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首页> 外文期刊>Applied and Environmental Microbiology >Distribution of the catabolic transposon Tn5271 in a groundwater bioremediation system.
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Distribution of the catabolic transposon Tn5271 in a groundwater bioremediation system.

机译:分解代谢转座子Tn5271在地下水生物修复系统中的分布。

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The distribution of Tn5271-related DNA sequences in samples of groundwater and a groundwater bioremediation system at the Hyde Park (Niagara Falls, N.Y.) chemical landfill site was investigated. PCR amplification of target sequences within the cha genes of Tn5271 revealed similar sequences in the groundwater community and in samples from the sequencing batch reactors treating that groundwater. Cell dilution combined with PCR amplification indicated that cha sequences were carried in about 1 of 10 culturable bacteria from the treatment system. Characterization of isolates involved in chlorobenzoate and toluene biodegradation in the treatment system indicated that two phenotypic clusters, Alcaligenes faecalis type 2 and CDC group IVC-2, contained all of the Tn5271 probe-positive isolates from the community. These two groups differed phenotypically from recipient groups isolated following horizontal transfer of pBRC60 (Tn5271) in pristine freshwater microcosms. A genetic rearrangement in Tn5271 attributable to the intramolecular transposition of the flanking element IS1071R was detected in an isolate from the treatment system. Comparison of the structure of the intramolecular transposition derivative from groundwater isolate OCC13(pBRC13) with a laboratory-derived intramolecular transposition derivative of pBRC60 revealed similarities. The rearrangement was shown to increase the stability of the plasmid under starvation conditions.
机译:研究了海德公园(纽约州尼亚加拉瀑布市)化学垃圾填埋场的地下水样品和地下水生物修复系统中Tn5271相关DNA序列的分布。对Tn5271的cha基因内目标序列的PCR扩增显示,在地下水群落中以及处理该地下水的测序间歇反应器样品中的序列相似。细胞稀释与PCR扩增相结合表明,处理系统中约有10个可培养细菌中的1个带有cha序列。处理系统中涉及氯苯甲酸酯和甲苯生物降解的分离株的表征表明,两个表型簇,即粪便产碱菌2型和CDC组IVC-2,包含了该群落的所有Tn5271探针阳性分离株。两组在表型上与原始淡水微观世界中水平转移pBRC60(Tn5271)后分离的受体组不同。在处理系统的分离物中检测到Tn5271的基因重排可归因于侧翼元件IS1071R的分子内转座。地下水分离物OCC13(pBRC13)分子内转座衍生物与实验室衍生的pBRC60分子内转座衍生物的结构比较显示出相似之处。已显示重排增加了在饥饿条件下质粒的稳定性。

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