Food habits of nonnative Walleyes in Lake Pend Oreille, Idaho

被引:0
|
作者
Frawley, Susan E. [1 ,5 ]
Corsi, Matthew P. [2 ]
Dux, Andrew M. [3 ]
Hardy, Ryan S. [3 ]
Quist, Michael C. [4 ]
机构
[1] Univ Idaho, Idaho Cooperat Fish & Wildlife Res Unit, Moscow, ID 83844 USA
[2] Idaho Dept Fish & Game, Boise, ID USA
[3] Idaho Dept Fish & Game, Coeur Dalene, ID USA
[4] Univ Idaho, Idaho Cooperat Fish & Wildlife Res Unit, US Geol Survey, Moscow, ID USA
[5] Idaho Dept Fish & Game, Nampa, ID 83686 USA
关键词
bioenergetics; stable isotopes; trophic ecology; STIZOSTEDION-VITREUM-VITREUM; TROUT SALVELINUS-NAMAYCUSH; KOKANEE ONCORHYNCHUS-NERKA; NORTHERN PIKE; YELLOW PERCH; POPULATION-DYNAMICS; STABLE-ISOTOPES; BIOENERGETICS MODELS; JUVENILE SALMONIDS; FEEDING STRATEGY;
D O I
10.1002/nafm.11049
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
ObjectiveWalleye Sander vitreus is an important species that has been widely introduced outside of its native distribution. The goal of this study was to assess the effects of an established Walleye population in the Lake Pend Oreille (LPO) system, Idaho.MethodsFood habits of Walleyes were described using stomach contents and stable isotopes (delta 15N, delta 13C). Trophic structure of the LPO system's food web was identified using stable isotopes. Annual consumption by Walleyes of important prey items was estimated using a bioenergetics model.ResultWalleyes consumed a diversity of prey items, including macroinvertebrates and fishes. Kokanee Oncorhynchus nerka, the most frequently consumed prey item, occurred in 23% of all Walleye diets. Combined, native cyprinids and catostomids occurred in 31% of all Walleye stomachs. Select taxa (e.g., native cyprinids, kokanee) were consistently consumed by Walleyes across seasons, regions, and cohorts, whereas other taxa (e.g., Westslope Cutthroat Trout O. lewisi, Smallmouth Bass Micropterus dolomieu) were consumed inconsistently. Stable isotope analysis suggested that Walleyes occupied similar trophic positions as other top-level piscivores in the system. As Walleye age increased, delta 15N increased and delta 13C decreased, indicating increased consumption of pelagic prey resources and prey at higher trophic positions. The estimated biomass of kokanee consumed annually by Walleyes was 27,121 kg (95% confidence interval = 9178-61,603). Comparatively, native cyprinids represented about 46% of the total biomass of kokanee consumed by Walleyes, whereas native catostomids represented about 11% and native salmonids represented about 15% of the total biomass of kokanee consumed by Walleyes.ConclusionThis study revealed that Walleyes consumed various fishes across the LPO system. Although kokanee were the most frequently consumed prey item, native cyprinids and catostomids (combined) occurred at similar proportions. This study contributes to our growing knowledge of the effects of nonnative Walleyes on important salmonids and native fishes in western systems.
引用
收藏
页码:1294 / 1324
页数:31
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