The effect of silica desiccation under different storage conditions on filter-immobilized environmental DNA
Abstract Objective Silica gel beads have promise as a non-toxic, cost-effective, portable method for storing environmental DNA (eDNA) immobilized on filter membranes. Consequently, many ecological surveys are turning to silica bead filter desiccation rather than ethanol preservation. However, no sys...
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doaj-794ce385df834c31804837e4f45790a52021-03-21T12:44:20ZengBMCBMC Research Notes1756-05002021-03-011411610.1186/s13104-021-05530-xThe effect of silica desiccation under different storage conditions on filter-immobilized environmental DNAMichael J. Allison0Jessica M. Round1Lauren C. Bergman2Ali Mirabzadeh3Heather Allen4Aron Weir5Caren C. Helbing6Department of Biochemistry and Microbiology, University of VictoriaDepartment of Biochemistry and Microbiology, University of VictoriaDepartment of Biochemistry and Microbiology, University of VictoriaBureau Veritas LaboratoriesBureau Veritas LaboratoriesBureau Veritas LaboratoriesDepartment of Biochemistry and Microbiology, University of VictoriaAbstract Objective Silica gel beads have promise as a non-toxic, cost-effective, portable method for storing environmental DNA (eDNA) immobilized on filter membranes. Consequently, many ecological surveys are turning to silica bead filter desiccation rather than ethanol preservation. However, no systematic evaluation of silica bead storage conditions or duration past 1 week has been published. The present study evaluates the quality of filter-immobilized eDNA desiccated with silica gel under different storage conditions for over a year using targeted quantitative real-time polymerase chain reaction (qPCR)-based assays. Results While the detection of relatively abundant eDNA target was stable over 15 months from either ethanol- or silica gel-preserved filters at − 20 and 4 °C, silica gel out-performed ethanol preservation at 23 °C by preventing a progressive decrease in eDNA sample quality. Silica gel filter desiccation preserved low abundance eDNA equally well up to 1 month regardless of storage temperature (18, 4, or − 20 °C). However only storage at − 20 °C prevented a noticeable decrease in detectability at 5 and 12 months. The results indicate that brief storage of eDNA filters with silica gel beads up to 1 month can be successfully accomplished at a range of temperatures. However, longer-term storage should be at − 20 °C to maximize sample integrity.https://doi.org/10.1186/s13104-021-05530-xEnvironmental DNAFilterLong-term storageSilica gel beadsEthanolQuantitative real time polymerase chain reaction |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Michael J. Allison Jessica M. Round Lauren C. Bergman Ali Mirabzadeh Heather Allen Aron Weir Caren C. Helbing |
spellingShingle |
Michael J. Allison Jessica M. Round Lauren C. Bergman Ali Mirabzadeh Heather Allen Aron Weir Caren C. Helbing The effect of silica desiccation under different storage conditions on filter-immobilized environmental DNA BMC Research Notes Environmental DNA Filter Long-term storage Silica gel beads Ethanol Quantitative real time polymerase chain reaction |
author_facet |
Michael J. Allison Jessica M. Round Lauren C. Bergman Ali Mirabzadeh Heather Allen Aron Weir Caren C. Helbing |
author_sort |
Michael J. Allison |
title |
The effect of silica desiccation under different storage conditions on filter-immobilized environmental DNA |
title_short |
The effect of silica desiccation under different storage conditions on filter-immobilized environmental DNA |
title_full |
The effect of silica desiccation under different storage conditions on filter-immobilized environmental DNA |
title_fullStr |
The effect of silica desiccation under different storage conditions on filter-immobilized environmental DNA |
title_full_unstemmed |
The effect of silica desiccation under different storage conditions on filter-immobilized environmental DNA |
title_sort |
effect of silica desiccation under different storage conditions on filter-immobilized environmental dna |
publisher |
BMC |
series |
BMC Research Notes |
issn |
1756-0500 |
publishDate |
2021-03-01 |
description |
Abstract Objective Silica gel beads have promise as a non-toxic, cost-effective, portable method for storing environmental DNA (eDNA) immobilized on filter membranes. Consequently, many ecological surveys are turning to silica bead filter desiccation rather than ethanol preservation. However, no systematic evaluation of silica bead storage conditions or duration past 1 week has been published. The present study evaluates the quality of filter-immobilized eDNA desiccated with silica gel under different storage conditions for over a year using targeted quantitative real-time polymerase chain reaction (qPCR)-based assays. Results While the detection of relatively abundant eDNA target was stable over 15 months from either ethanol- or silica gel-preserved filters at − 20 and 4 °C, silica gel out-performed ethanol preservation at 23 °C by preventing a progressive decrease in eDNA sample quality. Silica gel filter desiccation preserved low abundance eDNA equally well up to 1 month regardless of storage temperature (18, 4, or − 20 °C). However only storage at − 20 °C prevented a noticeable decrease in detectability at 5 and 12 months. The results indicate that brief storage of eDNA filters with silica gel beads up to 1 month can be successfully accomplished at a range of temperatures. However, longer-term storage should be at − 20 °C to maximize sample integrity. |
topic |
Environmental DNA Filter Long-term storage Silica gel beads Ethanol Quantitative real time polymerase chain reaction |
url |
https://doi.org/10.1186/s13104-021-05530-x |
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