Assessing the use of RIVPACS-derived invertebrate taxonomic predictions for river management
Johnson, A. M.; Murray-Bligh, J.; Brown, L. M.; Milner, A.; Klaar, M.
Show abstract
The River Invertebrate Prediction and Classification System (RIVPACS) is used widely in freshwater management to set targets for macroinvertebrate ecological health based on the expected scores of metrics such as WHPT or LIFE in the absence of anthropogenic stressors. An underutilised capability of RIVPACS-type models is the capability to predict expected macroinvertebrate community composition, which could function as a novel management metric for river health. We present a novel Monte-Carlo simulation approach that generates simulated expected communities for Englands rivers based on RIVPACS predictions. This allows for assessments of macroinvertebrate health using similarity calculations between observed and expected communities. We assess 10-year trends in similarity between 2010 and 2019 at 4172 sites in England, and contrast these trends with WHPT ASPT O/E trends in the same period. Similarity scores include both Chi-Squared and Hellinger methods, to prioritise rare and common species, respectively. We find that whilst most sites (63.3%) showed improvement in WHPT ASPT O/E in this period, most sites showed declines in similarity for Chi-Squared and Hellinger O/E (51.1% and 58.8%, respectively). We identified three case study regions showing contrasting trends and illustrate how the new RIVPACS-derived similarity calculations can track meaningful shifts in composition associated with water quality and multiple stressors including invasive species. RIVPACS-derived similarity calculations potentially provide a sensitive and practical management metric to assess ecosystem health, although further work is required to understand the composition of communities in changing environments with clear changes in stressor regimes.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Metabarcoding unsorted kick-samples facilitates macroinvertebrate-based biomonitoring with increased taxonomic resolution, while outperforming environmental DNA 96%
- Seasonal changes in fish eDNA signal vary between contrasting river types 95%
- eDNA in a bottleneck: obstacles to fish metabarcoding studies in megadiverse freshwater systems 94%
Similar papers in this journal
- Proving a negative; estimating species 'Confidence in Absence for Decision-Making' (CIADM) using environmental DNA monitoring 95%
- Simulating drying and human impacts on river networks to evaluate biological quality indices performance through the lens of metacommunity theory 94%
- A globally influential area-condition metric is a poor proxy for invertebrate biodiversity 93%
Similar papers in this journal
- SSP: An R package to estimate sampling effort in studies of ecological communities 94%
- Multiple stressors in river networks: local and downstream effects on freshwater macroinvertebrates 94%
- An Rshiny app for modelling environmental DNA data: accounting for false positive and false negative observation error. 91%
Similar papers in this journal
Similar papers in this journal
- Phylogenetic diversity efficiently and accurately prioritizes the conservation of aquatic macroinvertebrate communities 97%
- Forecasting the effects of water regulation on the population viability of a threatened amphibian 93%
- Let's Do the Time Warp Again: Non-linear time series matching as a tool for sequentially structured data in ecology 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.