Does fishing dismantle fish culture and ecosystem structure? Questions about the implications of social learning among fish and fishers

IF 5.6 1区 农林科学 Q1 FISHERIES Fish and Fisheries Pub Date : 2023-04-28 DOI:10.1111/faf.12755
James A. Wilson, Jarl Giske
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Abstract

Scientific awareness of social learning, especially among vertebrates, has expanded rapidly in recent decades. That literature suggests that social learning may be a second adaptive mechanism that interacts with and refines genetic adaptation. For an individual fish, learning from others reduces the costs of acquiring experience-based behaviours and minimizes the hazards that arise from imperfect knowledge of local regularities. For a group of fish, social learning facilitates the evolution of time and place behaviours that work in its locality. It spreads those behaviours within the group and to subsequent generations. Thus, social learning enables persistent adaptation at a finer scale than might be possible through genetic processes alone. Strong evidence of genetic differentiation at less than a panmictic scale and persistent local depletions suggests regular, fine-scale system structure. Social learning may play an important role in creating and maintaining this finer-scale structure. Fishers' learned adaptations to the market and natural system usually lead them to target larger/older fish and fish aggregations at familiar times and places. However, older fish are likely to be the principal repository of the time-and-place experience required for local growth, survival, and reproduction, while social aggregations are important schools in which younger fish acquire the experience of older fish. Consequently, if adaptation through social learning is important among fish, there is reason to be concerned that heavy fishing of social learners reduces their abundance, as usually assumed, and impairs the inheritance of the socially learned experience required for persistent local adaptation.

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捕鱼会破坏鱼类养殖和生态系统结构吗?关于鱼和渔民之间社会学习的含义的问题
近几十年来,对社会学习的科学认识,特别是在脊椎动物中,已经迅速扩大。这些文献表明,社会学习可能是与遗传适应相互作用并改进遗传适应的第二种适应机制。对于单个鱼来说,向其他鱼学习可以降低获得基于经验的行为的成本,并最大限度地减少因对局部规律的不完全了解而产生的危害。对于一群鱼来说,社会学习促进了在当地工作的时间和地点行为的进化。它会将这些行为传播给群体内部和后代。因此,社会学习能够在比单独通过遗传过程更精细的尺度上实现持久的适应。遗传分化在小于泛型规模和持续的局部消耗的有力证据表明,规则的,精细的系统结构。社会学习可能在创造和维持这种更精细的结构中发挥重要作用。渔民对市场和自然系统的学习适应通常会导致他们在熟悉的时间和地点瞄准较大/较老的鱼和鱼群。然而,年长的鱼类可能是当地生长、生存和繁殖所需的时间和地点经验的主要储存库,而社会聚集是年轻鱼类获得年长鱼类经验的重要鱼群。因此,如果通过社会学习的适应在鱼类中很重要,那么就有理由担心,像通常假设的那样,大量捕捞社会学习者会减少它们的丰度,并损害持续局部适应所需的社会学习经验的遗传。
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来源期刊
Fish and Fisheries
Fish and Fisheries 农林科学-渔业
CiteScore
12.80
自引率
6.00%
发文量
83
期刊介绍: Fish and Fisheries adopts a broad, interdisciplinary approach to the subject of fish biology and fisheries. It draws contributions in the form of major synoptic papers and syntheses or meta-analyses that lay out new approaches, re-examine existing findings, methods or theory, and discuss papers and commentaries from diverse areas. Focal areas include fish palaeontology, molecular biology and ecology, genetics, biochemistry, physiology, ecology, behaviour, evolutionary studies, conservation, assessment, population dynamics, mathematical modelling, ecosystem analysis and the social, economic and policy aspects of fisheries where they are grounded in a scientific approach. A paper in Fish and Fisheries must draw upon all key elements of the existing literature on a topic, normally have a broad geographic and/or taxonomic scope, and provide general points which make it compelling to a wide range of readers whatever their geographical location. So, in short, we aim to publish articles that make syntheses of old or synoptic, long-term or spatially widespread data, introduce or consolidate fresh concepts or theory, or, in the Ghoti section, briefly justify preliminary, new synoptic ideas. Please note that authors of submissions not meeting this mandate will be directed to the appropriate primary literature.
期刊最新文献
The economic displacement of thousands of fishers in the Pantanal, Brazil: A telling story of small‐scale fisheries marginalization worldwide. Issue Information Pathways for integrating historical information into fisheries decision‐making Global meta‐analysis of demersal fishing impacts on organic carbon and associated biogeochemistry Leveraging ecological indicators to improve short term forecasts of fish recruitment
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