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Diel vertical migration of Arctic zooplankton during the polar night

机译:极地之夜北极浮游动物的Diel垂直迁移

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摘要

High-latitude environments show extreme seasonal variation in physical and biological variables. The classic paradigm of Arctic marine ecosystems holds that most biological processes slow down or cease during the polar night. One key process that is generally assumed to cease during winter is diel vertical migration (DVM) of zooplankton. DVM constitutes the largest synchronized movement of biomass on the planet, and is of paramount importance for marine ecosystem function and carbon cycling. Here we present acoustic data that demonstrate a synchronized DVM behaviour of zooplankton that continues throughout the Arctic winter, in both open and ice-covered waters. We argue that even during the polar night, DVM is regulated by diel variations in solar and lunar illumination, which are at intensities far below the threshold of human perception. We also demonstrate that winter DVM is stronger in open waters compared with ice-covered waters. This suggests that the biologically mediated vertical flux of carbon will increase if there is a continued retreat of the Arctic winter sea ice cover.
机译:高纬度环境显示出生理和生物学变量的极端季节性变化。北极海洋生态系统的经典范例认为,大多数生物过程在极地之夜会减慢或停止。通常假定在冬季停止的一个关键过程是浮游动物的垂直垂直迁移(DVM)。 DVM构成了地球上生物质最大的同步运动,对于海洋生态系统功能和碳循环至关重要。在这里,我们提供的声学数据表明浮游动物的同步DVM行为在整个北极冬季(无论是在开放水域还是被冰雪覆盖的水域)都持续存在。我们认为,即使在极夜,DVM也受到日照和月光照度的变化的调节,其强度远低于人类感知的阈值。我们还证明,与冰覆盖的水域相比,冬季DVM在开放水域中更强。这表明,如果北极冬季冬季海冰覆盖继续退缩,则生物介导的碳垂直通量将增加。

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