Emerging threats and persistent conservation challenges for freshwater biodiversity

Новые угрозы и сохраняющиеся проблемы охраны биоразнообразия пресных вод
Steven J. Cooke, Andrea J. Reid, Irena F. Creed, Klement Tockner, Julian D. Olden, David Dudgeon, S. J. Ormerod, Tyson J. MacCormack, John P. Smol, Erika J. Eliason, Andrew K. Carlson, Peter Gell, Pieter T. J. Johnson, Karen A. Kidd, William W. Taylor, Jesse C. Vermaire
2018-11-22

emerging threatsenvironmental DNAfreshwater biodiversityfreshwater ecosystemsmicroplastic pollution
In the 12 years since Dudgeon et al. (2006) reviewed major pressures on freshwater ecosystems, the biodiversity crisis in the world's lakes, reservoirs, rivers, streams and wetlands has deepened. While lakes, reservoirs and rivers cover only 2.3% of the Earth's surface, these ecosystems host at least 9.5% of the Earth's described animal species. Furthermore, using the World Wide Fund for Nature's Living Planet Index, freshwater population declines (83% between 1970 and 2014) continue to outpace contemporaneous declines in marine or terrestrial systems. The Anthropocene has brought multiple new and varied threats that disproportionately impact freshwater systems. We document 12 emerging threats to freshwater biodiversity that are either entirely new since 2006 or have since intensified: (i) changing climates; (ii) e-commerce and invasions; (iii) infectious diseases; (iv) harmful algal blooms; (v) expanding hydropower; (vi) emerging contaminants; (vii) engineered nanomaterials; (viii) microplastic pollution; (ix) light and noise; (x) freshwater salinisation; (xi) declining calcium; and (xii) cumulative stressors. Effects are evidenced for amphibians, fishes, invertebrates, microbes, plants, turtles and waterbirds, with potential for ecosystem-level changes through bottom-up and top-down processes. In our highly uncertain future, the net effects of these threats raise serious concerns for freshwater ecosystems. However, we also highlight opportunities for conservation gains as a result of novel management tools (e.g. environmental flows, environmental DNA) and specific conservation-oriented actions (e.g. dam removal, habitat protection policies, managed relocation of species) that have been met with varying levels of success. Moving forward, we advocate hybrid approaches that manage fresh waters as crucial ecosystems for human life support as well as essential hotspots of biodiversity and ecological function. Efforts to reverse global trends in freshwater degradation now depend on bridging an immense gap between the aspirations of conservation biologists and the accelerating rate of species endangerment.
1
Conservation opportunities include environmental flows, environmental DNA, dam removal, habitat protection, and managed species relocation, although their success has varied.
2
Freshwater ecosystems cover only 2.3% of Earth’s surface but support at least 9.5% of described animal species, making them disproportionately important biodiversity hotspots.
3
Freshwater populations declined by 83% between 1970 and 2014, outpacing contemporaneous biodiversity declines in marine and terrestrial systems.
4
The authors advocate managing fresh waters simultaneously as essential human life-support systems and as biodiversity and ecological-function hotspots.
5
The review identifies 12 emerging or intensifying threats, including climate change, biological invasions, diseases, contaminants, microplastics, salinisation, declining calcium, and cumulative stressors.
6
These threats affect diverse freshwater taxa and may drive ecosystem-level changes through both bottom-up and top-down ecological processes.

Freshwater ecosystems and their biodiversity, including lakes, reservoirs, rivers, streams and wetlands

Emerging and persistent threats, their impacts, and conservation challenges for freshwater biodiversity

Publication Details
Publication Date
2018-11-22
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Authors
Steven J. Cooke
Andrea J. Reid
Irena F. Creed
Klement Tockner
Julian D. Olden
David Dudgeon
S. J. Ormerod
Tyson J. MacCormack
John P. Smol
Erika J. Eliason
Andrew K. Carlson
Peter Gell
Pieter T. J. Johnson
Karen A. Kidd
William W. Taylor
Jesse C. Vermaire
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