Climate effects on growth, phenology, and survival of sockeye salmon (Oncorhynchus nerka): a synthesis of the current state of knowledge and future research directions

被引:0
作者
Eduardo G. Martins
Scott G. Hinch
Steven J. Cooke
David A. Patterson
机构
[1] University of British Columbia,Department of Forest Sciences, Centre for Applied Conservation Research
[2] University of British Columbia,Institute for Resources, Environment and Sustainability
[3] Carleton University,Fish Ecology and Conservation Physiology Laboratory, Department of Biology
[4] Simon Fraser University,Fisheries and Oceans Canada, Cooperative Resource Management Institute, School of Resource and Environmental Management
来源
Reviews in Fish Biology and Fisheries | 2012年 / 22卷
关键词
Anadromous salmon; Climate warming; Cumulative impacts; Global warming; Salmonids; Thermal effects;
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学科分类号
摘要
Sockeye salmon (Oncorhynchus nerka) is one of the most iconic and valued species of Pacific salmon. Various studies have examined the potential effects of future climate change on sockeye salmon, but there is currently no synthesis of the documented effects of climate on this species. In this paper, we present a synthesis of 80 peer-reviewed publications in the English language evaluating the effects of climate on sockeye salmon growth, phenology, and survival. The great majority of studies examined have been conducted with stocks from North America (90 % of studies). Survival (55 %) has been the most frequently studied aspect of the sockeye salmon life history in relation to climate, followed by growth (45 %) and phenology (30 %), with temperature (83.4 %) being the climate-related variable most frequently examined in such studies. Across life stages, the effects of climate-related variables have been most frequently studied on fry (36.3 %) and least studied on spawners (7.5 %). Our synthesis revealed that associations between temperature and growth, phenology, or survival have been uncovered for all the life stages of sockeye salmon, whereas relationships with other climate-related variables have been sparse. There is substantial evidence that sockeye salmon are influenced by thermal conditions experienced at regional, rather than ocean- or continental-wide scales, and that responses to temperature vary among and within stocks. The mechanisms by which climate affect sockeye salmon during the early stages in freshwater and while at sea are still poorly understood and warrant future research. More research on the effects of non-temperature, climate-related variables (e.g. stream flow, ocean pH), inter-generational and carry-over effects of climate, interaction between climate and non-climate stressors, and adaptation to climate change are also needed. Such information will be critical to advance our understanding of how sockeye salmon stocks will fare with future climate change.
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页码:887 / 914
页数:27
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  • [1] Abdul-Aziz OI(2011)Potential climate change impacts on thermal habitats of Pacific salmon ( Can J Fish Aquat Sci 68 1660-1680
  • [2] Mantua NJ(1996) spp.) in the North Pacific Ocean and adjacent seas Fish Oceanogr 5 137-152
  • [3] Myers KW(2011)Alternative models of climatic effects on sockeye salmon, J Agric Biol Environ Stat 16 282-300
  • [4] Adkison MD(2007), productivity in Bristol Bay, Alaska, and the Fraser River, British Columbia Rev Fish Sci 15 75-167
  • [5] Peterman RM(1989)Functional data analysis in ecosystem research: the decline of Oweekeno Lake sockeye salmon and Wannock River flow Can J Zool 67 2081-2089
  • [6] Lapointe MF(1990)Understanding the complexity of catch-and-release in recreational fishing: an integrative synthesis of global knowledge from historical, ethical, social, and biological perspectives Trans Am Fish Soc 119 927-945
  • [7] Gillis DM(1993)Variation in developmental biology of sockeye salmon ( Can J Fish Aquat Sci 50 1002-1016
  • [8] Korman J(1997)) and chinook salmon ( Can J Fish Aquat Sci 54 543-554
  • [9] Ainsworth LM(1999)) in British Columbia Can J Fish Aquat Sci 56 516-526
  • [10] Routledge R(2004)Temperature, egg size, and development of embryos and alevins of five species of Pacific salmon: a comparative analysis Trans Am Fish Soc 133 1396-1412