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All Outputs (3)

Environmental DNA reveals ecologically relevant spatial and temporal variation in fish assemblages between estuaries and seasons (2024)
Journal Article
Gibson, T. I., Baillie, C., Collins, R. A., Wangensteen, O. S., Corrigan, L., Ellison, A., …Mariani, S. (2024). Environmental DNA reveals ecologically relevant spatial and temporal variation in fish assemblages between estuaries and seasons. Ecological Indicators, 165, Article 112215. https://doi.org/10.1016/j.ecolind.2024.112215

Estuarine ecosystems are threatened by numerous anthropogenic pressures. Fish assemblages are a dominant component of estuarine macrofauna and serve as indicators for the health of these transitional water ecosystems. Environmental DNA (eDNA) metabar... Read More about Environmental DNA reveals ecologically relevant spatial and temporal variation in fish assemblages between estuaries and seasons.

Improving environmental DNA (eDNA) methods for the detection and monitoring of invasive Dreissenid mussels (2024)
Thesis
Peixoto, S. P. F. (2024). Improving environmental DNA (eDNA) methods for the detection and monitoring of invasive Dreissenid mussels. (Thesis). University of Hull. Retrieved from https://hull-repository.worktribe.com/output/4706368

Dreissenid bivalves, zebra mussel (Dreissena polymorpha, Pallas, 1771) and quagga mussel (Dreissena rostriformis bugensis, Andrusov, 1897), are small freshwater molluscs native to the Ponto-Caspian region in Eastern Europe. Increasing globalization h... Read More about Improving environmental DNA (eDNA) methods for the detection and monitoring of invasive Dreissenid mussels.

An integrated spatio-temporal view of riverine biodiversity using environmental DNA metabarcoding (2024)
Journal Article
Perry, W., Seymour, M., Orsini, L., Jâms, I. B., Milner, N., Edwards, F., …Creer, S. (2024). An integrated spatio-temporal view of riverine biodiversity using environmental DNA metabarcoding. Nature communications, 15(1), Article 4372. https://doi.org/10.1038/s41467-024-48640-3

Anthropogenically forced changes in global freshwater biodiversity demand more efficient monitoring approaches. Consequently, environmental DNA (eDNA) analysis is enabling ecosystem-scale biodiversity assessment, yet the appropriate spatio-temporal r... Read More about An integrated spatio-temporal view of riverine biodiversity using environmental DNA metabarcoding.