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用于直接定量土壤中分枝杆菌的16S rRNA靶向夹心杂交法。

16S rRNA targeted sandwich hybridization method for direct quantification of mycobacteria in soils.

作者信息

Nieminen Timo, Pakarinen Jaakko, Tsitko Irina, Salkinoja-Salonen Mirja, Breitenstein Antje, Ali-Vehmas Terhi, Neubauer Peter

机构信息

Bioprocess Engineering Laboratory, Department of Process and Environmental Engineering and Biocenter Oulu, University of Oulu, Finland.

出版信息

J Microbiol Methods. 2006 Oct;67(1):44-55. doi: 10.1016/j.mimet.2006.02.015. Epub 2006 Apr 19.

Abstract

Boreal soils have been suspected reservoirs of infectious environmental mycobacteria. Detection of these bacteria in the environment is hampered by their slow growth. We applied a quantitative sandwich hybridization approach for direct detection of mycobacterial 16S rRNA in soil without a nucleic acid amplification step. The numbers of mycobacterial 16S rRNA molecules found in the soil indicated the presence of up to 10(7) to 10(8) mycobacterial cells per gram of soil. These numbers exceed by factor of 10 to 100 x the previous estimates of mycobacteria in soil based on culture methods. When real-time PCR with mycobacteria targeting primers was used to estimate the number of 16S rDNA copies in soil, one copy of 16S rDNA was detected per 10(4) copies of 16S rRNA. This is close to the number of 16S rRNA molecules detected per cell by the same method in laboratory pure cultures of M. chlorophenolicum. Therefore a major part of the mycobacterial DNA in the studied soils may thus have represented metabolically active cells. The 16S rRNA sandwich hybridization method described in this paper offers a culture independent solution for tracking environmental reservoirs of viable and potentially infectious mycobacteria.

摘要

北方土壤一直被怀疑是传染性环境分枝杆菌的储存库。这些细菌在环境中的检测因其生长缓慢而受到阻碍。我们应用了一种定量夹心杂交方法,无需核酸扩增步骤即可直接检测土壤中的分枝杆菌16S rRNA。在土壤中发现的分枝杆菌16S rRNA分子数量表明,每克土壤中存在多达10⁷至10⁸个分枝杆菌细胞。这些数量比之前基于培养方法对土壤中分枝杆菌的估计高出10至100倍。当使用针对分枝杆菌的引物进行实时PCR来估计土壤中16S rDNA拷贝数时,每10⁴个16S rRNA拷贝中检测到1个16S rDNA拷贝。这与在实验室中绿酚分枝杆菌纯培养物中通过相同方法检测到的每个细胞中的16S rRNA分子数量相近。因此,所研究土壤中分枝杆菌DNA的主要部分可能代表代谢活跃的细胞。本文所述的16S rRNA夹心杂交方法为追踪有活力且可能具有传染性的分枝杆菌的环境储存库提供了一种无需培养的解决方案。

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