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Reverse Sample Genome Probing a New Technique for Identification of Bacteria in Environmental Samples by DNA Hybridization and Its Application to the Identification of Sulfate-Reducing Bacteria in Oil Field Samples

机译:反向样品基因组探测一种通过DNA杂交鉴定环境样品中细菌的新技术及其在油田样品中硫酸盐还原菌的鉴定中的应用

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摘要

A novel method for the identification of bacteria in environmental samples by DNA hybridization is presented. It is based on the fact that, even within a genus, the genomes of different bacteria may have little overall sequence homology. This allows the use of the labeled genomic DNA of a given bacterium (referred to as a “standard”) to probe for its presence and that of bacteria with highly homologous genomes in total DNA obtained from an environmental sample. Alternatively, total DNA extracted from the sample can be labeled and used to probe filters on which denatured chromosomal DNA from relevant bacterial standards has been spotted. The latter technique is referred to as reverse sample genome probing, since it is the reverse of the usual practice of deriving probes from reference bacteria for analyzing a DNA sample. Reverse sample genome probing allows identification of bacteria in a sample in a single step once a master filter with suitable standards has been developed. Application of reverse sample genome probing to the identification of sulfate-reducing bacteria in 31 samples obtained primarily from oil fields in the province of Alberta has indicated that there are at least 20 genotypically different sulfate-reducing bacteria in these samples.
机译:提出了一种通过DNA杂交鉴定环境样品中细菌的新方法。基于这样的事实,即即使在一个属中,不同细菌的基因组也可能具有很少的整体序列同源性。这允许使用给定细菌的标记基因组DNA(称为“标准”)来探测其存在以及从环境样品中获得的总DNA中具有高度同源基因组的细菌的存在。或者,可以对从样品中提取的总DNA进行标记,并将其用于探测已发现来自相关细菌标准品的变性染色体DNA的过滤器。后一种技术称为反向样本基因组探测,因为它与从参考细菌中获取探针以分析DNA样本的常规做法相反。一旦开发出具有合适标准的主过滤器,反向样品基因组探测便可以在一个步骤中鉴定样品中的细菌。反向样品基因组探测在鉴定主要从艾伯塔省的油田获得的31个样品中鉴定硫酸盐还原细菌的应用表明,这些样品中至少有20种基因型不同的硫酸盐还原细菌。

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