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Population-specific mortality in coho salmon (Oncorhynchus kisutch) released from a purse seine fishery

机译:围网渔业捕捞的银大麻哈鱼(Oncorhynchus kisutch)的特定种群死亡率

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Coastal commercial fisheries targeting Pacific salmon inevitably capture a mix of co-migrating species and genetically distinct populations within each species, only some of which are sufficiently abundant to sustain exploitation. Species-specific release measures are implemented as a conservation measure, but there remains little understanding of the resulting mortality. A purse seine fishery for Pacific salmon in British Columbia, Canada, was simulated with the goal of estimating post-release mortality for coho salmon, a species commonly released from commercial fisheries. Landed coho salmon (n = 220) were tagged with acoustic transmitters and tracked along their coastal approach and into freshwater. Survival analyses accounting for variable migration pathways among populations revealed population-specific survival, with the population of greatest conservation concern having the best survival. Condition assessments revealed scale loss to be the strongest predictor of success. Physically exhausted fish, identified via reflex impairment tests, also experienced higher mortality. Results highlight the complexity of estimating release mortality in mixed-population commercial fisheries and are discussed in the context of management implications.
机译:针对太平洋鲑鱼的沿海商业渔业不可避免地会捕获到共迁移物种和每个物种内遗传上不同的种群的混合体,其中只有一部分足够丰富以维持开发。特定物种的释放措施是作为保护措施而实施的,但是对由此导致的死亡率知之甚少。对加拿大不列颠哥伦比亚省太平洋鲑鱼的围网围网渔业进行了模拟,目的是估算银鳕鲑鱼的释放后死亡率,该鲑鱼通常是从商业渔业中释放的。降落的银大麻哈鱼(n = 220)被贴上了声发射器的标签,并沿着它们的沿海途径被追踪并进入淡水。人口分析中的可变迁移途径的生存分析显示了特定种群的生存,其中最受关注的种群具有最佳生存。条件评估显示,水垢损失是成功的最强预测指标。通过反射障碍测试确定的体力消耗鱼的死亡率也更高。结果突出了估计混合种群商业渔业释放死亡率的复杂性,并在管理意义上进行了讨论。

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