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Advection by ocean currents modifies phytoplankton size structure

机译:洋流对流改变了浮游植物的大小结构

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摘要

Advection by ocean currents modifies phytoplankton size structure at small scales (1–10 cm) by aggregating cells in different regions of the flow depending on their size. This effect is caused by the inertia of the cells relative to the displaced fluid. It is considered that, at larger scales (greater than or equal to 1 km), biological processes regulate the heterogeneity in size structure. Here, we provide observational evidence of heterogeneity in phytoplankton size structure driven by ocean currents at relatively large scales (1–10 km). Our results reveal changes in the phytoplankton size distribution associated with the coastal circulation patterns. A numerical model that incorporates the inertial properties of phytoplankton confirms the role of advection on the distribution of phytoplankton according to their size except in areas with enhanced nutrient inputs where phytoplankton dynamics is ruled by other processes. The observed preferential concentration mechanism has important ecological consequences that range from the phytoplankton level to the whole ecosystem.
机译:洋流平流通过聚集流的不同区域中的细胞(取决于大小),在小规模(1–10厘米)处改变了浮游植物的大小结构。这种影响是由细胞相对于置换流体的惯性引起的。据认为,在更大的规模(大于或等于1 km)上,生物过程调节了大小结构的异质性。在这里,我们提供了由较大规模(1-10 km)的洋流驱动的浮游植物大小结构异质性的观测证据。我们的结果揭示了与沿海环流模式相关的浮游植物大小分布的变化。结合浮游植物惯性特性的数值模型证实了平流对浮游植物分布的影响,取决于其大小,但在营养输入增加的地区,浮游植物的动力学受其他过程控制。观察到的优先集中机制具有重要的生态后果,其范围从浮游植物水平到整个生态系统。

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