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The Science of the Total Environment|July 28, 2022
Key factors to consider in the use of environmental DNA metabarcoding to monitor terrestrial ecological restorationMieke van der Heyde, Michael Bunce, Paul Nevill
Molecular Ecology Resources|October 24, 2025
Airborne DNA and Spider Webs Outperform Other eDNA Sources for Monitoring Terrestrial VertebratesJoshua P Newton, Morten E Allentoft, Philip W Bateman, et al.
Evolutionary Applications|July 23, 2021
Association of putatively adaptive genetic variation with climatic variables differs between a parasite and its hostSheree J Walters, Todd P Robinson, Margaret Byrne, et al.
Iscience|March 27, 2024
Spider webs capture environmental DNA from terrestrial vertebratesJoshua P Newton, Paul Nevill, Philip W Bateman, et al.
Molecular Ecology|July 5, 2020
Contrasting patterns of local adaptation along climatic gradients between a sympatric parasitic and autotrophic tree speciesSheree J Walters, Todd P Robinson, Margaret Byrne, et al.
Conservation Biology : the Journal of the Society for Conservation Biology|May 15, 2023
Use of carrion fly iDNA metabarcoding to monitor invasive and native mammalsKristen Fernandes, Philip W Bateman, Benjamin J Saunders, et al.
BMC Research Notes|December 19, 2023
On a roll: a direct comparison of extraction methods for the recovery of eDNA from roller swabbing of surfacesAustin M Guthrie, Paul Nevill, Christine E Cooper, et al.
Molecular Ecology Resources|February 18, 2020
Testing multiple substrates for terrestrial biodiversity monitoring using environmental DNA metabarcodingMieke van der Heyde, Michael Bunce, Grant Wardell-Johnson, et al.
Oecologia|September 13, 2022
DNA metabarcoding identifies urban foraging patterns of oligolectic and polylectic cavity-nesting beesKristen Fernandes, Kit Prendergast, Philip W Bateman, et al.
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