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Multi-decadal improvements in the ecological quality of European rivers are not consistently reflected in biodiversity metrics

  • James S. Sinclair
  • , Ellen A. R. Welti
  • , Florian Altermatt
  • , Mario Alvarez-Cabria
  • , Jukka Aroviita
  • , Nathan J. Baker
  • , Libuse Baresova
  • , Jose Barquin
  • , Luca Bonacina
  • , Nuria Bonada
  • , Miguel Canedo-Argueelles
  • , Zoltan Csabai
  • , Elvira de Eyto
  • , Alain Dohet
  • , Gerald Doerflinger
  • , Tor E. Eriksen
  • , Vesela Evtimova
  • , Maria J. Feio
  • , Martial Ferreol
  • , Mathieu Floury
  • Marie Anne Eurie Forio, Riccardo Fornaroli, Peter L. M. Goethals, Jani Heino, Daniel Hering, Kaisa-Leena Huttunen, Sonja C. Jaehnig, Richard K. Johnson, Lenka Kuglerova, Benjamin Kupilas, Lionel L'Hoste, Aitor Larranaga, Patrick Leitner, Armin W. Lorenz, Brendan G. McKie, Timo Muotka, Diana Osadcaja, Riku Paavola, Vaidas Palinauskas, Petr Paril, Francesca Pilotto, Marek Polasek, Jes J. Rasmussen, Ralf B. Schaefer, Astrid Schmidt-Kloiber, Alberto Scotti, Agnija Skuja, Michal Straka, Rachel Stubbington, Henn Timm, Violeta Tyufekchieva, Iakovos Tziortzis, Rudy Vannevel, Gabor Varbiro, Gaute Velle, Ralf C. M. Verdonschot, Sarah Vray, Peter Haase

Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

Sammanfattning

Humans impact terrestrial, marine and freshwater ecosystems, yet many broad-scale studies have found no systematic, negative biodiversity changes (for example, decreasing abundance or taxon richness). Here we show that mixed biodiversity responses may arise because community metrics show variable responses to anthropogenic impacts across broad spatial scales. We first quantified temporal trends in anthropogenic impacts for 1,365 riverine invertebrate communities from 23 European countries, based on similarity to least-impacted reference communities. Reference comparisons provide necessary, but often missing, baselines for evaluating whether communities are negatively impacted or have improved (less or more similar, respectively). We then determined whether changing impacts were consistently reflected in metrics of community abundance, taxon richness, evenness and composition. Invertebrate communities improved, that is, became more similar to reference conditions, from 1992 until the 2010s, after which improvements plateaued. Improvements were generally reflected by higher taxon richness, providing evidence that certain community metrics can broadly indicate anthropogenic impacts. However, richness responses were highly variable among sites, and we found no consistent responses in community abundance, evenness or composition. These findings suggest that, without sufficient data and careful metric selection, many common community metrics cannot reliably reflect anthropogenic impacts, helping explain the prevalence of mixed biodiversity trends. Analysing 27years of freshwater invertebrate biomonitoring data from European rivers, the authors show that although some commonly used biodiversity metrics can reflect anthropogenic impacts at broad spatial scales, there was little consistency among other metrics in accurately reflecting community responses.
OriginalspråkEngelska
Sidor (från-till)430-441
Antal sidor20
TidskriftNature ecology & evolution
Volym8
Nummer3
DOI
StatusPublicerad - 2024

FN:s SDG:er

Detta resultat bidrar till följande hållbara utvecklingsmål:

  1. SDG 14 – Hav och marina resurser
    SDG 14 – Hav och marina resurser
  2. SDG 15 – Ekosystem och biologisk mångfald
    SDG 15 – Ekosystem och biologisk mångfald

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