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Shooting fish in a barrel? Assessing fisher-driven changes in catchability within tropical tuna purse seine fleets

机译:在桶里拍鱼? 评估热带金枪鱼塞纳克斯船队在热带金枪鱼中的可追随者的变化

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摘要

With constant innovation to find more efficient ways to find, catch and process fish, catchability in wild fisheries can increase. Catchability is a combination of resource abundance, fishing effort and fishing efficiency: any increase in fleet efficiency can lead to undesirable effects not only on stocks, but also on the ability to assess them. When using effort controls as part of management, it is necessary to adjust for the increase in catchability due to the increases in efficiency over time to avoid stock depletion. Accounting for changes in catchability can be problematic for pelagic stocks, due to the changes in fishing behaviour and the continual change in fishing efficiency. This study investigates the success in finding patches of fish for fleets operating within the western and central Pacific purse seine fishery between 1993 and 2012. Three indices, widely used in ecological research, were used to study how spatial variation in fisher behaviour for sets on fish aggregating devices (FADs) and free-school sets was related to catchability. For free-school set types, the diversity index was negatively correlated with Katsuwonus pelamis catchability. When this index was low, catch rates were at their highest and there was a reduction in the area fished. In contrast, for FAD sets, catches increase when the patchiness index was low, implying a degree of random behaviour, potentially due to advances in FAD technology. An improved understanding of the spatial allocation of effort can improve catchability estimates widely used for fisheries stock assessments and in indices of global biodiversity.
机译:不断创新,寻找更有效的方法来寻找,捕获和处理鱼类,野生渔业的可利用性可以增加。可吸收性是资源丰富,捕捞努力和捕捞效率的组合:舰队效率的任何增加都可能导致不仅对股票的不良影响,而且可以对评估它们的能力导致不良影响。使用努力控制作为管理的一部分时,必须调整由于随着时间的推移而增加的可利用性的增加,以避免库存耗尽。由于捕捞行为的变化和捕捞效率的持续变化,核算性的核算可能是对皮拉古股票的有问题。本研究调查了1993年至2012年间西部和中央太平洋钱包塞纳河渔业渔业在西部和中央太平洋钱包塞纳河渔业中寻找舰队的成功。三个广泛用于生态研究的指数,用于研究鱼类上套装的空间变化如何聚合设备(FADS)和自由学校套件与可利用性有关。对于自由学校的组类型,多样性指数与Katsuwonus Pelamis可追随者负相关。当该指数低时,捕捞率最高,该地区占据了最高率。相比之下,对于FAD套,当斑块指数低时,捕获增加,暗示了一种随机行为,可能是由于FAD技术的进步。改进了对努力的空间分配的理解可以改善广泛用于渔业股票评估和全球生物多样性指标的可吸收性估计。

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