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RivFishTIME: A global database of fish time‐series to study global change ecology in riverine systems

Lise Comte; Juan Carvajal‐Quintero; Pablo A. Tedesco; Xingli Giam; Ulrich Brose; Tibor Erős; Ana F. Filipe; Marie‐Josée Fortin; Katie Irving; Claire Jacquet; Stefano Larsen; Sapna Sharma; Albert Ruhi; Fernando G. Becker; Lilian Casatti; Giuseppe Castaldelli; Renato B. Dala‐Corte; Stephen R. Davenport; Nathan R. Franssen; Emili García‐Berthou; Anna Gavioli; Keith B. Gido; Luz Jimenez‐Segura; Rafael P. Leitão; Bill McLarney; Jason Meador; Marco Milardi; David B. Moffatt; Thiago V. T. Occhi; Paulo S. Pompeu; David L. Propst; Mark Pyron; Gilberto N. Salvador; Jerome A. Stefferud; Tapio Sutela; Christopher Taylor; Akira Terui; Hirokazu Urabe; Teppo Vehanen; Jean R. S. Vitule; Jaquelini O. Zeni; Julian D. Olden
Global Ecology and Biogeography · Vol. 30, Issue 1 · pp. 38-50 · 2021

Abstract

Motivation We compiled a global database of long‐term riverine fish surveys from 46 regional and national monitoring programmes and from individual academic research efforts, with which numerous basic and applied questions in ecology and global change research can be explored. Such spatially and temporally extensive datasets have been lacking for freshwater systems in comparison to terrestrial ones. Main types of variables contained The database includes 11,386 time‐series of riverine fish community catch data, including 646,270 species‐specific abundance records, together with metadata related to the geographical location and sampling methodology of each time‐series. Spatial location and grain The database contains 11,072 unique sampling locations (stream reach), spanning 19 countries, five biogeographical realms and 402 hydrographical basins world‐wide. Time period and grain The database encompasses the period 1951–2019. Each time‐series is composed of a minimum of two yearly surveys (mean = 8 years) and represents a minimum time span of 10 years (mean = 19 years). Major taxa and level of measurement The database includes 944 species of ray‐finned fishes (Class Actinopterygii). Software format csv. Main conclusion Our collective effort provides the most comprehensive long‐term community database of riverine fishes to date. This unique database should interest ecologists who seek to understand the impacts of human activities on riverine fish biodiversity and to model and predict how fish communities will respond to future environmental change. Together, we hope it will promote advances in macroecological research in the freshwater realm.

Bibliographic Information

JournalGlobal Ecology and Biogeography
PublisherWiley
Publication Date2021-01-01
Publication Year2021
Volume30
Issue1
Pages38-50
Document TypeJournal Article
Print ISSN1466-822X
eISSN1466-8238
DOI10.1111/geb.13210
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1998-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14668238
Publisher PageOpen Publisher Page
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