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Spatial dynamics of the bearded goby and its key fish predators off Namibia vary with climate and oxygen availability

机译:大胡子虾虎鱼及其在纳米比亚以外主要鱼类捕食者的空间动态随气候和氧气供应而变化

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摘要

Hypoxia [O-22.0mLL(-1) (87 mol kg(-1))] and severely hypoxic water masses [O-20.5mLL(-1) (21.8molkg(-1))] are increasing in coastal marine ecosystems due to eutrophication and warming. Here, we investigate the response of the suboxic-tolerant endemic fish, Sufflogobius bibarbatus, to variations in the thermal and oxygen environment, as well as to predation pressure, using 22yr worth of satellite and in situ data. We show that environmental variation and predation pressure affect the goby population, which has expanded over the last decade while that of horse mackerel has contracted. These changes co-occurred with a general warming in the north and central shelf areas (north of 24.5 degrees S). Spring warming positively affected both goby and hake abundances, but not the horse mackerel, suggesting different responses to surface temperature. The goby habitat contracted when predators were abundant, particularly in the north, which is the fringe of its distributional area. The implications of the differential tolerance of gobies and their predators for climate variations are discussed.
机译:缺氧[O-2 <2.0mLL(-1)(87 mol kg(-1))]和严重缺氧的水团[O-2 <0.5mLL(-1)(21.8molkg(-1))]不断增加富营养化和变暖造成的沿海海洋生态系统。在这里,我们使用价值22年的卫星和原位数据,研究了耐低氧的地方性鱼类Sufflogobius bibarbatus对热和氧气环境的变化以及对捕食压力的响应。我们表明,环境变化和捕食压力会影响虾虎鱼种群,在过去十年中,虾虎鱼种群数量有所增加,而鲭鱼则有所减少。这些变化与北部和中部陆架区域(北半球24.5度)普遍变暖共同发生。春季变暖对虾虎鱼和无须鳕的丰富度有积极影响,但对鲭鱼则没有影响,表明对地表温度的反应不同。当捕食者丰富时,虾虎的栖息地收缩,特别是在北部,这是其分布区域的边缘。讨论了虾虎鱼及其捕食者的差异容忍度对气候变化的影响。

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