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Analysis of Bacteria Contaminating Ultrapure Water in Industrial Systems

机译:工业系统中细菌污染超纯水的分析

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Bacterial populations inhabiting ultrapure water (UPW) systems were investigated. The analyzed UPW systems included pilot scale, bench scale, and full size UPW plants employed in the semiconductor and other industries. Bacteria present in the polishing loop of the UPW systems were enumerated by both plate counts and epifluorescence microscopy. Assessment of bacterial presence in UPW by epifluorescence microscopy (cyanotolyl tetrazolium chloride [CTC] and DAPI [4′,6′-diamidino-2-phenylindole] staining) showed significantly higher numbers (10 to 100 times more bacterial cells were detected) than that determined by plate counts. A considerable proportion of the bacteria present in UPW (50 to 90%) were cells that did not give a positive signal with CTC stain. Bacteria isolated from the UPW systems were mostly gram negative, and several groups seem to be indigenous for all of the UPW production systems studied. These included Ralstonia pickettii, Bradyrhizobium sp., Pseudomonas saccharophilia, and Stenotrophomonas strains. These bacteria constituted a significant part of the total number of isolated strains (≥20%). Two sets of primers specific to R. pickettii and Bradyrhizobium sp. were designed and successfully used for the detection of the corresponding bacteria in the concentrated UPW samples. Unexpectedly, nifH gene sequences were found in Bradyrhizobium sp. and some P. saccharophilia strains isolated from UPW. The widespread use of nitrogen gas in UPW plants may be associated with the presence of nitrogen-fixing genes in these bacteria.
机译:研究了居住在超纯水(UPW)系统中的细菌种群。分析过的UPW系统包括中试规模,台式规模以及在半导体和其他行业中使用的全尺寸UPW工厂。通过板计数和落射荧光显微镜对UPW系统的抛光环中存在的细菌进行计数。通过落射荧光显微镜(氰基氯四唑氯化物[CTC]和DAPI [4',6'-二mid基-2-苯基吲哚]染色)评估UPW中细菌的存在,其数量显着更高(检测到的细菌细胞多10到100倍)由板数确定。 UPW中存在的细菌中相当一部分(50%至90%)是未通过CTC染色给出阳性信号的细胞。从UPW系统中分离出的细菌多数为革兰氏阴性,而且所有研究的UPW生产系统中似乎都有几类是本土细菌。这些包括Ralstonia pickettii,Bradyrhizobium sp。,假单胞菌嗜糖菌和嗜单胞菌菌株。这些细菌构成了分离菌株总数的重要组成部分(≥20%)。两组特定于R. pickettii和Bradyrhizobium sp。的引物。设计并成功用于浓缩UPW样品中相应细菌的检测。出乎意料的是,在Bradyrhizobium sp。中发现了nifH基因序列。以及从UPW中分离出的一些P. saccharophilia菌株。 UPW植物中氮气的广泛使用可能与这些细菌中固氮基因的存在有关。

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