Author
Listed:
- Yu-Chun Kao
(Michigan State University)
- Mark W. Rogers
(Tennessee Technological University)
- David B. Bunnell
(Great Lakes Science Center)
- Ian G. Cowx
(University of Hull)
- Song S. Qian
(University of Toledo)
- Orlane Anneville
(Université Savoie Mont Blanc-INRAE)
- T. Douglas Beard
(National Climate Adaptation Science Center)
- Alexander Brinker
(Fisheries Research Station of Baden-Württemberg)
- J. Robert Britton
(Bournemouth University)
- René Chura-Cruz
(Instituto del Mar del Perú)
- Natasha J. Gownaris
(Gettysburg College)
- James R. Jackson
(Cornell University)
- Külli Kangur
(Estonian University of Life Sciences)
- Jeppe Kolding
(University of Bergen)
- Anatoly A. Lukin
(Ministry of Agriculture of Russia)
- Abigail J. Lynch
(National Climate Adaptation Science Center)
- Norman Mercado-Silva
(Universidad Autónoma del Estado de Morelos)
- Rodrigo Moncayo-Estrada
(Instituto Politécnico Nacional-CICIMAR and COFAA)
- Friday J. Njaya
(Malawi Department of Fisheries)
- Ilia Ostrovsky
(Kinneret Limnological Laboratory)
- Lars G. Rudstam
(Cornell University)
- Alfred L. E. Sandström
(Swedish University of Agricultural Sciences)
- Yuichi Sato
(Lake Biwa Environmental Research Institute)
- Humberto Siguayro-Mamani
(Instituto del Mar del Perú)
- Andy Thorpe
(University of Portsmouth)
- Paul A. M. Zwieten
(Wageningen University)
- Pietro Volta
(CNR Water Research Institute)
- Yuyu Wang
(Beijing Forestry University)
- András Weiperth
(Institute of Aquaculture and Environmental Safety, Department of Aquaculture, Szent István University)
- Olaf L. F. Weyl
(South African Institute for Aquatic Biodiversity)
- Joelle D. Young
(Ontario Ministry of the Environment, Conservation and Parks)
Abstract
Globally, our knowledge on lake fisheries is still limited despite their importance to food security and livelihoods. Here we show that fish catches can respond either positively or negatively to climate and land-use changes, by analyzing time-series data (1970–2014) for 31 lakes across five continents. We find that effects of a climate or land-use driver (e.g., air temperature) on lake environment could be relatively consistent in directions, but consequential changes in a lake-environmental factor (e.g., water temperature) could result in either increases or decreases in fish catch in a given lake. A subsequent correlation analysis indicates that reductions in fish catch was less likely to occur in response to potential climate and land-use changes if a lake is located in a region with greater access to clean water. This finding suggests that adequate investments for water-quality protection and water-use efficiency can provide additional benefits to lake fisheries and food security.
Suggested Citation
Yu-Chun Kao & Mark W. Rogers & David B. Bunnell & Ian G. Cowx & Song S. Qian & Orlane Anneville & T. Douglas Beard & Alexander Brinker & J. Robert Britton & René Chura-Cruz & Natasha J. Gownaris & Jam, 2020.
"Effects of climate and land-use changes on fish catches across lakes at a global scale,"
Nature Communications, Nature, vol. 11(1), pages 1-14, December.
Handle:
RePEc:nat:natcom:v:11:y:2020:i:1:d:10.1038_s41467-020-14624-2
DOI: 10.1038/s41467-020-14624-2
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Citations
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Cited by:
- Temitope Adewale & Denis Aheto & Isaac Okyere & Olufemi Soyinka & Samuel Dekolo, 2024.
"Effects of Anthropogenic Activities on Sardinella maderensis (Lowe, 1838) Fisheries in Coastal Communities of Ibeju-Lekki, Lagos, Nigeria,"
Sustainability, MDPI, vol. 16(7), pages 1-22, March.
- Ly, Sophanna & Uk, Sovannara & Theng, Vouchlay & Kaing, Vinhteang & Yoshimura, Chihiro, 2024.
"Integration of life cycle and habitat conditions in modeling fish biomass in the floodplain of the Lower Mekong Basin,"
Ecological Modelling, Elsevier, vol. 488(C).
- Piwońska, Kalina, 2021.
"The Concept Of Eco-Efficiency In Fisheries. A Literature Review,"
Roczniki (Annals), Polish Association of Agricultural Economists and Agribusiness - Stowarzyszenie Ekonomistow Rolnictwa e Agrobiznesu (SERiA), vol. 2021(4).
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