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Understanding Diatoms' Past and Future Biogeochemical Role in High-Latitude Seas

机译:了解硅藻的过去和未来生物地球化学在高层海洋中的作用

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Because cold-water diatoms' baseline elemental density (BED) is substantially higher than temperate diatoms, previous polar studies may have underestimated diatoms' contribution to elemental standing stocks, contribution to particulate organic carbon (POC) export and incorrectly modeled their susceptibility to future warming. We apply cold-water diatom allometry to Arctic field samples and derive diatom growth rates ranging from 0.01-0.68 day(-1), versus unrealistically high rates estimated using temperate diatom allometry. Reanalysis of published Southern Ocean data (Antarctic Environment and Southern Ocean Process Study and European Iron Fertilization Experiment) shows that diatom POC was significantly underestimated and diatoms could have accounted for a majority of POC export. However, during some field programs (Kerguelen Plateau), temperate allometry properly accounted for diatom biomass. We also predict that warming sea surface temperature may alter high-latitude diatom BED, suggesting that even if abundances do not change with warming, the reduced diatom BED will likely lower the trophic-transfer efficiency and their total carbon flow to consumers.
机译:由于冷水硅藻基线元素密度(床)基本上高于温带硅藻,所以以前的极地研究可能会低估硅藻对元素常规股的贡献,对颗粒化有机碳(POC)出口的贡献和错误地建模他们对未来变暖的敏感性。我们将冷水硅藻体变量施加至北极场样品,并导出从0.01-0.68天(-1)的硅藻生长速率,而不是使用温带硅藻体估计的不切实际的高速率。公布的南海数据(南极环境和南海流程研究和欧洲铁肥实验)表明,硅藻派普科目明显低估,硅藻可能占大多数POC出口。然而,在某些田间计划(Kerguelen Plateau)期间,温带血液测量适当地占硅藻生物质。我们还预测温暖的海面温度可能会改变高纬度的硅藻床,表明即使丰度不随变暖而改变,降低的硅藻床可能会降低营养转移效率及其对消费者的总碳流量。

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