用于杂交和PCR分析的土壤DNA快速纯化方法。

R Dijkmans, A Jagers, S Kreps, J M Collard, M Mergeay
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引用次数: 0

摘要

利用点杂交和PCR技术对土壤中微生物DNA进行监测是了解环境中释放的转基因微生物的生存和影响的一种有用技术。大多数从土壤中分离DNA的方法需要大量的纯化步骤,使得它们不适合对多个样品进行定量分析。在这里,我们描述了一种非常快速的分离和纯化土壤DNA样品的方法,可以直接用于点杂交和PCR分析。土壤DNA提取液采用溶菌酶/SDS处理,pH为9.0,经乙酸铵沉淀和Sephadex G50凝胶过滤纯化。在该方法的实际应用中,在沙土样品中播种Alcaligenes富营养化细胞,并暴露于高温(42℃)或干燥环境中。结果,土壤样品中可培养的富营养化芽孢杆菌的数量迅速下降。然而,编码抗镉、钴和锌的标记基因(czc)的浓度保持不变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid method for purification of soil DNA for hybridization and PCR analysis.

Monitoring of microbial DNA in soils by dot blot hybridization and PCR analysis is a useful technique for gaining insight into the survival and impact of genetically modified micro-organisms released in the environment. Most methods of DNA isolation from soils require a large number of purification steps rendering them unsuitable for quantitative analysis of multiple samples. Here we describe a very rapid method for the isolation and purification of multiple samples of soil DNA that can be used directly for dot blot hybridization and PCR analysis. Soil DNA extracts are prepared by lysozyme/SDS treatment at pH 9.0 and purified by ammonium acetate precipitation and Sephadex G50 gel filtration. In a practical application of this method, sandy soil samples were seeded with Alcaligenes eutrophus cells and exposed to high temperature (42 degrees C) or desiccation. As a result, the number of culturable A. eutrophus cells which could be recovered from the soil samples quickly declined. However, the concentration of a marker gene encoding resistance to cadmium, cobalt and zinc (czc) remained unaltered.

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