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Identification and environmental detection of Rhodococcus species by 16S rDNA-targeted PCR

机译:通过16S rDNA靶向PCR鉴定红球菌种类及环境检测。

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Bacteria of the genus Rhodococcus can degrade a wide range of organic pollutants and catalyse many useful biotransformations. There is a need for improved tests to identify Rhodococcus species. PCR-based methods for species identification offer advantages in terms of speed and accuracy over traditional methods and can allow direct detection of microbes in environmental samples., PCR tests, using primers targeted at species-specific sequences in the 16S rRNA gene, were successfully developed for R. globerulus, R. erythropolis, R. opacus and R. ruber. These tests gave positive results with all or most strains of target species but did not generally cross-react with other species. Cases of apparent cross-reaction were shown to be due to prior misclassification of strains of R. opacus as R. erythropolis and of strains of R. ruber as R. rhodochrous. A simple and rapid method for the extraction and purification of DNA from soil was developed and successfully applied to the PCR detection of indigenous R. erythropolis in an environmental sample. Cell lysis in the samples was achieved by lysozyme and sarkosyl treatment, aided by freeze-thaw cycles. Removal of humic compounds inhibitory to PCR was accomplished by CTAB treatment with solvent extraction and, if necessary, passage of extracts through Sepharose CL-6B in a spun-column format. Extracts prepared using a tris-EDTA buffer were much clearer than those prepared using a sodium phosphate buffer, indicating lower levels of humic compounds. A detection limit of 10~4 cfu g~(-1) of soil was achieved and the use of a secondary PCR allowed detection of 1 cfu g~(-1).
机译:红球菌属的细菌可以降解多种有机污染物,并催化许多有用的生物转化。需要改进的测试以鉴定红球菌的种类。基于PCR的物种鉴定方法在速度和准确性方面优于传统方法,并且可以直接检测环境样品中的微生物。成功开发了针对16S rRNA基因中物种特异性序列的引物进行PCR试验适用于全球球茎,红球菌,不透明球菌和橡胶。这些测试对所有或大多数目标物种菌株均给出了阳性结果,但通常不会与其他物种交叉反应。明显的交叉反应的情况表明是由于先前不正确地将不透明芽孢杆菌菌株分类为红红芽孢杆菌和将红曲霉菌株分类为Rhodochrous。开发了一种简单快速的从土壤中提取和纯化DNA的方法,并将其成功地用于环境样品中PCR的检测。样品中的细胞裂解通过溶菌酶和沙克糖基处理,并通过冻融循环进行。去除对PCR抑制的腐殖质化合物是通过CTAB处理(使用溶剂萃取)完成的,必要时将萃取物以离心柱形式通过Sepharose CL-6B。使用tris-EDTA缓冲液制备的提取物比使用磷酸钠缓冲液制备的提取物更清晰,表明腐殖质化合物含量较低。土壤的检出限达到了10〜4 cfu g〜(-1),使用二次PCR可以检测到1 cfu g〜(-1)。

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