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机器学习在贫营养海洋涡旋中发现了变暖与初级生产力降低之间的强烈关联。

Machine learning identifies a strong association between warming and reduced primary productivity in an oligotrophic ocean gyre.

机构信息

Department of Integrative Marine Ecology, Stazione Zoologica Anton Dohrn, Villa Comunale, I-80121, Naples, Italy.

Università degli Studi del Sannio, Via Delle Puglie 76, I-82100, Benevento, Italy.

出版信息

Sci Rep. 2020 Feb 25;10(1):3287. doi: 10.1038/s41598-020-59989-y.

Abstract

Phytoplankton play key roles in the oceans by regulating global biogeochemical cycles and production in marine food webs. Global warming is thought to affect phytoplankton production both directly, by impacting their photosynthetic metabolism, and indirectly by modifying the physical environment in which they grow. In this respect, the Bermuda Atlantic Time-series Study (BATS) in the Sargasso Sea (North Atlantic gyre) provides a unique opportunity to explore effects of warming on phytoplankton production across the vast oligotrophic ocean regions because it is one of the few multidecadal records of measured net primary productivity (NPP). We analysed the time series of phytoplankton primary productivity at BATS site using machine learning techniques (ML) to show that increased water temperature over a 27-year period (1990-2016), and the consequent weakening of vertical mixing in the upper ocean, induced a negative feedback on phytoplankton productivity by reducing the availability of essential resources, nitrogen and light. The unbalanced availability of these resources with warming, coupled with ecological changes at the community level, is expected to intensify the oligotrophic state of open-ocean regions that are far from land-based nutrient sources.

摘要

浮游植物通过调节全球生物地球化学循环和海洋食物网中的生产力,在海洋中发挥着关键作用。人们认为,全球变暖既会直接影响浮游植物的光合作用代谢,从而影响浮游植物的生产力,也会通过改变它们生长的物理环境间接地影响浮游植物的生产力。在这方面,北大西洋马尾藻海(大西洋涡旋)的百慕大大西洋时间序列研究(BATS)为探索变暖对广阔贫营养海洋区域浮游植物生产力的影响提供了一个独特的机会,因为这是为数不多的经过测量的净初级生产力(NPP)多年记录之一。我们使用机器学习技术(ML)分析了 BATS 站点的浮游植物初级生产力时间序列,结果表明,在 27 年的时间里(1990-2016 年),水温升高,以及由此导致的海洋上层垂直混合减弱,通过减少必需资源(氮和光)的供应,对浮游植物生产力产生了负反馈。随着变暖,这些资源的供应不平衡,加上群落水平的生态变化,预计将加剧远离陆地营养源的开阔海洋区域的贫营养状态。

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