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首页> 外文期刊>The Journal of Applied Ecology >Salmon louse infestation levels on sea trout can be predicted from a hydrodynamic lice dispersal model
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Salmon louse infestation levels on sea trout can be predicted from a hydrodynamic lice dispersal model

机译:大马哈鱼虱感染水平在海鳟从水动力虱子传播预测模型

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The abundance of the parasitic salmon louse has increased with the growth in aquaculture of salmonids in open net pens. This represents a threat to wild salmonid populations as well as a key limiting factor for salmon farming. The Norwegian 'traffic light' management system for salmon farming aims to increase aquaculture production while securing sustainable wild salmonid populations. However, this system is at present solely focusing on mortality in wild Atlantic salmon, while the responses of sea trout with different ecological characteristics are not included. We analyse lice counts on sea trout from surveillance data and use Bayesian statistical models to relate observed lice infestations to the environmental lice infestation pressure, salinity and current speed. These models can be used in risk assessment to predict when and where lice numbers surpass threshold levels for expected serious health effects in wild sea trout. We find that in production areas with the highest density of salmon farms (West coast), more than 50% of the sea trout experienced lice infestations above the levels of expected serious health effects. We also observed high lice infestations on sea trout in areas with salinities below louse tolerance levels, indicating that fish had been infested elsewhere but were returning to low-saline waters to delouse. This behavioural response may over time disrupt anadromy in sea trout. The observed infestations on sea trout can be explained by the hydrodynamic lice dispersal model, which provides continuous estimates of lice exposure along the whole Norwegian coast. These estimates, which are used in Atlantic salmon research and management, can also be used for sea trout. Synthesis and applications. Wild sea trout, spending its entire feeding migration in fjords and coastal areas, is at higher risk than wild Atlantic salmon to lice infestations from industrial salmon farming. The high levels of lice infestation we observed on sea trout question the environmental sustainability of the current aquaculture industry in areas with intensive farming. We discuss the complex responses of sea trout to salmon lice and how the Norwegian 'traffic light' management system may include data on sea trout.
机译:丰富的虱子寄生鲑鱼提高水产养殖的发展大马哈鱼在开放净笔。威胁野生salmonid人口以及鲑鱼养殖的关键限制因素。挪威“红绿灯”管理体系鲑鱼养殖旨在提高水产养殖生产时确保可持续的野生salmonid人群。目前只专注于死亡率在野生大西洋鲑鱼,而海鳟的反应不同的生态特色包括在内。从监测数据,并使用贝叶斯统计模型与观察到的虱子环境的侵扰,虱子虫害压力、盐度和当前速度。这些模型可用于风险评估预测何时何地虱子数字超越阈值水平的预期严重的健康影响野生海鳟。生产密度最高的地区鲑鱼养殖场(西岸),超过50%的海鳟经历了虱子的侵扰,上面水平的预期严重的健康影响。也观察到高虱子对海鳟的侵扰地区的矿化度低于虱子宽容水平,表明鱼出没其他地方,但回到low-saline水域驱除虱子。时间扰乱anadromy海鳟。可以解释为对海鳟的侵扰水动力虱子传播模型,它提供了连续的估计的虱子曝光整个挪威海岸。用于大西洋鲑鱼研究和管理,也可以用于海鳟。应用程序。喂养迁移在峡湾和沿海地区,在更高的风险比野生大西洋鲑鱼虱子从工业鲑鱼养殖病害。高水平的虱子侵扰我们观察到海鳟的环境问题当前水产养殖的可持续发展行业在集约农业的地区。讨论海鳟的复杂反应鲑鱼虱子和挪威“红绿灯”数据管理系统可能包括海鳟。

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