Beach environmental DNA fills gaps in photographic biomonitoring to track spatiotemporal community turnover across 82 phyla
Meyer, R. S.; Schweizer, T. M.; Kwan, W.-Y.; Curd, E. E.; Wall, A.; Pentcheff, D.; Wetzer, R.; Beraut, E.; Young, A.; Johnson, R.; Wayne, R. K.
Show abstract
AbstractEnvironmental DNA (eDNA) metabarcoding is emerging as a biomonitoring tool available to the citizen science community that promises to augment or replace photographic observation. However, eDNA results and photographic observations have rarely been compared to document their individual or combined power. Here, we use eDNA multilocus metabarcoding, a method deployed by the CALeDNA Program, to inventory and evaluate biodiversity variation along the Pillar Point headland near Half Moon Bay, California. We describe variation in presence of 13,000 taxa spanning 82 phyla, analyze spatiotemporal patterns of beta diversity, and identify metacommunities. Inventory and measures of turnover across space and time from eDNA analysis are compared to the same measures from Global Biodiversity Information Facility (GBIF) data, which contain information largely contributed by iNaturalist photographic observations. We find eDNA depicts local signals with high seasonal turnover, especially in prokaryotes. We find a diverse community dense with pathogens and parasites in the embayment, and a State Marine Conservation Area (SMCA) with lower species richness than the rest of the beach peninsula, but with beta diversity signals showing resemblance to adjacent unprotected tidepools. The SMCA differs in observation density, with higher density of protozoans, and animals in Ascidiacea, Echinoidea, and Polycladida. Local contributions to beta diversity are elevated in a section of East-facing beach. GBIF observations are mostly from outside the SMCA, limiting some spatial comparisons. However, our findings suggest eDNA samples can link the SMCA sites to sites with better GBIF inventory, which may be useful for imputing species from one site given observations from another. Results additionally support >3800 largely novel biological interactions. This research, and accompanying interactive website support eDNA as a gap-filling tool to measure biodiversity that is available to community and citizen scientists.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Environmental DNA (eDNA) metabarcoding differentiates between micro-habitats within the rocky intertidal 96%
- Environmental DNA reveals invasive crayfish microbial associates and ecosystem-wide biodiversity before and after eradication 96%
- Environmental DNA in a Global Biodiversity Hotspot: Lessons from Coral Reef Fish Diversity Across the Indonesian Archipelago 95%
Similar papers in this journal
- Enhancing metabarcoding efficiency and ecological insights through integrated taxonomy and DNA reference barcoding: a case study on beach meiofauna 95%
- Unlocking Antarctic molecular time-capsules - recovering historical environmental DNA from museum-preserved sponges 95%
- Assessing the utility of marine filter feeders for environmental DNA (eDNA) biodiversity monitoring 94%
Similar papers in this journal
- Inferring species interactions from co-occurrence networks with environmental DNA metabarcoding data in a coastal marine food-web 95%
- Meta-analysis shows both congruence and complementarity of DNA metabarcoding to traditional methods for biological community assessment 94%
- Decision making and best practices for taxonomy-free eDNA metabarcoding in biomonitoring using Hill numbers 94%
Similar papers in this journal
- Millennial-scale change on a Caribbean reef system that experiences hypoxia 92%
- Temperature as a likely driver shaping global patterns in mineralogical composition in bryozoans: Implications for marine calcifiers under Global Change 92%
- Molecular analyses reveal consistent food web structure with elevation in rainforest Drosophila - parasitoid communities 91%
Similar papers in this journal
- Nuclear eDNA Metabarcoding Primers for Anthozoan Coral Biodiversity Assessment 96%
- eDNA metabarcoding shows highly diverse but distinct shallow, mid-water, and deep-water eukaryotic communities within a marine biodiversity hotspot 94%
- A Halo of Reduced Dinoflagellate Abundances In and Around Eelgrass Beds 94%
"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.