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Quantification of Syntrophic Fatty Acid-β-Oxidizing Bacteria in a Mesophilic Biogas Reactor by Oligonucleotide Probe Hybridization

机译:寡核苷酸探针杂交定量测定嗜温沼气反应器中的同养脂肪酸-β-氧化细菌

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Small-subunit rRNA sequences were obtained for two saturated fatty acid-β-oxidizing syntrophic bacteria, Syntrophomonas sapovorans and Syntrophomonas wolfei LYB, and sequence analysis confirmed their classification as members of the family Syntrophomonadaceae. S. wolfei LYB was closely related to S. wolfei subsp. wolfei, butS. sapovorans did not cluster with the other members of the genus Syntrophomonas. Five oligonucleotide probes targeting the small-subunit rRNA of different groups within the familySyntrophomonadaceae, which contains all currently known saturated fatty acid-β-oxidizing syntrophic bacteria, were developed and characterized. The probes were designed to be specific at the family, genus, and species levels and were characterized by temperature-of-dissociation and specificity studies. To demonstrate the usefulness of the probes for the detection and quantification of saturated fatty acid-β-oxidizing syntrophic bacteria in methanogenic environments, the microbial community structure of a sample from a full-scale biogas plant was determined. Hybridization results with probes for syntrophic bacteria and methanogens were compared to specific methanogenic activities and microbial numbers determined with most-probable-number estimates. Most of the methanogenic rRNA was comprised of Methanomicrobiales rRNA, suggesting that members of this order served as the main hydrogen-utilizing microorganisms. Between 0.2 and 1% of the rRNA was attributed to theSyntrophomonadaceae, of which the majority was accounted for by the genus Syntrophomonas.
机译:获得了两个饱和脂肪酸-β-氧化的同养细菌Syntrophomonas sapovorans和Syntrophomonas wolfei LYB的小亚基rRNA序列,并且序列分析证实了它们被归类为滑膜单胞菌科的成员。 S. wolfei LYB与S.wolfei亚种密切相关。沃尔夫,但是。 sapovorans不与Syntrophomonas属的其他成员聚集。已经开发并鉴定了五种针对剑突科的不同亚群的小亚基rRNA的寡核苷酸探针,该探针包含所有目前已知的饱和脂肪酸-β-氧化性营养细菌。这些探针被设计为在家族,属和物种水平上具有特异性,并通过解离温度和特异性研究进行了表征。为了证明探针在产甲烷环境中检测和定量饱和脂肪酸-β-氧化同养细菌的有用性,确定了来自大型沼气厂的样品的微生物群落结构。将针对营养细菌和产甲烷菌的探针的杂交结果与特定产甲烷活性和微生物数进行比较,并用最可能数的估计值确定微生物数。大部分产甲烷的rRNA包含甲烷微细菌rRNA,这表明该顺序的成员充当了主要的氢利用微生物。 rRNA的0.2%到1%归因于剑风菌科,其中大部分由Syntrophomonas属引起。

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