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首页> 外文期刊>Frontiers in Marine Science >Exploring the Influence of Food and Temperature on North Sea Sandeels Using a New Dynamic Energy Budget Model
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Exploring the Influence of Food and Temperature on North Sea Sandeels Using a New Dynamic Energy Budget Model

机译:使用新的动态能量收支模型探索食物和温度对北海沙滩的影响

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The zooplanktivorous schooling fish sandeels A. marinus comprise a quarter of North Sea fish biomass and are essential food for a number of marine mammals and birds. However, in recent decades there has been a decline in the abundance of older sandeels, with increased overwinter mortality proposed as a contributor. To survive winter animals require a minimum energy reserve which is determined by temperature, prey abundance, and possibly prey size. Here a new dynamic energy budget model is created to determine the influence of food and temperature on sandeel energy dynamics. The model hindcasts changes in energy and survival between 2000 and 2008, a period of pronounced stock decline in the northwestern North Sea. Overwinter starvation mortality was a large contributor towards a recent decline in sandeels in northern UK waters. Highest over-winter mortality rates were recorded for juveniles and not individuals aged 1 or over due to the effect of weight-specific metabolism. However, a sensitivity analysis of the model suggests that mortality rates are more sensitive to changes in copepod abundance in the build up to overwintering rather than temperature during overwintering. Further, projections show that temperature rises are negated by increases in large, but not small copepods. The conclusion is that food-driven size-selective starvation mortality contributed to the northwestern North Sea stock decline and that indirect food web effects of climate change are greater than direct physiological effects on sandeels.
机译:带有浮游动物的学校鱼类桑sandA。marinus占北海鱼类生物量的四分之一,是许多海洋哺乳动物和鸟类的必需食物。然而,在最近的几十年中,较老的桑e的数量减少了,提议的越冬死亡率增加了。为了使冬季动物生存,需要最低的能量储备,该能量储备取决于温度,猎物的丰度以及可能的猎物大小。在这里,创建了一个新的动态能源预算模型,以确定食物和温度对sandeel能源动力学的影响。该模型预测了2000年至2008年之间能源和生存的变化,这是北海西北部明显的储量下降时期。越冬饥饿死亡率是导致近期英国北部水域桑recent数量下降的主要原因。由于体重特异性代谢的影响,未成年人(而非1岁或1岁以上)的整个冬季死亡率最高。但是,该模型的敏感性分析表明,死亡率对越冬期间co足足动物数量的变化更敏感,而不是越冬期间的温度。此外,预测表明,大型co足类的升高可抵消温度的升高。结论是,食物驱动的尺寸选择饥饿死亡率导致西北西北海种群减少,气候变化对食物的间接食物网效应大于对桑e的直接生理效应。

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