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海虱与鲑鱼种群动态:洄游鱼类暴露时间的影响

Sea lice and salmon population dynamics: effects of exposure time for migratory fish.

作者信息

Krkosek Martin, Morton Alexandra, Volpe John P, Lewis Mark A

机构信息

Department of Mathematical and Statistical Sciences, University of Alberta, Edmonton, Alberta T6G 2R3, Canada.

出版信息

Proc Biol Sci. 2009 Aug 7;276(1668):2819-28. doi: 10.1098/rspb.2009.0317. Epub 2009 May 6.

Abstract

The ecological impact of parasite transmission from fish farms is probably mediated by the migration of wild fishes, which determines the period of exposure to parasites. For Pacific salmon and the parasitic sea louse, Lepeophtheirus salmonis, analysis of the exposure period may resolve conflicting observations of epizootic mortality in field studies and parasite rejection in experiments. This is because exposure periods can differ by 2-3 orders of magnitude, ranging from months in the field to hours in experiments. We developed a mathematical model of salmon-louse population dynamics, parametrized by a study that monitored naturally infected juvenile salmon held in ocean enclosures. Analysis of replicated trials indicates that lice suffer high mortality, particularly during pre-adult stages. The model suggests louse populations rapidly decline following brief exposure of juvenile salmon, similar to laboratory study designs and data. However, when the exposure period lasts for several weeks, as occurs when juvenile salmon migrate past salmon farms, the model predicts that lice accumulate to abundances that can elevate salmon mortality and depress salmon populations. The duration of parasite exposure is probably critical to salmon-louse population dynamics, and should therefore be accommodated in coastal planning and management where fish farms are situated on wild fish migration routes.

摘要

养鱼场寄生虫传播的生态影响可能是由野生鱼类的洄游介导的,这决定了鱼类接触寄生虫的时间。对于太平洋鲑鱼和寄生性海虱(鲑鱼虱)而言,分析接触时间或许能解决野外研究中有关流行病死亡率和实验中寄生虫排斥现象的相互矛盾的观察结果。这是因为接触时间可能相差2到3个数量级,从野外的数月到实验中的数小时不等。我们构建了一个鲑鱼-海虱种群动态的数学模型,其参数由一项监测海洋围栏中自然感染的幼年鲑鱼的研究确定。对重复试验的分析表明,海虱死亡率很高,尤其是在成年前阶段。该模型表明,幼年鲑鱼短暂接触后,海虱种群数量会迅速下降,这与实验室研究设计和数据类似。然而,当接触时间持续数周时,就像幼年鲑鱼洄游经过养鱼场时那样,该模型预测海虱数量会积累到足以提高鲑鱼死亡率并压低鲑鱼种群数量的水平。寄生虫接触时间的长短可能对鲑鱼-海虱种群动态至关重要,因此在沿海规划和管理中,当养鱼场位于野生鱼类洄游路线上时,应予以考虑。

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Biol Lett. 2008 Oct 23;4(5):455-7. doi: 10.1098/rsbl.2008.0276.
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