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A high-resolution time-depth view of dimethylsulphide cycling in the surface sea

机译:二甲基硫在海面循环的高分辨率时深度视图

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摘要

Emission of the trace gas dimethylsulphide (DMS) from the ocean influences the chemical and optical properties of the atmosphere, and the olfactory landscape for foraging marine birds, turtles and mammals. DMS concentration has been seen to vary across seasons and latitudes with plankton taxonomy and activity, and following the seascape of ocean’s physics. However, whether and how does it vary at the time scales of meteorology and day-night cycles is largely unknown. Here we used high-resolution measurements over time and depth within coherent water patches in the open sea to show that DMS concentration responded rapidly but resiliently to mesoscale meteorological perturbation. Further, it varied over diel cycles in conjunction with rhythmic photobiological indicators in phytoplankton. Combining data and modelling, we show that sunlight switches and tunes the balance between net biological production and abiotic losses. This is an outstanding example of how biological diel rhythms affect biogeochemical processes.
机译:从海洋中排放的痕量二甲基硫醚(DMS)会影响大气的化学和光学特性,并影响觅食海鸟,海龟和哺乳动物的嗅觉景观。人们已经发现,DMS的浓度会随着季节和纬度的变化,随着浮游生物的分类和活动以及海洋物理的海景而变化。但是,在气象学和昼夜周期的时间尺度上,它是否以及如何变化尚不清楚。在这里,我们使用了公海中相干水域中随时间和深度进行的高分辨率测量,以显示DMS浓度对中尺度气象扰动做出了快速但有弹性的响应。此外,它与浮游植物中的节律性光生物学指标一起在整个diel周期内变化。结合数据和建模,我们表明阳光可以切换并调节净生物产量和非生物损失之间的平衡。这是生物迪尔节律如何影响生物地球化学过程的杰出例子。

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