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Lake trout (Salvelinus namaycush) suppression for bull trout (Salvelinus confluentus) recovery in Flathead Lake, Montana, North America

机译:北美蒙大拿州弗莱德黑德湖(Salvelinus namaycush)抑制鳟鱼(Salvelinus confluentus)恢复的鳟鱼

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摘要

Non-native lake trout Salvelinus namaycush displaced native bull trout Salvelinus confluentus in Flathead Lake, Montana, USA, after 1984, when Mysis diluviana became abundant following its introduction in upstream lakes in 1968-1976. We developed a simulation model to determine the fishing mortality rate on lake trout that would enable bull trout recovery. Model simulations indicated that suppression of adult lake trout by 75% from current abundance would reduce predation on bull trout by 90%. Current removals of lake trout through incentivized fishing contests has not been sufficient to suppress lake trout abundance estimated by mark-recapture or indexed by stratified-random gill netting. In contrast, size structure, body condition, mortality, and maturity are changing consistent with a density-dependent reduction in lake trout abundance. Population modeling indicated total fishing effort would need to increase 3-fold to reduce adult lake trout population density by 75%. We conclude that increased fishing effort would suppress lake trout population density and predation on juvenile bull trout, and thereby enable higher abundance of adult bull trout in Flathead Lake and its tributaries.
机译:1984年之后,非本地湖鳟Salvelinus namaycush在美国蒙大拿州Flathead湖取代了本地牛鳟Salvelinus confluentus,1968年,Mysis diluviana在其上游湖泊中引入后变得丰富。我们开发了一个模拟模型来确定湖鳟的捕捞死亡率,该捕捞死亡率将使公鳟恢复。模型模拟表明,从目前的丰度中将成年湖鳟抑制75%,将使对公鳟的捕食减少90%。当前通过激励性捕鱼比赛清除的鳟鱼数量不足以抑制通过标记捕获估算的或通过分层随机g网索引的鳟鱼丰度。相反,大小结构,身体状况,死亡率和成熟度的变化与湖鳟丰度的密度依赖性降低相一致。人口模型表明,总捕捞努力将需要增加3倍,才能使成年湖鳟的种群密度减少75%。我们得出的结论是,加大捕捞力度将抑制湖鳟的种群密度和捕食幼年公牛鳟鱼,从而使Flathead湖及其支流的成年公牛鳟鱼数量更多。

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