Mesopelagic Fish Traits: Functions and Trade-Offs

IF 5.6 1区 农林科学 Q1 FISHERIES
Henrike Andresen, Leandro Nolé Eduardo, M. Pilar Olivar, P. Daniël van Denderen, Jérôme Spitz, Aurore A. Maureaud, Anik Brind'Amour, Noelle M. Bowlin, Eva García-Seoane, Tom J. Langbehn, Tracey T. Sutton, Heino O. Fock, Anne Gro V. Salvanes, Martin Lindegren
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Abstract

Fishes inhabiting the mesopelagic zone of the world's oceans are estimated to account for the majority of the world's fish biomass. They have recently attracted new attention because they are part of the biological carbon pump and have been reconsidered as a contribution to food security. Hence, there is an urgent need to understand how environmental conditions and species interactions shape their assemblages, and how they contribute to the functioning of marine ecosystems. Trait-based approaches are valuable for addressing these types of questions. However, the biology and ecology of mesopelagic fishes are understudied compared to fishes in shallow and epipelagic waters. Here, we synthesise existing knowledge of traits of mesopelagic fishes and relate them to their role in survival, feeding and growth and reproduction, the key functions that contribute to fitness. Vertical migrations, specialised vision and the use of bioluminescence are among the most striking adaptations to the conditions in the mesopelagic realm. Many traits are interrelated as a result of trade-offs, which may help to understand selection pressures. While morphological traits are straightforward to observe, major knowledge gaps exist for traits that require frequent sampling, assessment under experimental conditions or age determination. The unique adaptations of mesopelagic fishes need to be included in management strategies as well as fundamental research of the habitat.

Abstract Image

中上层鱼类特征:功能与权衡
据估计,栖息在世界海洋中上层区的鱼类占世界鱼类生物量的大部分。最近,它们引起了新的关注,因为它们是生物碳泵的一部分,并被重新视为对粮食安全的贡献。因此,迫切需要了解环境条件和物种相互作用如何塑造鱼类的组合,以及它们如何促进海洋生态系统的功能。基于性状的方法对解决这类问题很有价值。然而,与浅海和上深层水域的鱼类相比,对中深层鱼类的生物学和生态学研究不足。在此,我们综合了现有的有关中上层鱼类特征的知识,并将这些特征与它们在生存、觅食、生长和繁殖中的作用联系起来,这些作用是决定鱼类健康状况的关键功能。垂直洄游、特殊视觉和使用生物发光是对中深海环境最显著的适应。许多性状因权衡利弊而相互关联,这可能有助于了解选择压力。虽然形态特征可以直接观察到,但对于需要经常取样、在实验条件下进行评估或测定年龄的特征,还存在很大的知识差距。中上层鱼类的独特适应性需要纳入管理策略以及栖息地的基础研究中。
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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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