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Fishery-Induced Changes in the Subtropical Pacific Pelagic Ecosystem Size Structure: Observations and Theory

机译:渔业引起的亚热带太平洋中上层生态系统规模结构的变化:观测和理论

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摘要

We analyzed a 16-year (1996–2011) time series of catch and effort data for 23 species with mean weights ranging from 0.8 kg to 224 kg, recorded by observers in the Hawaii-based deep-set longline fishery. Over this time period, domestic fishing effort, as numbers of hooks set in the core Hawaii-based fishing ground, has increased fourfold. The standardized aggregated annual catch rate for 9 small (<15 kg) species increased about 25% while for 14 large species (>15 kg) it decreased about 50% over the 16-year period. A size-based ecosystem model for the subtropical Pacific captures this pattern well as a response to increased fishing effort. Further, the model projects a decline in the abundance of fishes larger than 15 kg results in an increase in abundance of animals from 0.1 to 15 kg but with minimal subsequent cascade to sizes smaller than 0.1 kg. These results suggest that size-based predation plays a key role in structuring the subtropical ecosystem. These changes in ecosystem size structure show up in the fishery in various ways. The non-commercial species lancetfish (mean weight 7 kg) has now surpassed the target species, bigeye tuna, as the species with the highest annual catch rate. Based on the increase in snake mackerel (mean weight 0.8 kg) and lancetfish catches, the discards in the fishery are estimated to have increased from 30 to 40% of the total catch.
机译:我们分析了观察者在夏威夷深海延绳钓渔业中记录的16年(1996-2011)时间序列的23种捕捞量和努力量数据,平均重量在0.8kg至224kg之间。在这段时间里,家庭捕鱼工作的数量增加了四倍。 9种小型(<15公斤)物种的标准化总年捕捞率在16年期间增加了约25%,而14种大型(> 15公斤)物种的标准化年捕捞率下降了约50%。亚热带太平洋基于大小的生态系统模型很好地捕捉了这种模式,并响应了增加的捕捞努力。此外,该模型预测,大于15千克的鱼的丰度下降会导致动物的丰度从0.1千克增加到15千克,但随后的级联最小化到小于0.1千克。这些结果表明,基于大小的捕食在构建亚热带生态系统中起着关键作用。生态系统规模结构的这些变化以多种方式出现在渔业中。非商业种类的刺鱼(平均体重7公斤)现在已经超过了目标种类大眼金枪鱼,成为年度捕捞率最高的种类。根据鲭鱼(平均体重0.8千克)和刺鱼捕捞量的增加,估计渔业中的丢弃物已占总捕捞量的30%至40%。

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