首页> 外文期刊>Frontiers in Marine Science >Multi-year observations of fluorescence and backscatter at the Southern Ocean Time Series (SOTS) shed light on two distinct seasonal bio-optical regimes
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Multi-year observations of fluorescence and backscatter at the Southern Ocean Time Series (SOTS) shed light on two distinct seasonal bio-optical regimes

机译:在南洋时间序列(SOTS)上对荧光和反向散射的多年观测揭示了两种不同的季节性生物光学机制

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This work presents insights from 6 years of chlorophyll-a fluorescence and backscatter (700 nm) data at the Southern Ocean Time Series (SOTS) moorings, located in the Subantarctic Zone southwest of Tasmania. Using local calibrations from available voyage data, the fluorescence and backscatter records were related to chlorophyll-a (Chl) and particulate organic carbon (POC), allowing us to estimate and interpret carbon:Chl ratios. Surprisingly, observed carbon:Chl ratios were higher in winter than in summer, indicating that photo-acclimation of phytoplankton to decreased light levels in the deep winter mixed layer is not the main signal. Instead, the data suggest a seasonal succession of two trophodynamic regimes at SOTS: a phytoplankton-dominated community in summer, while in winter the proportion of “non-phytoplankton” POC increases. The two regimes can also be differentiated in an optical index based on fluorescence and backscatter, indicating two distinct bio-optical populations. Seasonal iron limitation and deep winter mixing in the SAZ, reaching as deep as 600m, likely play key roles in setting the stage for the observed ecological succession of the two trophodynamic regimes.
机译:这项工作提供了塔斯马尼亚西南亚南极时间序列(SOTS)系泊系统中6年叶绿素a荧光和反向散射(700 nm)数据的见解。使用来自可用航程数据的本地校准,荧光和反向散射记录与叶绿素-a(Chl)和颗粒有机碳(POC)相关,从而使我们能够估计和解释碳:Chl比。出乎意料的是,冬季观察到的碳:Chl比值比夏季高,表明在深层冬季混合层中浮游植物的光适应和降低的光照水平并不是主要信号。取而代之的是,数据表明,SOTS的两种对流动力学机制是季节性的:夏季是浮游植物为主的群落,而冬季,“非浮游植物” POC的比例增加。还可以基于荧光和反向散射在光学指数上区分这两种方案,表明两个不同的生物光学种群。 SAZ的季节性铁限制和深冬季混合,深度达600m,可能在为这两个营养动力学机制的生态演替奠定基础方面发挥了关键作用。

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