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Sustainability of the Lake superior fish community : Interactions in a food web context : Fast and Slow Variables in Ecosystems

Identifieur interne : 000D11 ( Main/Exploration ); précédent : 000D10; suivant : 000D12

Sustainability of the Lake superior fish community : Interactions in a food web context : Fast and Slow Variables in Ecosystems

Auteurs : James F. Kitchell [États-Unis] ; Sean P. Cox [États-Unis] ; Chris J. Harvey [États-Unis] ; Timothy B. Johnson [États-Unis] ; Doran M. Mason [États-Unis] ; Kurt K. Schoen [États-Unis] ; Kerim Aydin [États-Unis] ; Charles Bronte [États-Unis] ; Mark Ebener [États-Unis] ; Michael Hansen [États-Unis] ; Michael Hoff [États-Unis] ; Steve Schram [États-Unis] ; Don Schreiner [États-Unis] ; Carl J. Walters [Canada]

Source :

RBID : Pascal:01-0157467

Descripteurs français

English descriptors

Abstract

The restoration and rehabilitation of the native fish communities is a long-term goal for the Laurentian Great Lakes. In Lake Superior, the ongoing restoration of the native lake trout populations is now regarded as one of the major success stories in fisheries management. However, populations of the deepwater morphotype (siscowet lake trout) have increased much more substantially than those of the nearshore morphotype (lean lake trout), and the ecosystem now contains an assemblage of exotic species such as sea lamprey, rainbow smelt, and Pacific salmon (chinook, coho, and steelhead). Those species play an important role in defining the constraints and opportunities for ecosystem management. We combined an equilibrium mass balance model (Ecopath) with a dynamic food web model (Ecosim) to evaluate the ecological consequences of future alternative management strategies and the interaction of two different sets of life history characteristics for fishes at the top of the food web. Relatively rapid turnover rates occur among the exotic forage fish, rainbow smelt, and its primary predators, exotic Pacific salmonids. Slower turnover rates occur among the native lake trout and burbot and their primary prey-lake herring, smelt, deepwater cisco, and sculpins. The abundance of forage fish is a key constraint for all salmonids in Lake Superior. Smelt and Mysis play a prominent role in sustaining the current trophic structure. Competition between the native lake trout and the exotic salmonids is asymmetric. Reductions in the salmon population yield only a modest benefit for the stocks of lake trout, whereas increased fishing of lake trout produces substantial potential increases in the yields of Pacific salmon to recreational fisheries. The deepwater or siscowet morphotype of lake trout has become very abundant. Although it plays a major role in the structure of the food web it offers little potential for the restoration of a valuable commercial or recreational fishery. Even if a combination of strong management actions is implemented, the populations of lean (nearshore) lake trout cannot be restored to pre-fishery and pre-lamprey levels. Thus, management strategy must accept the ecological constraints due in part to the presence of exotics and choose alternatives that sustain public interest in the resources while continuing the gradual progress toward restoration.


