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Comparison of materials for rapid passive collection of environmental DNA

View ORCID ProfileCindy Bessey, Yuan Gao, Yen Bach Truong, View ORCID ProfileHaylea Miller, View ORCID ProfileSimon Neil Jarman, Oliver Berry
doi: https://doi.org/10.1101/2021.11.08.467842
Cindy Bessey
1Commonwealth Scientific and Industrial Research Organisation, Indian Oceans Marine Research Centre, Oceans and Atmosphere, 64 Fairway, Crawley, WA, 6009, Australia
2Commonwealth Scientific and Industrial Research Organization, Indian Oceans Marine Research Centre, Environomics Future Science Platform, 64 Fairway, Crawley, WA, 6009, Australia
3University of Western Australia, UWA Oceans Institute, 35 Stirling Highway, Crawley, WA, 6009, Australia
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  • For correspondence: Cindy.Bessey@csiro.au
Yuan Gao
4Commonwealth Scientific and Industrial Research Organization, Manufacturing, Research Way, Clayton, Vic, 3168, Australia
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Yen Bach Truong
4Commonwealth Scientific and Industrial Research Organization, Manufacturing, Research Way, Clayton, Vic, 3168, Australia
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Haylea Miller
2Commonwealth Scientific and Industrial Research Organization, Indian Oceans Marine Research Centre, Environomics Future Science Platform, 64 Fairway, Crawley, WA, 6009, Australia
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Simon Neil Jarman
3University of Western Australia, UWA Oceans Institute, 35 Stirling Highway, Crawley, WA, 6009, Australia
5University of Western Australia, School of Biological Sciences and the UWA Oceans Institute, 35 Stirling Highway, Crawley, WA, 6009, Australia
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Oliver Berry
2Commonwealth Scientific and Industrial Research Organization, Indian Oceans Marine Research Centre, Environomics Future Science Platform, 64 Fairway, Crawley, WA, 6009, Australia
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Abstract

Passive collection is an emerging sampling method for environmental DNA (eDNA) in aquatic systems. Passive eDNA collection is inexpensive, efficient, and requires minimal equipment, making it suited to high density sampling and remote deployment. Here, we compare the effectiveness of nine membrane materials for passively collecting fish eDNA from a 3 million litre marine mesocosm. We submerged materials (cellulose, cellulose with 1% and 3% chitosan, cellulose overlayed with electrospun nanofibers and 1% chitosan, cotton fibres, hemp fibres and sponge with either zeolite or active carbon) for intervals between five and 1080 minutes. We show that for most materials, with as little as five minutes submersion, mitochondrial fish eDNA measured with qPCR, and fish species richness measured with metabarcoding, was comparable to that collected by conventional filtering. Furthermore, PCR template DNA concentrations and species richness were generally not improved significantly by longer submersion. Species richness detected for all materials ranged between 11 to 37 species, with a median of 27, which was comparable to the range for filtered eDNA (19-32). Using scanning electron microscopy, we visualised biological matter adhered to the surface of materials, rather than entrapped, with images also revealing a diversity in size and structure of putative eDNA particles.

Environmental DNA can be collected rapidly from seawater with a passive approach and using a variety of materials. This will suit cost and time-sensitive biological surveys, and where access to equipment is limited.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted November 10, 2021.
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Comparison of materials for rapid passive collection of environmental DNA
Cindy Bessey, Yuan Gao, Yen Bach Truong, Haylea Miller, Simon Neil Jarman, Oliver Berry
bioRxiv 2021.11.08.467842; doi: https://doi.org/10.1101/2021.11.08.467842
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Comparison of materials for rapid passive collection of environmental DNA
Cindy Bessey, Yuan Gao, Yen Bach Truong, Haylea Miller, Simon Neil Jarman, Oliver Berry
bioRxiv 2021.11.08.467842; doi: https://doi.org/10.1101/2021.11.08.467842

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