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Unexpected winter phytoplankton blooms in the North Atlantic subpolar gyre

机译:意想不到的冬天浮游植物在北大西洋亚·斯科尔·韦尔绽放

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摘要

In mid- and high-latitude oceans, winter surface cooling and strong winds drive turbulent mixing that carries phytoplankton to depths of several hundred metres, well below the sunlit layer. This downward mixing, in combination with low solar radiation, drastically limits phytoplankton growth during the winter, especially that of the diatoms and other species that are involved in seeding the spring bloom. Here we present observational evidence for widespread winter phytoplankton blooms in a large part of the North Atlantic subpolar gyre from autonomous profiling floats equipped with biogeochemical sensors. These blooms were triggered by intermittent restratification of the mixed layer when mixed-layer eddies led to a horizontal transport of lighter water over denser layers. Combining a bio-optical index with complementary chemotaxonomic and modelling approaches, we show that these restratification events increase phytoplankton residence time in the sunlight zone, resulting in greater light interception and the emergence of winter blooms. Restratification also caused a phytoplankton community shift from pico- and nanophytoplankton to phototrophic diatoms. We conclude that transient winter blooms can maintain active diatom populations throughout the winter months, directly seeding the spring bloom and potentially making a significant contribution to over-winter carbon export.
机译:在中高纬度的海洋中,冬季表面冷却和强风驱动湍流混合,将浮游植物携带到几百米的深度,远低于阳光照射层。这种向下混合与低太阳辐射,大幅度地限制在冬季的浮游植物生长,尤其是硅藻和其他参与春天绽放的物种的脂肪组合。在这里,我们在北大西洋亚底乐在配备生物地良传感器的自主分析浮子的大部分北大西洋亚波兰艺术中展示了广泛冬季浮游植物的观察证据。当混合层涡流导致更浅的水的水平传输时,通过间歇地抑制混合层的间歇抑制触发这些绽放。将生物光学指数与互补的趋化性和建模方法相结合,我们表明这些雷富化事件在阳光区中增加了浮游植物的停留时间,从而提高了冬季盛开的光明拦截和出现。克制还引起了从微微和纳米薄壁的浮游植物群落转变为光营养硅藻。我们得出结论,瞬间冬季盛开可以在整个冬季保持活跃的硅藻人群,直接播种春天绽放,潜在地对冬季过度碳出口产生重大贡献。

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  • 来源
    《Nature geoscience》 |2017年第11期|共4页
  • 作者单位

    UPMC Univ Paris 06 CNRS Sorbonne Univ LOV Observ Oceanol F-06230 Villefranche Sur Mer France;

    UPMC Univ Paris 06 CNRS Sorbonne Univ LOV Observ Oceanol F-06230 Villefranche Sur Mer France;

    Stn Zool Anton Dohrn Lab Ecol &

    Evolut Plankton I-80121 Naples Italy;

    UPMC Univ Paris 06 CNRS Sorbonne Univ LOV Observ Oceanol F-06230 Villefranche Sur Mer France;

    UPMC Univ Paris 06 CNRS Sorbonne Univ LOV Observ Oceanol F-06230 Villefranche Sur Mer France;

    UPMC Univ Paris 06 CNRS Sorbonne Univ LOV Observ Oceanol F-06230 Villefranche Sur Mer France;

    Stn Zool Anton Dohrn Lab Ecol &

    Evolut Plankton I-80121 Naples Italy;

    Stn Zool Anton Dohrn Lab Ecol &

    Evolut Plankton I-80121 Naples Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
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