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<term>Animal community</term>
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<term>Environmental protection</term>
<term>Faunal survey</term>
<term>Food web</term>
<term>Lake Superior</term>
<term>Modeling</term>
<term>Pisces</term>
<term>Trophic chain</term>
<term>Trophic relation</term>
</keywords>
<keywords scheme="Pascal" xml:lang="fr">
<term>Protection faune</term>
<term>Inventaire faunistique</term>
<term>Abondance écologique</term>
<term>Communauté animale</term>
<term>Relation trophique</term>
<term>Réseau trophique</term>
<term>Chaîne alimentaire</term>
<term>Modélisation</term>
<term>Restauration milieu</term>
<term>Protection environnement</term>
<term>Lac Supérieur</term>
<term>Pisces</term>
</keywords>
</textClass>
</profileDesc>
</teiHeader>
<front>
<div type="abstract" xml:lang="en">The restoration and rehabilitation of the native fish communities is a long-term goal for the Laurentian Great Lakes. In Lake Superior, the ongoing restoration of the native lake trout populations is now regarded as one of the major success stories in fisheries management. However, populations of the deepwater morphotype (siscowet lake trout) have increased much more substantially than those of the nearshore morphotype (lean lake trout), and the ecosystem now contains an assemblage of exotic species such as sea lamprey, rainbow smelt, and Pacific salmon (chinook, coho, and steelhead). Those species play an important role in defining the constraints and opportunities for ecosystem management. We combined an equilibrium mass balance model (Ecopath) with a dynamic food web model (Ecosim) to evaluate the ecological consequences of future alternative management strategies and the interaction of two different sets of life history characteristics for fishes at the top of the food web. Relatively rapid turnover rates occur among the exotic forage fish, rainbow smelt, and its primary predators, exotic Pacific salmonids. Slower turnover rates occur among the native lake trout and burbot and their primary prey-lake herring, smelt, deepwater cisco, and sculpins. The abundance of forage fish is a key constraint for all salmonids in Lake Superior. Smelt and Mysis play a prominent role in sustaining the current trophic structure. Competition between the native lake trout and the exotic salmonids is asymmetric. Reductions in the salmon population yield only a modest benefit for the stocks of lake trout, whereas increased fishing of lake trout produces substantial potential increases in the yields of Pacific salmon to recreational fisheries. The deepwater or siscowet morphotype of lake trout has become very abundant. Although it plays a major role in the structure of the food web it offers little potential for the restoration of a valuable commercial or recreational fishery. Even if a combination of strong management actions is implemented, the populations of lean (nearshore) lake trout cannot be restored to pre-fishery and pre-lamprey levels. Thus, management strategy must accept the ecological constraints due in part to the presence of exotics and choose alternatives that sustain public interest in the resources while continuing the gradual progress toward restoration.</div>
</front>
</TEI>
<affiliations>
<list>
<country>
<li>Canada</li>
<li>États-Unis</li>
</country>
<region>
<li>Colombie-Britannique </li>
<li>Michigan</li>
<li>Minnesota</li>
<li>Washington (État)</li>
<li>Wisconsin</li>
</region>
<settlement>
<li>Seattle</li>
<li>Vancouver</li>
</settlement>
<orgName>
<li>Université de Washington</li>
<li>Université de la Colombie-Britannique</li>
</orgName>
</list>
<tree>
<country name="États-Unis">
<noRegion>
<name sortKey="Kitchell, James F" sort="Kitchell, James F" uniqKey="Kitchell J" first="James F." last="Kitchell">James F. Kitchell</name>
</noRegion>
<name sortKey="Aydin, Kerim" sort="Aydin, Kerim" uniqKey="Aydin K" first="Kerim" last="Aydin">Kerim Aydin</name>
<name sortKey="Bronte, Charles" sort="Bronte, Charles" uniqKey="Bronte C" first="Charles" last="Bronte">Charles Bronte</name>
<name sortKey="Cox, Sean P" sort="Cox, Sean P" uniqKey="Cox S" first="Sean P." last="Cox">Sean P. Cox</name>
<name sortKey="Ebener, Mark" sort="Ebener, Mark" uniqKey="Ebener M" first="Mark" last="Ebener">Mark Ebener</name>
<name sortKey="Hansen, Michael" sort="Hansen, Michael" uniqKey="Hansen M" first="Michael" last="Hansen">Michael Hansen</name>
<name sortKey="Harvey, Chris J" sort="Harvey, Chris J" uniqKey="Harvey C" first="Chris J." last="Harvey">Chris J. Harvey</name>
<name sortKey="Hoff, Michael" sort="Hoff, Michael" uniqKey="Hoff M" first="Michael" last="Hoff">Michael Hoff</name>
<name sortKey="Johnson, Timothy B" sort="Johnson, Timothy B" uniqKey="Johnson T" first="Timothy B." last="Johnson">Timothy B. Johnson</name>
<name sortKey="Mason, Doran M" sort="Mason, Doran M" uniqKey="Mason D" first="Doran M." last="Mason">Doran M. Mason</name>
<name sortKey="Schoen, Kurt K" sort="Schoen, Kurt K" uniqKey="Schoen K" first="Kurt K." last="Schoen">Kurt K. Schoen</name>
<name sortKey="Schram, Steve" sort="Schram, Steve" uniqKey="Schram S" first="Steve" last="Schram">Steve Schram</name>
<name sortKey="Schreiner, Don" sort="Schreiner, Don" uniqKey="Schreiner D" first="Don" last="Schreiner">Don Schreiner</name>
</country>
<country name="Canada">
<region name="Colombie-Britannique ">
<name sortKey="Walters, Carl J" sort="Walters, Carl J" uniqKey="Walters C" first="Carl J." last="Walters">Carl J. Walters</name>
</region>
</country>
</tree>
</affiliations>
</record>

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