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首页> 外文期刊>North American Journal of Fisheries Management >Effectiveness of a Refuge for Lake Trout in Western Lake Superior II: Simulation of Future Performance
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Effectiveness of a Refuge for Lake Trout in Western Lake Superior II: Simulation of Future Performance

机译:西湖苏必利尔湖鳟鱼避难所的有效性:未来绩效的模拟

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Historically, Lake Superior supported one of the largest and most diverse Lake Trout Salvelinus namaycush fisheries in the Laurentian Great Lakes, but Lake Trout stocks collapsed due to excessive fishery exploitation and predation by Sea Lampreys Petromyzon marinus. Lake Trout stocking, Sea Lamprey control, and fishery regulations, including a refuge encompassing Gull Island Shoal (Apostle Islands region), were used to enable recovery of Lake Trout stocks that used this historically important spawning shoal. Our objective was to determine whether future sustainability of Lake Trout stocks will depend on the presence of the Gull Island Shoal Refuge. We constructed a stochastic age-structured simulation model to assess the effect of maintaining the refuge as a harvest management tool versus removing the refuge. In general, median abundances of age-4, age-4 and older (age-4+), and age-8+ fish collapsed at lower instantaneous fishing mortality rates (F) when the refuge was removed than when the refuge was maintained. With the refuge in place, the F that resulted in collapse depended on the rate of movement into and out of the refuge. Too many fish stayed in the refuge when movement was low (0-2%), and too many fish became vulnerable to fishing when movement was high (>= 22%); thus, the refuge was more effective at intermediate rates of movement (10-11%). With the refuge in place, extinction did not occur at any simulated level of F, whereas refuge removal led to extinction at all combinations of commercial F and recreational F. Our results indicate that the Lake Trout population would be sustained by the refuge at all simulated F-values, whereas removal of the refuge would risk population collapse at much lower F (0.700-0.744). Therefore, the Gull Island Shoal Refuge is needed to sustain the Lake Trout population in eastern Wisconsin waters of Lake Superior.
机译:从历史上看,苏必利尔湖支持劳伦大湖中最大和最多样化的鳟鱼Salvelinus namaycush渔业之一,但是鳟鱼湖的种群由于过度的渔业开发和Sea Lampreys Petromyzon码头的捕捞而倒闭。鳟鱼湖的放养,海鳗的控制和渔业法规,包括一个围绕着鸥岛浅滩(使徒群岛地区)的避难所,被用来恢复使用这种具有历史意义的产卵浅滩的鳟鱼湖的种群。我们的目标是确定鳟鱼湖种群的未来可持续性是否将取决于鸥岛浅滩避难所的存在。我们构建了一个随机的年龄结构模拟模型,以评估将避难所作为收获管理工具与移除避难所的效果。通常,移走避难所时的瞬时捕捞死亡率(F)低于保持避难所时的4岁,4岁及以上(4岁以上)和8岁以上鱼类的中位丰度。避难所就位后,导致倒塌的F取决于进出避难所的速度。运动低时(0-2%),有太多的鱼留在避难所;运动高时(> = 22%),太多的鱼变得容易捕捞。因此,避难所在中等运动速度(10-11%)时更有效。在有避难所的情况下,在任何模拟的F水平上都不会发生灭绝,而在商业F和娱乐性F的所有组合中,避难所的迁移都会导致灭绝。我们的结果表明,在所有模拟的F下,鳟鱼湖的种群都将得到维持F值,而避难所的拆除将以较低的F(0.700-0.744)引发人口崩溃的风险。因此,需要鸥岛浅滩避难所来维持苏必利尔湖东部威斯康星州水域的鳟鱼种群。

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