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首页> 外文期刊>Marine ecology progress series >The spatial distribution of euphausiids and walleye pollock in the eastern Bering Sea does not imply top-down control by predation
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The spatial distribution of euphausiids and walleye pollock in the eastern Bering Sea does not imply top-down control by predation

机译:白令海东部的金鱼up和角膜白斑的空间分布并不意味着通过捕食自上而下的控制

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Although euphausiids of the genus Thysanoessa ('krill') are a key zooplankton taxon in the Bering Sea ecosystem, the processes controlling variation in the standing stock of these animals are not well understood. Both forcing by temperature ('bottom-up') and predation ('top-down') have been proposed. If strong top-down forcing were present, a negative relationship would be expected between the standing stock of euphausiids and that of walleye pollock Gadus chalcogrammus, their single most important predator in the Bering Sea. We developed multiple regression models using survey data collected over several years to test the hypothesis of a negative relationship between local (mesoscale) densities of these animals. We used the models to evaluate the relative importance of pollock biomass and water temperature in predicting euphau-siid biomass, and found that temperature was a far better predictor, a result that is not consistent with dominant top-down control of euphausiids by pollock predation.
机译:尽管Thysanoessa属的磷虾是“白令海”生态系统中的一个重要浮游动物类群,但控制这些动物常备种群变化的过程尚不清楚。已经提出了温度强迫(“自下而上”)和掠食行为(“自上而下”)。如果存在强烈的自上而下的强迫作用,则预计在虾类的常备种群和白眼海域的鳕(英语:walleye pollock Gadus chalcogrammus)的常备种群之间是负相关的。我们使用几年来收集的调查数据开发了多种回归模型,以检验这些动物局部(中尺度)密度之间负相关的假设。我们使用该模型评估了鳕鱼生物量和水温在预测鱼腥草生物量中的相对重要性,发现温度是更好的预测指标,这一结果与通过鳕鱼捕食对虾的主要自上而下控制不符。

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