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Role of diatoms in regulating the ocean's silicon cycle

机译:硅藻在调节海洋硅循环中的作用

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摘要

[1] Among phytoplankton the diatoms are strong competitors and contribute significantly to total global primary production. Aspects of their life history, notably their high sinking rates, make them important to the export flux of carbon into the ocean interior. Unlike the majority of other phytoplankton, they utilize silicic acid (=silicate) to construct their cell walls and are controlled by its availability and distribution. Here a simple model is developed to study the relationship between the diatoms and the ocean's silicon cycle. The ecological component of this model pits the slightly superior diatoms against all other algae, with both groups competing for phosphate while the diatoms additionally require silicic acid. The model agrees reasonably with observed distributions of nutrients and with their biogeochemical fluxes. While theoretically superior, the diatoms are held in check by the availability of silicic acid, allowing the persistence and numerical dominance of the other algae. The concentrations of both nutrients are homeostatically controlled by the phytoplankton, and resist perturbations. Analysis finds that primary production in the model is ultimately controlled by phosphate, with silicic acid abundance controlling the fraction of the total produced by diatoms. Sensitivity analyses using more ecologically detailed variants of the model find that these results are generally robust. The model's treatment of the “silica pump” hypothesis [Dugdale and Wilkerson, 1998] is also examined.
机译:[1]在浮游植物中,硅藻是强大的竞争者,并为全球初级总产量做出重要贡献。它们的生活史各方面,特别是其下沉率高,使得它们对于碳向海洋内部的出口通量至关重要。与大多数其他浮游植物不同,它们利用硅酸(=硅酸盐)构建细胞壁,并受其可用性和分布控制。在这里,开发了一个简单的模型来研究硅藻与海洋硅循环之间的关系。该模型的生态成分使硅藻略胜于其他所有藻类,两组竞争磷酸盐,而硅藻还需要硅酸。该模型与观察到的养分分布及其生物地球化学通量合理地吻合。尽管硅藻在理论上优越,但硅酸的可用性抑制了硅藻的生长,从而使其他藻类具有持久性和数值优势。两种营养素的浓度均受浮游植物的体内平衡控制,并能抵抗摄动。分析发现,模型中的主要产量最终受磷酸盐控制,而硅酸的丰度则控制了硅藻产量的一部分。使用模型的生态学更详细的变体进行的敏感性分析发现,这些结果通常是可靠的。该模型对“硅泵”假设的处理[Dugdale and Wilkerson,1998]也得到了检验。

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