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Estimating maximum economic yield in multispecies fisheries: a review

机译:估算多层渔业的最大经济产量:审查

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Fisheries can generate substantial economic returns to society if managed with economic targets as the main objective, that is with biomass, catch, and effort levels that correspond to maximum economic yield (MEY), although the move to such targets presents a number of challenges. These are compounded in multispecies fisheries, as it is not possible to achieve all individual targets simultaneously if targets are set on a species-by-species basis. Identifying appropriate targets both conceptually and empirically has also proven challenging, and consequently the implementation of economic targets to real world fisheries have been limited to a small number of data-rich and high-valued fisheries, with reliance on proxy target reference points in other fisheries. Moreover, these application has been limited due to unknowns as to what proxies should be used under different circumstances. Here, we review the alternative ways in which MEY has been estimated and applied in multispecies fisheries. We also review the roles and potential use of proxy target reference points for multispecies MEY in data-limited fisheries, building on Australian's experience in implementing such a policy.
机译:如果经济目标作为主要目标管理,渔业可以为社会产生大量的经济回报,这与符合最大经济产量(梅)的生物量,捕获和努力水平,虽然向此类目标的举措具有许多挑战。这些在多数渔业中复合,因为如果目标设置在物种的基础上,则无法同时达到所有单独的目标。概念性和经验识别适当的目标也经过验证的挑战,因此,对现实世界渔业的经济目标的实施仅限于少数数据丰富和高度值的渔业,依赖于其他渔业的代理目标参考点。此外,由于在不同情况下应该使用的代理使用,这些应用程序受到限制。在这里,我们审查了梅伊估计和应用于多数渔业的替代方式。我们还审查了在数据限制渔业中的多层梅耶代理目标参考点的角色和潜在利用,建立澳大利亚实施此类政策的经验。

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