilm development. Sulfate reduction was first detected after 6 weeks of growth, although favorable conditions for growth of sulfate-reducing bacteria (SRB) were present from the first week. In situ hybridization with a 16S rRNA probe for SRB revealed that sulfate reducers were present in high numbers (approximately 108 SRB/ml) in all stages of development, both in the oxic and anoxic zones of the biofilm. Denaturing gradient gel electrophoresis (DGGE) showed that the genetic diversity of the microbial community increased during the development of the biofilm. Hybridization analysis of the DGGE profiles with taxon-specific oligonucleotide probes showed that Desulfobulbus and Desulfovibrio were the main sulfate-reducing bacteria in all biofilm samples as well as in the bulk activated sludge. However, different Desulfobulbus and Desulfovibrio species were found in the 6th and 8th weeks of incubation, respectively, coinciding with the development of sulfate reduction. Our data indicate that not all SRB detected by molecular analysis were sulfidogenically active in the biofilm.
机译:我们描述了微传感器和分子技术的结合应用,以研究有氧细菌生物膜中硫酸盐还原和硫酸盐还原细菌种群的发展。氧气的微传感器测量表明,在生物膜形成的所有阶段中,厌氧区在1周内在生物膜中形成,并且顶部200至400μm的氧气被耗尽。尽管从生长的第一周开始就存在着减少硫酸盐还原细菌(SRB)的有利条件,但在生长6周后首次检测到硫酸盐还原。用16S rRNA探针对SRB进行原位杂交表明,在生物膜的有氧和无氧区域的所有发育阶段,硫酸盐还原剂均大量存在(约10 8 SRB / ml)。 。变性梯度凝胶电泳(DGGE)表明,在生物膜形成过程中,微生物群落的遗传多样性增加了。 DGGE图谱与分类单元特异性寡核苷酸探针的杂交分析表明,在所有生物膜样品以及大量活性污泥中,脱硫球菌和脱硫弧菌是减少硫酸盐的主要细菌。然而,在孵化的第6周和第8周分别发现了不同的Desulfobulbus和Desulfovibrio菌种,这与硫酸盐还原的发展相吻合。我们的数据表明,并非所有通过分子分析检测到的SRB都在生物膜中具有硫化活性。

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