Abstract
AbstractThis contribution applies the “mean temperature of the catch” (MTC) concept of Cheung et al. (Nature 497:365–368, 2013) to fish catch data for Lake Peipsi, Estonia/Russia, covering the years 1931 to 2019. The preferred temperature of each of the ten target fish species was obtained from the literature, and combined with the species-specific catch data to obtain MTC values for each year. The analysis of the MTC time series thus obtained with a segmented regression yielded two trend lines, one horizontal at 14.5 °C (1931–1986), and the other (1987–2019) ascending with a slope 0.85 °C·decade−1. Overall, the segmented regression model explains over half of the variance of the MTC data set (multiple R2 = 0.53; adjusted R2 = 0.51). Lake surface water temperatures correlate with MTC, even though weakly (r = 0.30), when considering a 2-year time lag. The fish community of the shallow Lake Peipsi reacts more strongly to temperature changes than marine ecosystems so far studied using the MTC.
Funder
Estonian Research Council
Estonian Research Council
Estonian Ministry of Education
Publisher
Springer Science and Business Media LLC
Subject
Aquatic Science,Ecology, Evolution, Behavior and Systematics
Reference41 articles.
1. Cheung WWL, Watson R, Pauly D (2013) Signature of ocean warming in global fisheries catch. Nature 497:365–368. https://doi.org/10.1038/nature12156
2. Craig LS, Olden JD, Arthington AH, Entrekin S, Hawkins CP, Kelly JJ, Wooten MS (2017) Meeting the challenge of interacting threats in freshwater ecosystems: a call to managers. Elementa: Science of the Anthropocene, 5, 72. https://doi.org/10.1525/elementa.256
3. Easterling DR, Meehl GA, Parmesan C, Changnon SA, Karl TR, Mearns LO (2000) Climate extremes: observations, modeling, and impacts. Science 289:2068–2074
4. Estonian Environment Agency. (2020). 2019/2020 aasta talv on esimene talv alates vaatlusajaloo algusest 1921. aastal kui Peipsil püsivat jääkatet ei tekkinud. www.keskkonnaagentuur.ee, 28 April 2020
5. Fink G, Burke S, Simis SGH, Kangur K, Kutser T, Mulligan M (2020) Management options to improve water quality in Lake Peipsi: insights from large scale models and remote sensing. Water Resour Manage 34:2241–2254. https://doi.org/10.1007/s11269-018-2156-5
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