Temperature effects induced by climate change on the growth and consumption by salmonines in Lakes Michigan and Huron

被引:0
|
作者
Yu-Chun Kao
Charles P. Madenjian
David B. Bunnell
Brent M. Lofgren
Marjorie Perroud
机构
[1] University of Michigan,School of Natural Resources and Environment
[2] U. S. Geological Survey,Great Lakes Environmental Research Laboratory
[3] Great Lakes Science Center,Cooperative Institute for Limnology and Ecosystems Research
[4] National Oceanic and Atmospheric Administration,Climate Division
[5] University of Michigan,undefined
[6] Federal Office for the Environment,undefined
来源
Environmental Biology of Fishes | 2015年 / 98卷
关键词
Climate change; Bioenergetics models; Salmonines; Lake michigan; Lake huron;
D O I
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中图分类号
学科分类号
摘要
We used bioenergetics models to investigate temperature effects induced by climate change on the growth and consumption by Chinook salmon Oncorhynchus tshawytscha, lake trout Salvelinus namaycush, and steelhead O. mykiss in Lakes Michigan and Huron. We updated biological inputs to account for recent changes in the food webs and used temperature inputs in response to regional climate observed in the baseline period (1964–1993) and projected in the future period (2043–2070). Bioenergetics simulations were run across multiple age-classes and across all four seasons in different scenarios of prey availability. Due to the increased capacity of prey consumption, future growth and consumption by these salmonines were projected to increase substantially when prey availability was not limited. When prey consumption remained constant, future growth of these salmonines was projected to decrease in most cases but increase in some cases where the increase in metabolic cost can be compensated by the decrease in waste (egestion and excretion) loss. Consumption by these salmonines was projected to increase the most during spring and fall when prey energy densities are relatively high. Such seasonality benefits their future growth through increasing annual gross energy intake. Our results indicated that lake trout and steelhead would be better adapted to the warming climate than Chinook salmon. To maintain baseline growth into the future, an increase of 10 % in baseline prey consumption was required for Chinook salmon but considerably smaller increases, or no increases, in prey consumption were needed by lake trout and steelhead.
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页码:1089 / 1104
页数:15
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