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The unfulfilled potential of fisheries selectivity to promote sustainability

机译:渔业选择性在促进可持续发展方面的潜力尚未实现

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The recent reform of the Common Fisheries Policy (CFP) in Europe highlights the need for improvements in both species and size selectivity. Regarding size selectivity, shifting selectivity towards older/larger fish avoids both growth and recruitment overfishing and reduces unwanted catches. However, the benefits to fish stocks and fishery yields from increasing age/size-at-selection are still being challenged and the relative importance of selectivity compared to that of exploitation rate remains unclear. Consequently, exploitation rate regulations continue to dominate management. Here, an age-structured population model parameterized for a wide range of stocks is used to investigate the effects of selectivity on spawning stock biomass (SSB) and yield. The generic effect of selectivity on SSB and yield over a wide range of stocks is compared to the respective relative effects of exploitation rate and several biological parameters. We show that yield is mainly driven by biological parameters, while SSB is mostly affected by the exploitation regime (i.e. exploitation rate and selectivity). Our analysis highlights the importance of selectivity for fisheries sustainability. Catching fish a year or more after they mature combined with an intermediate exploitation rate (F approximate to 0.3) promotes high sustainable yields at low levels of stock depletion. Examination of the empirical exploitation regimes of 31 NE Atlantic stocks illustrates the unfulfilled potential of most stocks for higher sustainable yields due to high juvenile selection, thus underscoring the importance of protecting juveniles. Explicitly incorporating selectivity scenarios in fisheries advice would allow the identification of optimal exploitation regimes and benefit results-based management.
机译:欧洲最近对共同渔业政策(CFP)的改革突显了对物种和规模选择性的改善的需求。关于尺寸选择性,将选择性转向较老/较大的鱼类既避免了过度捕捞,也避免了过度捕捞,并减少了不必要的渔获。但是,选择年龄/规格大小的增加对鱼类种群和渔业产量的好处仍然受到挑战,与开发率相比,选择性的相对重要性仍然不清楚。因此,剥削率法规继续主导着管理。在此,针对年龄段广泛的种群参数化的年龄结构种群模型用于研究选择性对产卵种群生物量(SSB)和产量的影响。将选择性对多种种群的SSB和产量的一般影响与利用率和几个生物学参数的相对影响进行了比较。我们表明,产量主要由生物学参数驱动,而SSB则主要受开采制度的影响(即开采率和选择性)。我们的分析突出了选择性对渔业可持续性的重要性。鱼类成熟后一年或一年以上的捕捞与中等剥削率(F大约为0.3)相结合,可以在低资源消耗水平下实现较高的可持续产量。对31个东北大西洋大西洋种群经验开发制度的研究表明,由于青少年选择率高,大多数种群尚未实现更高的可持续收益潜力,因此强调了保护少年的重要性。在渔业咨询意见中明确纳入选择性方案将有助于确定最佳的开发制度并有利于基于结果的管理。

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