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使用宽范围(通用)探针和引物组通过实时聚合酶链反应测定细菌载量。

Determination of bacterial load by real-time PCR using a broad-range (universal) probe and primers set.

作者信息

Nadkarni Mangala A, Martin F Elizabeth, Jacques Nicholas A, Hunter Neil

机构信息

Institute of Dental Research, Westmead Centre For Oral Health, Westmead Hospital, PO Box 533, Wentworthville, NSW 2145, Australia1.

出版信息

Microbiology (Reading). 2002 Jan;148(Pt 1):257-266. doi: 10.1099/00221287-148-1-257.

Abstract

The design and evaluation of a set of universal primers and probe for the amplification of 16S rDNA from the Domain Bacteria to estimate total bacterial load by real-time PCR is reported. Broad specificity of the universal detection system was confirmed by testing DNA isolated from 34 bacterial species encompassing most of the groups of bacteria outlined in Bergey's Manual of Determinative Bacteriology. However, the nature of the chromosomal DNA used as a standard was critical. A DNA standard representing those bacteria most likely to predominate in a given habitat was important for a more accurate determination of total bacterial load due to variations in 16S rDNA copy number and the effect of generation time of the bacteria on this number, since rapid growth could result in multiple replication forks and hence, in effect, more than one copy of portions of the chromosome. The validity of applying these caveats to estimating bacterial load was confirmed by enumerating the number of bacteria in an artificial sample mixed in vitro and in clinical carious dentine samples. Taking these parameters into account, the number of anaerobic bacteria estimated by the universal probe and primers set in carious dentine was 40-fold greater than the total bacterial load detected by culture methods, demonstrating the utility of real-time PCR in the analysis of this environment.

摘要

本文报道了一组通用引物和探针的设计与评估,该引物和探针用于从细菌域扩增16S rDNA,以通过实时PCR估计细菌总载量。通过检测从34种细菌中分离的DNA,证实了通用检测系统的广泛特异性,这些细菌涵盖了《伯杰氏鉴定细菌学手册》中概述的大多数细菌类别。然而,用作标准的染色体DNA的性质至关重要。由于16S rDNA拷贝数的变化以及细菌世代时间对该数量的影响,代表给定栖息地中最可能占主导地位的那些细菌的DNA标准对于更准确地确定细菌总载量很重要,因为快速生长可能导致多个复制叉,从而实际上导致染色体部分的多个拷贝。通过枚举体外混合的人工样品和临床龋损牙本质样品中的细菌数量,证实了应用这些注意事项来估计细菌载量的有效性。考虑到这些参数,通用探针和引物组在龋损牙本质中估计的厌氧菌数量比培养方法检测到的细菌总载量高40倍,证明了实时PCR在该环境分析中的实用性。

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