Department of Earth and Planetary Sciences, Weizmann Institute of Science, Rehovot 76100, Israel.
Sorbonne Universités (UPMC, Université Paris 06)-CNRS-IRD-MNHN, LOCEAN-IPSL Laboratory, 4 Place Jussieu, 75005 Paris, France.
Nat Commun. 2017 Mar 31;8:14868. doi: 10.1038/ncomms14868.
Spatial characteristics of phytoplankton blooms often reflect the horizontal transport properties of the oceanic turbulent flow in which they are embedded. Classically, bloom response to horizontal stirring is regarded in terms of generation of patchiness following large-scale bloom initiation. Here, using satellite observations from the North Pacific Subtropical Gyre and a simple ecosystem model, we show that the opposite scenario of turbulence dispersing and diluting fine-scale (∼1-100 km) nutrient-enriched water patches has the critical effect of regulating the dynamics of nutrients-phytoplankton-zooplankton ecosystems and enhancing accumulation of photosynthetic biomass in low-nutrient oceanic environments. A key factor in determining ecological and biogeochemical consequences of turbulent stirring is the horizontal dilution rate, which depends on the effective eddy diffusivity and surface area of the enriched patches. Implementation of the notion of horizontal dilution rate explains quantitatively plankton response to turbulence and improves our ability to represent ecological and biogeochemical processes in oligotrophic oceans.
浮游植物水华的空间特征通常反映了其所处的海洋紊流的水平输运特性。传统上,水华对水平搅拌的响应是根据大尺度水华起始后的斑块生成来进行描述的。在这里,我们利用北太平洋亚热带环流区的卫星观测数据和一个简单的生态系统模型,表明相反的情景是,紊流会扩散和稀释小尺度(∼1-100km)的富营养水斑块,这对调节营养物质-浮游植物-浮游动物生态系统的动力学和增强低营养海洋环境中光合作用生物量的积累具有关键作用。决定紊流搅拌生态和生物地球化学后果的一个关键因素是水平稀释率,它取决于富营养斑块的有效涡动扩散率和表面积。实施水平稀释率的概念可以定量解释浮游生物对紊流的响应,并提高我们在贫营养海洋中代表生态和生物地球化学过程的能力。