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首页> 外文期刊>Oceanographic Literature Review >Biological Calcification Rate and Species-Specific Contributions of Coccolithophores to Total Calcite Inventory in the Eastern Indian Ocean
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Biological Calcification Rate and Species-Specific Contributions of Coccolithophores to Total Calcite Inventory in the Eastern Indian Ocean

机译:Cocolithophores在东部印度洋中的Coccolithophores的生物钙化率和物种特异性贡献

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摘要

Coccolithophores are calcifying protists that have a significant role in marine biological pump through calcite production (CP). We determined the biological calcification rate and ecologically key species (e.g., Gephyrocapsa oceanica) contribution to total calcite stocks in the eastern Indian Ocean (EIO) during spring intermonsoon; this region was quite undersampled compared to other oceanic regions. Our results indicated that the numerically dominant species are of great importance to cell calcite even with low cellular calcite. CP rate in EIO ranged from 0.148 to 85.017 μmol C·m~(-3)· day~(-1) in the entire data set, which was lower than those in the global ocean. Coccolithophores contributed 8.5% of total phytoplankton carbon fixation. CP acted as a function of light irradiance in the euphotic zone, while a decoupling between CP and primary productivity was found in most of the bottom of euphotic zone. To some degree, this decoupling indicated calcification was more nitrate dependent and less light dependent than photosynthesis. CP/primary productivity ratios were highly variable in our database and were possibly influenced by photoacclimation across various coccolithophore species. As roughly estimated, the turnover rate of coccolith calcite took values around 0.02-0.05 day1. The association between paniculate organic carbon and calcite stocks implied a potential increasing ballast as depth increase. The current profiles of calcification and associated biogeochemical elements obtained from this field study helps our understanding about characteristics of biological pump in the EIO and are valuable for estimating calcification rate in the region using satellite data and numerical modeling.
机译:Coccolithophores正在通过方解石生产(CP)在海洋生物泵中具有重要作用的原因。在春季晶体中,我们确定了生物钙化率和生态关键物种(例如,Gephyrocapsa Oceanica)对东方印度洋(EIO)的总方便股的贡献;与其他海洋区相比,该地区非常缺乏采样。我们的结果表明,即使具有低细胞方解石,数量显性种类对细胞方解石具有重要意义。 EIO中的CP速率范围为0.148至85.017μmolc·m〜(-3)·日〜(-1),其数据集低于全球海洋中的数据集。 Coccolithophores占Phytoplankton碳固定的8.5%。 CP作为Euphotic区中的光辐照度的函数,而在Euphotic区的大部分底部都发现了CP和初级生产率之间的解耦。在某种程度上,这种去耦表明钙化比光合作用更富有硝酸盐依赖性和较少的光。 CP /初级生产率比在我们的数据库中具有高度变量,可能受到各种COCCOLTHOPHORE物种的光谱的影响。如粗略估计,CocColith Calcite的周转率为0.02-0.05天的值。群体有机碳和方解石股之间的关联隐含着随着深度增加的潜在增加的镇流器。从该田间研究获得的钙化和相关生物地球化学元素的当前谱有助于我们理解EIO中的生物泵的特性,并且对于使用卫星数据和数值建模估计该地区的钙化率的有价值。

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  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2139-2140|共2页
  • 作者

    H. Liu; M. Yun; X. Zhang;

  • 作者单位

    Tianjin Key Laboratory of Marine Resources and Chemistry Tianjin University of Science and Technology Tianjin China;

    Tianjin Key Laboratory of Marine Resources and Chemistry Tianjin University of Science and Technology Tianjin China;

    Tianjin Key Laboratory of Marine Resources and Chemistry Tianjin University of Science and Technology Tianjin China;

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