阿拉伯湾南部窄纹西班牙鲭鱼(Scomberomorus commerson, lacpides, 1800)的种群状况:使用多种基于长度的评估方法的案例研究

IF 2.8 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY Frontiers in Marine Science Pub Date : 2025-01-10 DOI:10.3389/fmars.2024.1492238
Mohamed AlMusallami, Mark Dimech, Franklin Francis, Waleed Hamza, Aaron C. Henderson, Sabir Bin Muzaffar, Giuseppe Scarcella, Nazli Demirel, Dario Pinello
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引用次数: 0

摘要

本研究利用基于长度的模型来解决渔业评估中的数据局限性,评估了阿拉伯湾南部,特别是阿布扎比水域的商业鲭鱼的种群状况。研究结果通过LBI、LBB、LBSPR和LIME四种基于长度的模型分析了2011年至2023年间商业渔获物的长度频率分布,为管理实践提供了重要见解。结果表明,鱼类资源被过度捕捞,成熟和最佳尺寸个体比例低,幼鱼过度捕捞,F/M比和SPR值的模型估计值低于目标水平。从2011年到2019年,生物量急剧下降,但由于2019年引入刺网禁令等管理措施,到2023年恢复迹象明显。最后一年的估计显示,B/ bsy比率为1.0,F/M比率为1.2,表明过度捕捞的压力持续存在,但有所减少。这些结果强调了目前数据有限的评估方法在监测已开发种群方面的重要性,提供了限制性措施对生物量恢复产生积极影响的证据。各种方法之间产出的趋同,例如美国商业鱼类过度捕捞的迹象,表明实施多种模式增强了管理建议的稳健性,包括执行最低规模限制或减少捕捞努力量或限制某些捕捞方法。总的来说,这项研究强调了在数据有限的渔业中使用多种模型和选择适当的先验来提高种群评估质量的重要性。
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The stock status of narrow-barred Spanish mackerel, Scomberomorus commerson (Lacépède, 1800) in the southern Arabian Gulf: a case study using multiple length-based assessment approaches
This study evaluates the stock status of Scomberomorus commerson in the southern Arabian Gulf, particularly in Abu Dhabi waters, using length-based models to address data limitations in fisheries assessments. The findings contribute critical insights into management practices using four length-based models, namely, LBI, LBB, LBSPR, and LIME, to analyze length frequency distributions from commercial catches between 2011 and 2023. The results indicate that the stock is overfished, with low proportions of mature and optimal-sized individuals and an excessive harvest of juveniles, as shown by the model estimates of F/M ratios and SPR values below target levels. From 2011 to 2019, the biomass declined sharply, but signs of recovery were evident by 2023 due to management actions, such as a gillnet ban introduced in 2019. The final-year estimates revealed a B/Bmsy ratio of 1.0 and F/M of 1.2, suggesting ongoing but reduced overfishing pressures. These outcomes underscore the importance of ongoing data-limited assessment methods in monitoring exploited stocks, providing evidence that restrictive measures have positively impacted biomass recovery. The convergence of outputs across methods, such as the indication of overfishing in S. commerson stocks, suggests that implementing multiple models enhances the robustness of management recommendations, including the enforcement of minimum size limits or reductions in fishing efforts or restriction of certain fishing methods. Overall, this study highlights the importance of using multiple models and choosing appropriate priors to improve the quality of stock assessments in data-limited fisheries.
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来源期刊
Frontiers in Marine Science
Frontiers in Marine Science Agricultural and Biological Sciences-Aquatic Science
CiteScore
5.10
自引率
16.20%
发文量
2443
审稿时长
14 weeks
期刊介绍: Frontiers in Marine Science publishes rigorously peer-reviewed research that advances our understanding of all aspects of the environment, biology, ecosystem functioning and human interactions with the oceans. Field Chief Editor Carlos M. Duarte at King Abdullah University of Science and Technology Thuwal is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, policy makers and the public worldwide. With the human population predicted to reach 9 billion people by 2050, it is clear that traditional land resources will not suffice to meet the demand for food or energy, required to support high-quality livelihoods. As a result, the oceans are emerging as a source of untapped assets, with new innovative industries, such as aquaculture, marine biotechnology, marine energy and deep-sea mining growing rapidly under a new era characterized by rapid growth of a blue, ocean-based economy. The sustainability of the blue economy is closely dependent on our knowledge about how to mitigate the impacts of the multiple pressures on the ocean ecosystem associated with the increased scale and diversification of industry operations in the ocean and global human pressures on the environment. Therefore, Frontiers in Marine Science particularly welcomes the communication of research outcomes addressing ocean-based solutions for the emerging challenges, including improved forecasting and observational capacities, understanding biodiversity and ecosystem problems, locally and globally, effective management strategies to maintain ocean health, and an improved capacity to sustainably derive resources from the oceans.
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