The biology and ecology of slimy sculpin: A recipe for effective environmental monitoring
Recently, the use of small-bodied fish in environmental monitoring has increased, particularly within the Canadian environmental effects monitoring (EEM) and other adaptive programs. Although it is possible to measure changes with many small-bodied species, interpretation is often complicated by the...
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doaj-172146cefa194c74ba578804da439c942020-11-25T02:45:10ZengCanadian Science PublishingFACETS2371-16712371-16712018-02-01310312710.1139/facets-2017-0069The biology and ecology of slimy sculpin: A recipe for effective environmental monitoringMichelle A. Gray0R. Allen Curry1Tim J. Arciszewski2Kelly R. Munkittrick3Sandra M. Brasfield4Faculty of Forestry and Environmental Management & Canadian Rivers Institute, University of New Brunswick, Fredericton, NB E3B 5A3, Canada.Faculty of Forestry and Environmental Management & Canadian Rivers Institute, University of New Brunswick, Fredericton, NB E3B 5A3, Canada.Alberta Energy Regulator, Calgary, AB T2P 0R4, Canada.Wilfrid Laurier University, Waterloo, ON N2L 3C5, Canada.Environmental Laboratory, US Army Engineer Research and Development Center, Vicksburg, MS 39180, USA.Recently, the use of small-bodied fish in environmental monitoring has increased, particularly within the Canadian environmental effects monitoring (EEM) and other adaptive programs. Although it is possible to measure changes with many small-bodied species, interpretation is often complicated by the absence of information on the biology and ecology of fish not of commercial, recreational, or traditional interest. Knowing and understanding the basic biology of these fishes aids in the sensitivity of study designs (i.e., ability to detect change) and the interpretation of all biological levels of responses (e.g., cellular to community). The increased use of slimy sculpin (Cottus cognatus Richardson, 1836) in impact assessment studies in North America provides a considerable amount of information on life history aspects. The slimy sculpin has the most ubiquitous North American distribution among cottids but yet has a very small home range, thus integrating environmental conditions of localized areas. This paper describes aspects of slimy sculpin life cycle that affect collection efficiency and timing, and describes and provides data collected over more than 10 years of studies at more than 20 reference study sites. This overview provides a functional and informative compilation to support adaptive environmental monitoring and provide a baseline for comparative ecological study.http://www.facetsjournal.com/doi/10.1139/facets-2017-0069slimy sculpinenvironmental effects monitoringsentinel speciesfreshwater monitoring |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Michelle A. Gray R. Allen Curry Tim J. Arciszewski Kelly R. Munkittrick Sandra M. Brasfield |
spellingShingle |
Michelle A. Gray R. Allen Curry Tim J. Arciszewski Kelly R. Munkittrick Sandra M. Brasfield The biology and ecology of slimy sculpin: A recipe for effective environmental monitoring FACETS slimy sculpin environmental effects monitoring sentinel species freshwater monitoring |
author_facet |
Michelle A. Gray R. Allen Curry Tim J. Arciszewski Kelly R. Munkittrick Sandra M. Brasfield |
author_sort |
Michelle A. Gray |
title |
The biology and ecology of slimy sculpin: A recipe for effective environmental monitoring |
title_short |
The biology and ecology of slimy sculpin: A recipe for effective environmental monitoring |
title_full |
The biology and ecology of slimy sculpin: A recipe for effective environmental monitoring |
title_fullStr |
The biology and ecology of slimy sculpin: A recipe for effective environmental monitoring |
title_full_unstemmed |
The biology and ecology of slimy sculpin: A recipe for effective environmental monitoring |
title_sort |
biology and ecology of slimy sculpin: a recipe for effective environmental monitoring |
publisher |
Canadian Science Publishing |
series |
FACETS |
issn |
2371-1671 2371-1671 |
publishDate |
2018-02-01 |
description |
Recently, the use of small-bodied fish in environmental monitoring has increased, particularly within the Canadian environmental effects monitoring (EEM) and other adaptive programs. Although it is possible to measure changes with many small-bodied species, interpretation is often complicated by the absence of information on the biology and ecology of fish not of commercial, recreational, or traditional interest. Knowing and understanding the basic biology of these fishes aids in the sensitivity of study designs (i.e., ability to detect change) and the interpretation of all biological levels of responses (e.g., cellular to community). The increased use of slimy sculpin (Cottus cognatus Richardson, 1836) in impact assessment studies in North America provides a considerable amount of information on life history aspects. The slimy sculpin has the most ubiquitous North American distribution among cottids but yet has a very small home range, thus integrating environmental conditions of localized areas. This paper describes aspects of slimy sculpin life cycle that affect collection efficiency and timing, and describes and provides data collected over more than 10 years of studies at more than 20 reference study sites. This overview provides a functional and informative compilation to support adaptive environmental monitoring and provide a baseline for comparative ecological study. |
topic |
slimy sculpin environmental effects monitoring sentinel species freshwater monitoring |
url |
http://www.facetsjournal.com/doi/10.1139/facets-2017-0069 |
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