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技术说明:改变大西洋鲑(Salmo salar)跳跃行为以促进寄生性海虱防治技术的创新。

Technical note: Modifying Atlantic salmon (Salmo salar) jumping behavior to facilitate innovation of parasitic sea lice control techniques.

机构信息

Sustainable Aquaculture Laboratory-Temperate and Tropical (SALTT), Department of Zoology, University of Melbourne, Victoria, Australia.

出版信息

J Anim Sci. 2011 Dec;89(12):4281-5. doi: 10.2527/jas.2011-3894. Epub 2011 Aug 5.

Abstract

Industrial salmon farms are reservoirs of parasitic sea lice (Lepeophtheirus salmonis and Caligus spp.), which causes both production inefficiencies and contributes to population-level declines of wild salmon and trout. Current control methods vary in effect and stimulate controversy by the discharge of chemicals into the environment. An alternate control method uses a thin, chemical-infused oil layer on the sea surface. As farmed salmon jump through the surface, the treatment makes contact with the lipophilic carapace of sea lice and kills them. To enhance the effectiveness of this method, we tested whether the natural jumping behavior of salmon could be increased and directed. In a 2,000-m(3) experimental sea-cage, we removed the ability of groups of salmon to access the surface for different periods (0 to 48 h) and measured their surface behaviors after the surface became accessible again. Surface removal for 24 and 48 h induced 93% of salmon to jump in the 2 h after surface access was reinstated, a result that differed (P < 0.001) from the shorter duration (0 to 12 h) treatments. Salmon without surface access for 24 and 48 h jumped 2 to 3 times more often (P < 0.001), and made their first jump 2 to 3 times sooner (P = 0.003) on average after surface access became available than salmon in the shorter duration treatments. Our results indicate that removal of surface access for short periods may lead to loss of air from the physostomous swim bladder and cause negative buoyancy. This creates a behavioral drive for salmon to jump, swallow air and fill their swim bladders once surface access is reinstated. By combining the increased jumping behavior induced by this technique with a floating, oil-infused treatment, efficiency of sea lice treatments may be improved and treatment chemicals can be re-collected, thus decreasing environmental pollution.

摘要

工业化鲑鱼养殖场是寄生海虱(Lepeophtheirus salmonis 和 Caligus spp.)的蓄水池,这不仅导致生产效率低下,还导致野生鲑鱼和鳟鱼数量减少。目前的控制方法效果各异,并且由于向环境中排放化学物质而引发争议。一种替代控制方法是在海面上涂一层薄的、富含化学物质的油层。当养殖鲑鱼跃出水面时,这种处理方法会与海虱的亲脂性甲壳接触并杀死它们。为了提高这种方法的效果,我们测试了是否可以增加和引导鲑鱼的自然跳跃行为。在一个 2000 立方米的实验性海上围网中,我们让一组鲑鱼在不同时间段(0 到 48 小时)内无法接触水面,并在再次接触水面后测量它们的水面行为。鲑鱼被隔离在水面下 24 小时和 48 小时后,有 93%的鲑鱼在重新获得水面后 2 小时内跳跃,这与较短时间(0 到 12 小时)的处理结果(P < 0.001)不同。没有接触水面 24 小时和 48 小时的鲑鱼跳跃次数分别增加了 2 到 3 倍(P < 0.001),并且在重新获得水面后,它们的第一次跳跃平均提前了 2 到 3 倍(P = 0.003),而较短时间处理的鲑鱼则没有。我们的结果表明,短时间内阻止鲑鱼接触水面可能会导致鳔中的空气逸出,导致负浮力。这会产生一种行为驱动力,促使鲑鱼跳跃,吞下空气并在重新获得水面后充满鳔。通过将这种技术诱导的跳跃行为增加与漂浮的、富含油的处理相结合,可以提高海虱处理的效率,并可以重新收集处理化学物质,从而减少环境污染。

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