Estimating Occupancy and Abundance of Stream Amphibians Using Environmental DNA from Filtered Water Samples

Authors: David S Pilliod; Caren S Goldberg; R S Arkle; L P Waits
Contribution Number: 446
Abstract/Summary

Environmental DNA (eDNA) methods for detecting aquatic species are advancing rapidly, but with little evaluation of field protocols or precision of resulting estimates. We compared sampling results from traditional field methods with eDNA methods for two amphibians in 13 streams in central Idaho, USA. We also evaluated three water collection protocols and the influence of sampling location, time of day, and distance from animals on eDNA concentration in the water. We found no difference in detection or amount of eDNA among water collection protocols. eDNA methods had slightly higher detection rates than traditional field methods, particularly when species occurred at low densities. eDNA concentration was positively related to field-measured density, biomass, and proportion of transects occupied. Precision of eDNA-based abundance estimates increased with the amount of eDNA in the water and the number of replicate sub-samples collected, but eDNA concentration did not vary significantly with sample location in the stream, time of day, or distance downstream from animals. Our results further advance the implementation of eDNA methods for monitoring aquatic vertebrates in stream habitats.

Publication details
Published Date: 2013
Outlet/Publisher: Canadian Journal Fisheries and Aquatic Sciences 70:1123-1130
Media Format:

ARMI Organizational Units:
Pacific Northwest - Biology
Topics:
Monitoring and Population Ecology; Quantitative Developments
Place Names:
Idaho
Keywords:
amphibians; ARMI; detection; distribution; DNA; filter; genetics; methods; occupancy; primers; qPCR; stream; water
Notice: PDF documents require Adobe Reader or Google Chrome Browser (recommended) for viewing.