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Collection and Extraction of Occupational Air Samples for Analysis of Fungal DNA
Published on: May 2, 2018
Comparison of six extraction techniques for isolation of DNA from filamentous fungi
J A van Burik1, R W Schreckhise, T C White
1Program in Infectious Diseases, Fred Hutchinson Cancer Research Center, University of Washington, Seattle, USA. jvanburi@hcrc.org jvanburi@fhcrc.org
Abstract:
Filamentous fungi have a sturdy cell wall which is resistant to the usual DNA extraction procedures. We determined the DNA extraction procedure with the greatest yield of high quality fungal DNA and the least predilection for cross-contamination of equipment between specimens. Each of six extraction methods was performed using Aspergillus fumigatus hyphae. The six methods were: (1) glass bead pulverization with vortexing; (2) grinding with mortar and pestle followed by glass bead pulverization; (3) glass bead pulverization using 1% hydroxyacetyl trimethyl ammonium bromide (CTAB) buffer in a water bath sonicator; (4) water bath sonication in CTAB buffer; (5) grinding followed by incubation with CTAB; and (6) lyticase enzymatic cell lysis. Genomic DNA yields were measured by spectrophotometry and by visual reading of 2% agarose gels, with shearing assessed by the migration of the DNA on the gel. Genomic fungal DNA yields were highest for Method 1, followed by Methods 5 approximately = to 2 >3 approximately = to 4 approximately = to 6. Methods 2 and 5, both of which involved grinding with mortar and pestle, led to shearing of the genomic DNA in one of two trials each. We conclude that the use of glass beads with extended vortexing is optimal for extraction of microgramme amounts of DNA from filamentous fungal cultures.
Insights
Glass bead pulverization with vortexing is the optimal method for extracting high-quality fungal DNA from filamentous fungi. This technique yields the most DNA with minimal risk of cross-contamination, outperforming other tested methods.
Area of Science:
- Microbiology
- Molecular Biology
- Biotechnology
Background:
- Filamentous fungi possess robust cell walls, challenging standard DNA extraction protocols.
- Efficient DNA extraction is crucial for molecular studies involving fungal pathogens and industrial strains.
Purpose of the Study:
- To identify the most effective DNA extraction method for filamentous fungi.
- To maximize DNA yield and quality while minimizing cross-contamination.
Main Methods:
- Six DNA extraction methods were evaluated using Aspergillus fumigatus.
- Methods included glass bead pulverization, mortar and pestle grinding, sonication, enzymatic lysis, and CTAB buffer.
- DNA yield and quality were assessed via spectrophotometry and agarose gel electrophoresis.
Main Results:
- Glass bead pulverization with vortexing (Method 1) yielded the highest quantity of fungal DNA.
- Methods involving mortar and pestle grinding (Methods 2 and 5) resulted in DNA shearing in some trials.
- DNA yields for Methods 3, 4, and 6 were comparable and lower than Method 1.
Conclusions:
- Glass bead pulverization with extended vortexing is the superior method for extracting high-quality genomic DNA from filamentous fungi.
- This method provides optimal yields and reduces the risk of DNA shearing and cross-contamination.
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