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Trans-Atlantic responses of Calanus finmarchicus populations to basin-scale forcing associated with the North Atlantic Oscillation

机译:大西洋尾鳍对北大西洋涛动相关盆地尺度强迫的跨大西洋响应

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摘要

Populations of the copepod species Calanus finmarchicus often dominate the springtime biomass and secondary production of shelf ecosystems throughout the North Atlantic Ocean. Recently, it has been hypothesised that interannual to interdecadal fluctuations observed in such populations are driven primarily by climate-associated changes in ocean circulation. Here, we compare evidence from the North Sea and Gulf of Maine/Western Scotian Shelf (GoM/WSS) linking fluctuations in C. finmarchicus abundance to changes in ocean circulation associated with the North Atlantic Oscillation (NAO). A particularly striking contrast emerges from this Trans-Atlantic comparison: whereas the North Sea C. finmarchicus population exhibits a negative correlation with the NAO index, the GoM/WSS population exhibits a more complex, positive association with the index. The physical processes underlying these contrasting population responses are discussed in the context of regional- to basin-scale circulation changes associated with the NAO.
机译:pe足类物种Calanus finmarchicus的种群通常主导整个北大西洋的春季生物量和陆架生态系统的次级生产。最近,有一种假设认为,在这些种群中观测到的年际到年代际波动主要是由与气候相关的海洋环流变化驱动的。在这里,我们比较了北海和缅因州海湾/西斯科蒂尔大陆架(GoM / WSS)的证据,将芬克梭菌丰度的波动与与北大西洋涛动(NAO)相关的海洋环流变化联系起来。这种跨大西洋的比较产生了特别明显的对比:北海隐鳍梭菌种群与NAO指数呈负相关,而GoM / WSS种群与该指数呈更复杂,正相关。在与NAO相关的区域到盆地规模的环流变化的背景下,讨论了这些截然不同的人口反应所依据的物理过程。

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