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技术进步掩盖了一个多世纪以来龙虾(Homarus gammarus)渔业的持续衰退。

Technological creep masks continued decline in a lobster (Homarus gammarus) fishery over a century.

机构信息

Institute of Marine Research, Nye Flødevigveien 20, 4817, His, Norway.

Institute of Marine Research, Bergen, Norway.

出版信息

Sci Rep. 2022 Feb 28;12(1):3318. doi: 10.1038/s41598-022-07293-2.

Abstract

Fishery-dependent data are frequently used to inform management decisions. However, inferences about stock development based on commercial data such as Catch-Per-Unit-Effort (CPUE) can be severely biased due to a phenomenon known as technological creep, where fishing technology improves over time. Here we show how trap improvement over nine decades has driven technological creep in a European lobster (Homarus gammarus) fishery. We combined fishing data, experimental fishing with contemporary and older trap types, and information on depletion effects during fishing seasons. The resulting standardized CPUE time series indicates a 92% decline in lobster abundance between 1928 and 2019 compared to 70% if technological creep is not corrected for. Differences are most pronounced within the last 40 years when the most substantial shift in gear technology occurred: an uncorrected CPUE index suggests an 8% increase in lobster abundance during this period, while the corrected CPUE index declined by 57%. We conclude that technological creep has masked a continuous stock decline, particularly in recent decades and largely driven by the shift from one- to two-chambered traps, as well as the ability of newer trap designs to capture larger lobsters. Our study confirms the importance of adequate standardization, including technological development, when using fishery dependent CPUE for monitoring and management of data-limited fisheries.

摘要

渔业相关数据常被用于为管理决策提供信息。然而,基于商业数据(如单位捕捞努力量渔获量(CPUE))的对种群发展的推断可能会受到技术进步的严重偏差,因为随着时间的推移,捕鱼技术会不断提高。本文展示了在欧洲龙虾(Homarus gammarus)渔业中,陷阱的改进如何导致了技术进步。我们结合了渔业数据、使用现代和老式陷阱类型的实验性捕捞以及捕捞季节中损耗效应的信息。由此产生的标准化 CPUE 时间序列表明,与未纠正技术进步相比,1928 年至 2019 年间龙虾数量减少了 92%。如果不纠正技术进步的影响,差异在过去 40 年最为明显,这期间渔具技术发生了最重大的转变:未经修正的 CPUE 指数表明在此期间龙虾数量增加了 8%,而修正后的 CPUE 指数则下降了 57%。我们得出结论,技术进步掩盖了连续的种群下降,尤其是在最近几十年,主要原因是从单腔陷阱向双腔陷阱的转变,以及新型陷阱设计捕捉更大龙虾的能力。我们的研究证实了在使用渔业相关 CPUE 监测和管理数据有限的渔业时,充分标准化(包括技术发展)的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3550/8885706/d77a599cbf61/41598_2022_7293_Fig1_HTML.jpg

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