Abstract
A single universal open protocol RIAM (named after Research Institute for Agricultural Microbiology) for the isolation of high purity DNA from different types of soils and other substrates (high and low in humic, clay content, organic fertilizer, etc.) is proposed. The main features of the RIAM protocol are the absence of the sorption–desorption stage on silica columns, the use of high concentrations of phosphate in buffers, which prevents DNA sorption on minerals, and DNA precipitation using CTAB. The performance of RIAM was compared with a reference commercial kit and showed very good results in relation to the purity and quantity of DNA, as well as the absence of inhibitory activity on PCR. In all cases, the RIAM ensured the isolation of DNA in quantities much greater than the commercial kit without the effect of PCR inhibition up to 50 ng DNA per reaction in a volume of 15 µL. The latter circumstance along with the ability of the protocol to extract low molecular weight DNA fractions makes the method especially suitable for those cases where quantitative assessments, detection of minor components of soil microbiota, and completeness of isolation of all DNA fractions are required.
Funder
the Ministry of Science and Higher Education of the Russian Federation
“Genomic Technologies, Proteomics and Cell Biology” of ARRIAM
Subject
Biochemistry, Genetics and Molecular Biology (miscellaneous),Structural Biology,Biotechnology
Reference39 articles.
1. Guerra, V., Beule, L., Lehtsaar, E., Liao, H.L., and Karlovsky, P. (2020). Improved protocol for DNA extraction from subsoils using phosphate lysis buffer. Microorganisms, 8.
2. Optimization of subsampling, decontamination, and DNA extraction of difficult peat and silt permafrost samples;Neuberger;Sci. Rep.,2020
3. EDNA Extraction protocol for metagenomic studies in tropical soils;Biotechniques,2021
4. Sakai, Y. (2021). Improvements in extraction methods of high-molecular-weight DNA from soils by modifying cell lysis conditions and reducing adsorption of DNA onto soil particles. Microbes Environ., 36.
5. Adsorption of DNA on Clay Minerals and Various Colloidal Particles from an Alfisol;Cai;Soil. Biol. Biochem.,2006
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