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Probing the bioavailability of dissolved iron to marine eukaryotic phytoplankton using in situ single cell iron quotas
Global Biogeochemical Cycles ( IF 5.2 ) Pub Date : 2021-07-04 , DOI: 10.1029/2021gb006979
Yeala Shaked 1, 2 , Benjamin S Twining 3 , Alessandro Tagliabue 4 , Maria T Maldonado 5
Affiliation  

We present a new approach for quantifying the bioavailability of dissolved iron (dFe) to oceanic phytoplankton. Bioavailability is defined using an uptake rate constant (kin-app) computed by combining data on: i) Fe content of individual in situ phytoplankton cells; ii) concurrently-determined seawater dFe concentrations; and iii) growth rates estimated from the PISCES model. We examined 930 phytoplankton cells, collected between 2002-2016 from 45 surface stations during 11 research cruises. This approach is only valid for cells that have upregulated their high-affinity Fe uptake system, so data was screened, yielding 560 single cell kin-app values from 31 low-Fe stations. We normalized kin-app to cell surface area (S.A.) to account for cell-size differences.

中文翻译:

利用原位单细胞铁配额探索溶解铁对海洋真核浮游植物的生物利用度

我们提出了一种量化溶解铁 (dFe) 对海洋浮游植物的生物利用度的新方法。生物利用度是使用通过结合以下数据计算得出的吸收速率常数 (k in-app ) 定义的: i) 单个原位浮游植物细胞的铁含量;ii) 同时确定的海水 dFe 浓度;iii) 根据 PISCES 模型估算的增长率。我们检查了 930 个浮游植物细胞,这些细胞是 2002 年至 2016 年间在 11 次研究巡航期间从 45 个地面站收集的。这种方法仅对已上调其高亲和力 Fe 摄取系统的细胞有效,因此对数据进行了筛选,从 31 个低 Fe 站产生了 560 个单细胞 k应用内值。我们在应用内标准化了 k细胞表面积 (SA) 以解释细胞大小的差异。
更新日期:2021-07-05
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