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Unclear associations between small pelagic fish and jellyfish in several major marine ecosystems

机译:几个主要海洋生态系统中的中上层鱼类和水母之间的关联不清楚

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摘要

During the last 20 years, a series of studies has suggested trends of increasing jellyfish (Cnidaria and Ctenophora) biomass in several major ecosystems worldwide. Some of these systems have been heavily fished, causing a decline among their historically dominant small pelagic fish stocks, or have experienced environmental shifts favouring jellyfish proliferation. Apparent reduction in fish abundance alongside increasing jellyfish abundance has led to hypotheses suggesting that jellyfish in these areas could be replacing small planktivorous fish through resource competition and/or through predation on early life stages of fish. In this study, we test these hypotheses using extended and published data of jellyfish, small pelagic fish and crustacean zooplankton biomass from four major ecosystems within the period of 1960 to 2014: the Southeastern Bering Sea, the Black Sea, the Northern California Current and the Northern Benguela. Except for a negative association between jellyfish and crustacean zooplankton in the Black Sea, we found no evidence of jellyfish biomass being related to the biomass of small pelagic fish nor to a common crustacean zooplankton resource. Calculations of the energy requirements of small pelagic fish and jellyfish stocks in the most recent years suggest that fish predation on crustacean zooplankton is 2–30 times higher than jellyfish predation, depending on ecosystem. However, compared with available historical data in the Southeastern Bering Sea and the Black Sea, it is evident that jellyfish have increased their share of the common resource, and that jellyfish can account for up to 30% of the combined fish-jellyfish energy consumption. We conclude that the best available time-series data do not suggest that jellyfish are outcompeting, or have replaced, small pelagic fish on a regional scale in any of the four investigated ecosystems. However, further clarification of the role of jellyfish requires higher-resolution spatial, temporal and taxonomic sampling of the pelagic community.
机译:在过去的20年中,一系列研究提出了全球几个主要生态系统中水母(刺C和Ctenophora)生物量增加的趋势。这些系统中有一些已经被严重捕捞,导致其历史上占主导地位的小型中上层鱼类种群减少,或者经历了有利于水母繁殖的环境变化。鱼丰度的明显降低以及海fish丰度的增加导致了这样的假设:这些地区的水母可以通过资源竞争和/或通过捕食早期鱼类来替代小型浮游鱼类。在这项研究中,我们使用1960年至2014年期间来自四个主要生态系统的水母,小型中上层鱼类和甲壳类动物浮游生物的扩展和公开数据来检验这些假说:东南白令海,黑海,北加利福尼亚洋流和北本格拉。除了在黑海中水母与甲壳类浮游动物之间存在负相关关系外,我们没有发现水母生物量与小中上层鱼类的生物量或共同的甲壳类浮游动物资源有关的证据。根据最近几年中小型中上层鱼类和水母种群的能量需求计算,根据生态系统的不同,甲壳类浮游动物的鱼类捕食能力比水母捕食能力高2–30倍。但是,与白令海东南部和黑海的可用历史数据相比,很明显,水母增加了其共同资源的份额,并且水母最多可占鱼水母能源消费总量的30%。我们得出的结论是,在四个被调查的生态系统中的任何一个中,最佳的时间序列数据并不表明水母在区域规模上胜过或替代了小型中上层鱼类。但是,要进一步明确水母的作用,就需要对浮游鱼类群落进行更高分辨率的空间,时间和分类学采样。

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