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沿海加勒比海洋生态系统中鱼类和无脊椎动物的营养化学计量。

Nutrient stoichiometry of fishes and invertebrates in coastal marine Caribbean ecosystems.

机构信息

Department of Ecology and Evolutionary Biology, University of Michigan, Ann Arbor, Michigan, 48109, USA.

出版信息

Ecology. 2021 Dec;102(12):e03533. doi: 10.1002/ecy.3533. Epub 2021 Oct 11.

Abstract

The importance of animals for mediating ecosystem processes has long been recognized by ecologists. Traditionally, consumer-mediated dynamics have been considered through consumptive pathways such as predation and herbivory. Yet, consumers also play critical roles in mediating "bottom-up" pathways associated with nutrient dynamics. Foundational research demonstrated the importance of these dynamics in terrestrial, freshwater, and pelagic marine ecosystems, and introduced novel perspectives on the role of animals such as wildebeest, lacustrine fishes, and zooplankton, respectively, for providing an important source of nutrients that limit primary production. This research inspired a substantial body of research on the importance of consumer-mediated nutrient dynamics for ecosystem function. Despite this, only recently have ecologists begun to extend this line of thinking toward coastal marine ecosystems. The data presented herein is a comprehensive study of consumer nutrient dynamics from invertebrates and fishes that live in subtropical and tropical Caribbean coastal marine waters, including mangroves, seagrass beds, and coral reefs. This data set represents the largest, to my knowledge, published nutrient stoichiometry data set from a single system, including estimates of excretion rates (n = 900 individuals total; n = 667 individual fish, size range 0.14-2,597 g [2-107 cm]; n = 233 invertebrates, size range 0.04-487 g), and somatic nutrient content analyses (n = 658 individuals total, n = 494 vertebrates, n = 164 invertebrates). These data also include δ C and δ N stable isotopes of whole body, body mass (wet mass), taxonomic identification to class-level, and functional group classification. These data have been used to test basic ecological theory, to scale individual-level processes to coral reef, mangrove, and seagrass ecosystems, and to understand the role of human impacts for mitigating consumer-mediated nutrient dynamics. While these findings have helped improve our understanding of nutrient dynamics in tropical coastal ecosystems, these data offer a wealth of additional promise for advancing ecological theory and applied science in tropical marine ecosystems and beyond. Users are free to use and analyze the data. Attribution should be given to this presentation of the data.

摘要

动物在介导生态系统过程方面的重要性长期以来一直被生态学家所认识。传统上,通过捕食和食草等消耗性途径来考虑消费者介导的动态。然而,消费者在介导与营养动态相关的“自下而上”途径方面也起着至关重要的作用。基础研究表明,这些动态在陆地、淡水和远洋海洋生态系统中非常重要,并分别为角马、湖泊鱼类和浮游动物等动物在提供限制初级生产的重要营养源方面的作用提供了新的视角。这项研究激发了大量关于消费者介导的营养动态对生态系统功能重要性的研究。尽管如此,直到最近,生态学家才开始将这种思维方式扩展到沿海海洋生态系统。本文介绍的是一项关于生活在亚热带和热带加勒比沿海海域的无脊椎动物和鱼类的消费者营养动态的综合研究,包括红树林、海草床和珊瑚礁。据我所知,这是单一系统中发表的最大的营养化学计量数据集,包括排泄率估计值(共 900 个个体;共 667 个个体鱼类,大小范围为 0.14-2597g[2-107cm];共 233 个无脊椎动物,大小范围为 0.04-487g)和体营养物质含量分析(共 658 个个体,494 个脊椎动物,164 个无脊椎动物)。这些数据还包括整个身体、体质量(湿质量)、分类级别分类的分类鉴定以及功能组分类的δC 和δN 稳定同位素。这些数据已被用于测试基本生态理论,将个体水平的过程扩展到珊瑚礁、红树林和海草生态系统,并了解人类影响对减轻消费者介导的营养动态的作用。虽然这些发现有助于提高我们对热带沿海生态系统中营养动态的理解,但这些数据为推进热带海洋生态系统及其他生态系统的生态理论和应用科学提供了丰富的额外潜力。用户可以自由使用和分析这些数据。应归功于本数据的呈现。

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