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《环境科学与工程前沿(英文)》 >> 2015年 第9卷 第3期 doi: 10.1007/s11783-014-0679-4

Modified pretreatment method for total microbial DNA extraction from contaminated river sediment

1. Guangdong Institute of Microbiology, Guangzhou 510070, China.2. School of Minerals Processing and Bioengineering, Central South University, Changsha 410083, China.3. Key Laboratory of Biometallurgy of Ministry of Education, Changsha 410083, China.4. State Key Laboratory of Applied Microbiology (Ministry-Guangdong Province Jointly Breeding Base), Guangzhou 510070, China.5. Department of Civil & Environmental Engineering, Center for Sustainable Development & Global Competitiveness, Stanford University, Stanford, CA94305, USA

录用日期: 2014-03-14 发布日期: 2015-04-30

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摘要

Extraction of high-quality microbial DNA from contaminated environmental samples is an essential step in microbial ecological study. Based on previously published methods for soil and sediment samples, a modified pretreatment method was developed for extracting microbial DNA from heavily contaminated river sediment samples via selection of optimal pretreatment parameters (i.e., reagent solution, reaction duration, and temperature). The pretreatment procedure involves washing the river sediment sample for three times with a solution containing 0.1 mol·L ethylene diamine tetraacetic acid (EDTA), 0.1 mol·L Tris (pH 8.0), 1.5 mol·L NaCl, 0.1 mol·L NaH PO , and Na HPO at 65°C with 180 r·min for 15 min to remove humic materials and heavy metals prior to the employment of standard DNA extraction procedures. We compared the results of standard procedure DNA extraction following pretreatment, without pretreatment, and with using a commercial PowerSoil DNA Isolation Kit. The results indicated that the pretreatment significantly improved the DNA quality based on DNA yield, DNA fragment length, and determination of prokaryotic diversity. Prokaryotic diversity exhibited in the DNA with the pretreatment was also considerably higher than that extracted with the PowerSoil DNA Isolation Kit only. The pretreatment method worked well even with a small amount of sediment sample (0.25 g or even lower). The method provides a novel, simple, cost-effective tool for DNA extraction for microbial community analysis in environmental monitoring and remediation processes.

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