Exploitation shifted trophic ecology and habitat preferences of Mediterranean and Black Sea bluefin tuna over centuries

IF 5.6 1区 农林科学 Q1 FISHERIES Fish and Fisheries Pub Date : 2023-08-10 DOI:10.1111/faf.12785
Adam J. Andrews, Christophe Pampoulie, Antonio Di Natale, Piero Addis, Darío Bernal-Casasola, Veronica Aniceti, Gabriele Carenti, Verónica Gómez-Fernández, Valerie Chosson, Alice Ughi, Matt Von Tersch, Maria Fontanals-Coll, Elisabetta Cilli, Vedat Onar, Fausto Tinti, Michelle Alexander
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Abstract

During recent decades, the health of ocean ecosystems and fish populations has been threatened by overexploitation, pollution and anthropogenic-driven climate change. Due to a lack of long-term ecological data, we have a poor grasp of the true impact on the diet and habitat use of fishes. This information is vital if we are to recover depleted fish populations and predict their future dynamics. Here, we trace the long-term diet and habitat use of Atlantic bluefin tuna (BFT), Thunnus thynnus, a species that has had one of the longest and most intense exploitation histories, owing to its tremendous cultural and economic importance. Using carbon, nitrogen and sulphur stable isotope analyses of modern and ancient BFT including 98 archaeological and archival bones from 11 Mediterranean locations ca. 1st century to 1941 CE, we infer a shift to increased pelagic foraging around the 16th century in Mediterranean BFT. This likely reflects the early anthropogenic exploitation of inshore coastal ecosystems, as attested by historical literature sources. Further, we reveal that BFT which migrated to the Black Sea–and that disappeared during a period of intense exploitation and ecosystem changes in the 1980s–represented a unique component, isotopically distinct from BFT of NE Atlantic and Mediterranean locations. These data suggest that anthropogenic activities had the ability to alter the diet and habitat use of fishes in conditions prior to those of recent decades. Consequently, long-term data provide novel perspectives on when marine ecosystem modification began and the responses of marine populations, with which to guide conservation policy.

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几个世纪以来,开发改变了地中海和黑海蓝鳍金枪鱼的营养生态和栖息地偏好
近几十年来,海洋生态系统和鱼类种群的健康受到过度开发、污染和人为气候变化的威胁。由于缺乏长期的生态数据,我们对鱼类的饮食和栖息地使用的真实影响了解不足。如果我们要恢复枯竭的鱼类种群并预测它们未来的动态,这些信息至关重要。在这里,我们追溯了大西洋蓝鳍金枪鱼(BFT)的长期饮食和栖息地使用情况,由于其巨大的文化和经济重要性,该物种拥有最长、最激烈的开发历史之一。使用现代和古代BFT的碳、氮和硫稳定同位素分析,包括来自地中海11个地点的98块考古和档案骨骼。1世纪至1941年 CE,我们推断16世纪左右地中海BFT的远洋觅食活动有所增加。这可能反映了早期人类对近海沿海生态系统的开发,历史文献资料证明了这一点。此外,我们发现,迁移到黑海的BFT——在20世纪80年代的激烈开发和生态系统变化期间消失——代表了一种独特的成分,在同位素上与东北大西洋和地中海地区的BFT不同。这些数据表明,在近几十年之前的条件下,人类活动有能力改变鱼类的饮食和栖息地使用。因此,长期数据为海洋生态系统何时开始改变以及海洋种群的反应提供了新的视角,从而指导保护政策。
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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.
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