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Tuna and swordfish catch in the U.S. northwest Atlantic longline fishery in relation to mesoscale eddies

机译:金枪鱼和箭鱼在美国西北大西洋延绳钓渔业中与中尺度涡旋有关

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摘要

To analyze the effects of mesoscale eddies, sea surface temperature (SST), and gear configuration on the catch of Atlantic bluefin (Thunnus thynnus), yellowfin (Thunnus albacares), and bigeye tuna (Thunnus obesus) and swordfish (Xiphias gladius) in the U.S. northwest Atlantic longline fishery, we constructed multivariate statistical models relating these variables to the catch of the four species in 62 121 longline hauls made between 1993 and 2005. During the same 13‐year period, 103 anticyclonic eddies and 269 cyclonic eddies were detected by our algorithm in the region 30–55°N, 30–80°W. Our results show that tuna and swordfish catches were associated with different eddy structures. Bluefin tuna catch was highest in anticyclonic eddies whereas yellowfin and bigeye tuna catches were highest in cyclonic eddies. Swordfish catch was found preferentially in regions outside of eddies. Our study confirms that the common practice of targeting tuna with day sets and swordfish with night sets is effective. In addition, bluefin tuna and swordfish catches responded to most of the variables we tested in the opposite directions. Bluefin tuna catch was negatively correlated with longitude and the number of light sticks used whereas swordfish catch was positively correlated with these two variables. We argue that overfishing of bluefin tuna can be alleviated and that swordfish can be targeted more efficiently by avoiding fishing in anticyclonic eddies and in near‐shore waters and using more light sticks and fishing at night in our study area, although further studies are needed to propose a solid oceanography‐based management plan for catch selection.
机译:分析中尺度涡流,海表温度(SST)和渔具配置对大西洋中蓝鳍金枪鱼(Thunnus thynnus),黄鳍金枪鱼(Thunnus albacares),大眼金枪鱼(Thunnus obesus)和剑鱼(Xiphias gladius)的捕获量的影响。在美国西北大西洋延绳钓渔业中,我们构建了多元统计模型,将这些变量与1993年至2005年之间进行的62121条延绳钓捕捞中的四种物种的捕捞量相关联。在同一13年期间,通过检测到了103种反气旋涡和269种旋风涡我们的算法在30–55°N,30–80°W范围内。我们的结果表明,金枪鱼和箭鱼的捕获与不同的涡流结构有关。蓝鳍金枪鱼捕获量在旋风涡流中最高,而黄鳍金枪鱼和大眼金枪鱼捕获量在旋风涡流中最高。优先在涡流以外的地区发现箭鱼捕获物。我们的研究证实,针对白天设置金枪鱼和夜间设置箭鱼的常规做法是有效的。此外,蓝鳍金枪鱼和箭鱼的捕获对我们在相反方向上测试的大多数变量做出了响应。蓝鳍金枪鱼的捕获量与经度和所用荧光棒的数量呈负相关,而箭鱼的捕获量与这两个变量呈正相关。我们认为,可以避免蓝鳍金枪鱼的过度捕捞,并可以通过避免在反气旋涡旋和近岸水域中捕捞,并在我们的研究区域晚上使用更多的荧光棒和夜间捕捞来更有效地针对剑鱼,尽管需要进行进一步的研究提出基于海洋学的可靠管理计划以进行渔获选择。

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