Cost-effort analysis of Baited Remote Underwater Video (BRUV) and environmental DNA (eDNA) in monitoring marine ecological communities

Author:

Clark Alice J.1,Atkinson Sophie R.1,Scarponi Valentina1,Cane Tim2,Geraldi Nathan R.3,Hendy Ian W.4,Shipway J. Reuben5,Peck Mika1

Affiliation:

1. Department of Ecology & Evolution, School of Life Sciences, University of Sussex, Brighton, United Kingdom

2. Department of Geography, University of Sussex, Brighton, United Kingdom

3. NatureMetrics, Guildford, United Kingdom

4. School of Biological Science, University of Portsmouth, Portsmouth, United Kingdom

5. School of Biological and Marine Sciences, University of Plymouth, Plymouth, United Kingdom

Abstract

Monitoring the diversity and distribution of species in an ecosystem is essential to assess the success of restoration strategies. Implementing biomonitoring methods, which provide a comprehensive assessment of species diversity and mitigate biases in data collection, holds significant importance in biodiversity research. Additionally, ensuring that these methods are cost-efficient and require minimal effort is crucial for effective environmental monitoring. In this study we compare the efficiency of species detection, the cost and the effort of two non-destructive sampling techniques: Baited Remote Underwater Video (BRUV) and environmental DNA (eDNA) metabarcoding to survey marine vertebrate species. Comparisons were conducted along the Sussex coast upon the introduction of the Nearshore Trawling Byelaw. This Byelaw aims to boost the recovery of the dense kelp beds and the associated biodiversity that existed in the 1980s. We show that overall BRUV surveys are more affordable than eDNA, however, eDNA detects almost three times as many species as BRUV. eDNA and BRUV surveys are comparable in terms of effort required for each method, unless eDNA analysis is carried out externally, in which case eDNA requires less effort for the lead researchers. Furthermore, we show that increased eDNA replication yields more informative results on community structure. We found that using both methods in conjunction provides a more complete view of biodiversity, with BRUV data supplementing eDNA monitoring by recording species missed by eDNA and by providing additional environmental and life history metrics. The results from this study will serve as a baseline of the marine vertebrate community in Sussex Bay allowing future biodiversity monitoring research projects to understand community structure as the ecosystem recovers following the removal of trawling fishing pressure. Although this study was regional, the findings presented herein have relevance to marine biodiversity and conservation monitoring programs around the globe.

Funder

The Blue Marine Foundation

Sussex Wildlife Trust and NatureMetrics

Publisher

PeerJ

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