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Development and evaluation of methods to detect coliphages in large volumes of water

机译:开发和评估检测大量水中大肠杆菌的方法

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New and improved methods have been developed to detect somatic and male-specific coliphages in large volumes of water by single agar layer (SAL), enrichment and membrane filter methods. Somatic coliphages were detected efficiently on E coli hosts C and CN 13, male-specific coliphages were detected more efficiently on E.coli F-amp than on Salmonella typhimurium WG49 and both types of coliphages were detected simultaneously on E coli C3000. For water volumes of up to 100 ml, the SAL method was efficient and reliable. For water volumes of < 1 L and as many as 10 multiple 1 L volumes, the enrichment method was efficient in detecting very low numbers of coliphages. Membrane filter methods, in which coliphages were adsorbed to and eluted from filters, also were relatively efficient, but they were less efficient than SAL and enrichment methods and were considered to be more cumbersome. For filter adsorption-elution methods, coliphage recoveries were most efficient for cellulose ester filters, less efficient for electropositive 1 MDS filters and least efficient for a direct membrane filter method. Overall, the enrichment method was preferred because of its ability to easily and rapidly detect low levels of coliphages in large sample volumes by either presence-absence or most probable number quantification.
机译:通过单琼脂层(SAL),富集和膜过滤方法,已经开发出新的和改进的方法来检测大量水中的体细胞和雄性特异性噬菌体。在大肠杆菌宿主C和CN 13上能有效检测到体细胞噬菌体,在大肠杆菌F-amp上比鼠伤寒沙门氏菌WG49上能更有效地检测到男性特异性噬菌体,并且在大肠杆菌C3000上同时检测到两种类型的噬菌体。对于不超过100毫升的水,SAL方法是有效而可靠的。对于小于1 L的水体积和多达10多个1 L体积的水,富集方法可有效检测非常少量的大肠杆菌。膜过滤器方法相对有效,但其中的噬菌体被吸附到过滤器上并从过滤器中洗脱出来,但效率不如SAL和富集方法,并且被认为比较麻烦。对于过滤器吸附-洗脱方法,对于纤维素酯过滤器,大肠菌的回收率最高,对于正电1 MDS过滤器,效率低下,对于直接膜过滤器方法,效率最低。总体而言,优选富集方法,因为它能够通过不存在或最可能的数量定量轻松快速地检测大量样品中低水平的噬菌体。

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