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Synchrony is more than its top-down and climatic parts: interacting Moran effects on phytoplankton in British seas

机译:同步不仅仅是其自上而下和气候的一部分:相互作用的莫兰效应对英国海域浮游植物的影响

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Author summary The size of the annual bloom in phytoplankton can vary similarly from year to year in different parts of the same oceanic region, a phenomenon called spatial synchrony. The growth of phytoplankton near the ocean surface is the foundation of marine food webs, which include numerous commercially exploited species. And spatial synchrony in phytoplankton abundance time series can have consequences for the total production of marine ecosystems. Therefore we studied the spatial synchrony of fluctuations in green phytoplankton abundance in 26 areas in seas around the British Isles. Variation and synchrony can occur differently on long and short timescales. We used a novel wavelet-based approach to examine long- and short-timescale fluctuations separately, and we thereby show that slow synchronous fluctuations in phytoplankton can be explained by the effects of slow synchronous fluctuations in sea surface temperature and related oceanographic phenomena, and by the effects of synchronous fluctuations in a zooplankton predator. Crucially, these drivers reinforce one another in a super-additive way, the interaction constituting a new mechanism of synchrony. Future changes in the climate or changes in predation are likely to influence phytoplankton synchrony via this mechanism and hence may influence the aggregate productivity of British seas.
机译:作者摘要在同一海洋区域的不同区域,浮游植物的年开花量每年都可能类似地变化,这种现象称为空间同步。海洋表面附近浮游植物的生长是海洋食物网的基础,海洋食物网包括许多商业开发的物种。浮游植物丰度时间序列的空间同步性可能对海洋生态系统的总产量产生影响。因此,我们研究了不列颠群岛周围海域26个区域中绿色浮游植物丰度波动的空间同步性。长短时间尺度上的变化和同步可能会有所不同。我们使用一种新颖的基于小波的方法分别检查了长时尺度和短时尺度的波动,从而表明浮游植物的缓慢同步波动可以通过海面温度缓慢同步波动和相关海洋现象的影响来解释,并且通过浮游动物捕食者同步波动的影响。至关重要的是,这些驱动程序以一种超加性的方式相互增强,这种相互作用构成了一种新的同步机制。未来的气候变化或捕食变化可能通过这种机制影响浮游植物的同步性,因此可能影响英国海域的总生产力。

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