Multiple anthropogenic forces have pushed river ecosystems into undesirable states with no clear understanding of how they should be best managed. The advancement of riverine fish habitat models intended to provide management insights has slowed. Investigations into theoretical and empirical gaps to define habitat more comprehensively across different scales and ecological organizations are crucial in managing the freshwater biodiversity crisis. We introduce the concept of novel riverscapes to reconcile anthropogenic forcing, fish habitat, limitations of current fish habitat models, and opportunities for new models. We outline three priority data-driven opportunities that incorporate the novel riverscape concept: fish movement, river behavior, and drivers of novelty that all are integrated into a scale-based framework to guide the development of new models. Last, we present a case study showing how researchers, model developers, and practitioners can work collaboratively to implement the novel riverscape concept.

Fish habitat models for a future of novel riverscapes / Hansen, Henry H; Comoglio, Claudio; Elings, Jelger; Ericsson, Philip; Goethals, Peter; Gosselin, Marie-Pierre; Hölker, Franz; Katopodis, Christos; Kemp, Paul; Lind, Lovisa; Mawer, Rachel; Mozzi, Gloria; Nestler, John M; Piccolo, John; Radinger, Johannes; Schneider, Matthias; Stoilova, Velizara; Wegscheider, Bernhard; Bergman, Eva. - In: BIOSCIENCE. - ISSN 0006-3568. - 74:9(2024), pp. 624-639. [10.1093/biosci/biae081]

Fish habitat models for a future of novel riverscapes

Comoglio, Claudio;Mozzi, Gloria;
2024

Abstract

Multiple anthropogenic forces have pushed river ecosystems into undesirable states with no clear understanding of how they should be best managed. The advancement of riverine fish habitat models intended to provide management insights has slowed. Investigations into theoretical and empirical gaps to define habitat more comprehensively across different scales and ecological organizations are crucial in managing the freshwater biodiversity crisis. We introduce the concept of novel riverscapes to reconcile anthropogenic forcing, fish habitat, limitations of current fish habitat models, and opportunities for new models. We outline three priority data-driven opportunities that incorporate the novel riverscape concept: fish movement, river behavior, and drivers of novelty that all are integrated into a scale-based framework to guide the development of new models. Last, we present a case study showing how researchers, model developers, and practitioners can work collaboratively to implement the novel riverscape concept.
2024
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2999807