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Use of the polymerase chain reaction in detection of culturable and nonculturable Vibrio vulnificus cells.

机译:聚合酶链反应在检测可培养和不可培养的弧菌弧菌细胞中的用途。

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摘要

Vibrio vulnificus is a human pathogen associated with consumption of raw oysters. During the colder months the organism apparently enters a viable but nonculturable state and thus cannot be cultured by ordinary bacteriological methods. For this reason, another means of detecting this bacterium is necessary. In the present study we utilized the polymerase chain reaction (PCR) to detect V. vulnificus DNA, thus eliminating the problem of nonculturability. DNA from both culturable and nonculturable cells of V. vulnificus was amplified by PCR with primers flanking a 340-bp fragment of the cytotoxin-hemolysin gene. As little as 72 pg of DNA from culturable cells and 31 ng of DNA from nonculturable cells could be detected. Fifty cycles of a two-step reaction (30 s [each] at 94 and 65 degrees C) were found to be optimal as well as more time efficient than the three-step PCR. The total procedure from the point of DNA extraction to observation on a gel required less than 8 h. Possible reasons for the difficulties encountered in amplifying DNA from nonculturable cells, e.g., gene rearrangement or loss of the hemolysin gene, are discussed.
机译:创伤弧菌是与食用生牡蛎有关的人类病原体。在较冷的月份中,该生物显然进入了一种存活但不可培养的状态,因此无法通过普通的细菌学方法进行培养。因此,需要另一种检测该细菌的方法。在本研究中,我们利用聚合酶链反应(PCR)检测V. vulnificus DNA,从而消除了不可培养性的问题。通过PCR扩增来自V. vulnificus的可培养和不可培养细胞的DNA,其引物的侧翼是细胞毒素溶血素基因的340 bp片段。可以检测到来自可培养细胞的低至72 pg DNA和来自不可培养细胞的31 ng DNA。与三步PCR相比,两步反应的五十个周期(在94和65摄氏度下30 s [每个] 30秒)是最佳的,而且时间效率更高。从DNA提取到在凝胶上观察的整个过程需要不到8小时。讨论了从不可培养的细胞扩增DNA时遇到困难的可能原因,例如基因重排或溶血素基因的丢失。

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