The natural control of salmon and trout populations in streams
This paper reviews current understanding of factors controlling salmonid populations in streams and how this contributes to better fisheries management. Salmonid populations are regulated by density-dependent mortality, typically during the early stages of free-living life after fry emerge from spaw...
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Published in | Fisheries research Vol. 62; no. 2; pp. 111 - 125 |
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Main Authors | , , , , , |
Format | Journal Article Conference Proceeding |
Language | English |
Published |
Amsterdam
Elsevier B.V
01.05.2003
Elsevier |
Subjects | |
Online Access | Get full text |
ISSN | 0165-7836 1872-6763 |
DOI | 10.1016/S0165-7836(02)00157-1 |
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Abstract | This paper reviews current understanding of factors controlling salmonid populations in streams and how this contributes to better fisheries management. Salmonid populations are regulated by density-dependent mortality, typically during the early stages of free-living life after fry emerge from spawning gravels. After the early regulatory phase, mortality is controlled mainly by density-independent factors. The relative contributions of density-dependent and density-independent factors to population variability are outlined, noting the special importance of environmental impacts such as flow and temperature extremes. Stock–recruitment relationships are discussed, with an emphasis on understanding the uncertainties and risks inherent in modelling wild populations. Key subjects for future research are identified. The challenge for science in the future lies in two areas: first, incorporating uncertainties into population modelling and management decision making, and second improving the understanding of processes regulating populations through long term studies. |
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AbstractList | This paper reviews current understanding of factors controlling salmonid populations in streams and how this contributes to better fisheries management. Salmonid populations are regulated by density-dependent mortality, typically during the early stages of free-living life after fry emerge from spawning gravels. After the early regulatory phase, mortality is controlled mainly by density-independent factors. The relative contributions of density-dependent and density-independent factors to population variability are outlined, noting the special importance of environmental impacts such as flow and temperature extremes. Stock–recruitment relationships are discussed, with an emphasis on understanding the uncertainties and risks inherent in modelling wild populations. Key subjects for future research are identified. The challenge for science in the future lies in two areas: first, incorporating uncertainties into population modelling and management decision making, and second improving the understanding of processes regulating populations through long term studies. |
Author | Armstrong, J.D. Welton, J.S. Milner, N.J. Elliott, J.M. Ladle, M. Gardiner, R. |
Author_xml | – sequence: 1 givenname: N.J. surname: Milner fullname: Milner, N.J. email: nigel.milner@environment-agency.gov.uk organization: National Salmon and Trout Fisheries Centre, Environment Agency, 29 Newport Road, Cardiff CF24 0TP, UK – sequence: 2 givenname: J.M. surname: Elliott fullname: Elliott, J.M. organization: Freshwater Biological Association, The Ferry House, Far Sawrey, Ambleside LA22 0LP, UK – sequence: 3 givenname: J.D. surname: Armstrong fullname: Armstrong, J.D. organization: Fisheries Research Services, Fisheries Laboratory, Faskally, Pitlochry, Perthshire PH16 5LB, UK – sequence: 4 givenname: R. surname: Gardiner fullname: Gardiner, R. organization: Fisheries Research Services, Fisheries Laboratory, Faskally, Pitlochry, Perthshire PH16 5LB, UK – sequence: 5 givenname: J.S. surname: Welton fullname: Welton, J.S. organization: CEH Dorset, Dorset, Winfrith Technology Centre, Winfrith Newburgh, Dorchester DT28ZD, UK – sequence: 6 givenname: M. surname: Ladle fullname: Ladle, M. organization: CEH Dorset, Dorset, Winfrith Technology Centre, Winfrith Newburgh, Dorchester DT28ZD, UK |
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Keywords | Density-independence Salmo trutta Stock–recruitment Salmo salar Population dynamics Management Variation Density-dependence Salmonidae Population management Mortality Review Freshwater environment Vertebrata Fishery Pisces Population recruitment Stream Density dependence Population density Stock Stock-recruitment |
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SubjectTerms | Animal, plant and microbial ecology Applied ecology Biological and medical sciences Density-dependence Density-independence Exploitation and management of natural biological resources (hunting, fishing and exploited populations survey, etc.) Freshwater Fundamental and applied biological sciences. Psychology Management Population dynamics Salmo salar Salmo trutta Salmonidae Stock–recruitment Variation |
Title | The natural control of salmon and trout populations in streams |
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