DNA fingerprinting of crude bacterial lysates using degenerate RAPD primers.

S A Sakallah, R W Lanning, D L Cooper
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引用次数: 21

Abstract

Methods for identifying isolates of various pathogenic bacteria by DNA fingerprinting with random primers (RAPD) have been described recently. In these methods many primers are screened and the primers that generate the most informative DNA pattern are selected. A new strategy that simplifies the primer selection process for RAPD fingerprinting has been developed in our laboratory. In this approach, one or more degenerate nucleotides is introduced into the core RAPD primer sequence at various nucleotide positions. Results show that a single degenerate nucleotide in the primer sequence can significantly change the DNA profile obtained for the same template. The more removed the degenerate nucleotide is from the 3' end of the primer, the less dramatic is its effect on banding pattern. This method utilizing degenerate RAPD (D-RAPD) primers was tested on clinical isolates of Legionella pneumoniae, and results were confirmed with nondegenerate RAPD primers. Results obtained with D-RAPD primers were in total agreement with those obtained with nondegenerate RAPD primers. We propose that the use of a core RAPD primer sequence with one or more degenerate nucleotide(s) at various positions can expedite the generation of unique DNA fingerprints individual organisms. A general method for selecting the most useful fingerprinting RAPD primers is discussed.

利用退化RAPD引物对细菌裂解物进行DNA指纹图谱分析。
近年来,利用随机引物DNA指纹图谱(RAPD)对多种病原菌进行鉴定的方法越来越多。在这些方法中,筛选了许多引物,并选择了产生信息量最大的DNA模式的引物。本实验室开发了一种简化RAPD指纹图谱引物选择过程的新策略。在这种方法中,在核心RAPD引物序列的不同核苷酸位置上引入一个或多个简并核苷酸。结果表明,引物序列中的单个简并核苷酸可以显著改变同一模板的DNA谱。从引物的3'端移除的简并核苷酸越多,其对带型的影响就越小。利用退化RAPD (D-RAPD)引物对临床分离的肺炎军团菌进行了实验,结果与非退化RAPD引物一致。用D-RAPD引物得到的结果与用非简并RAPD引物得到的结果完全一致。我们提出,使用在不同位置具有一个或多个简并核苷酸的核心RAPD引物序列可以加速个体生物独特DNA指纹的产生。讨论了选择最有用的RAPD指纹引物的一般方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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