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Biological response of Costa Rica Dome phytoplankton to Light Silicic acid and Trace metals

机译:哥斯达黎加圆顶浮游植物对光硅酸和微量金属的生物响应

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摘要

The Costa Rica Dome (CRD) is a unique open-ocean upwelling system, with picophytoplankton dominance of phytoplankton biomass and suppressed diatoms, yet paradoxically high export of biogenic silica. As a part of Flux and Zinc Experiments cruise in summer (June–July 2010), we conducted shipboard incubation experiments in the CRD to examine the potential roles of Si, Zn, Fe and light as regulating factors of phytoplankton biomass and community structure. Estimates of photosynthetic quantum yields revealed an extremely stressed phytoplankton population that responded positively to additions of silicic acid, iron and zinc and higher light conditions. Size-fractioned Chl a yielded the surprising result that picophytoplankton, as well as larger phytoplankton, responded most to treatments with added silicic acid incubated at high incident light (HL + Si). The combination of Si and HL also led to increases in cell sizes of picoplankton, notably in Synechococcus. Such a response, coupled with the recent discovery of significant intracellular accumulation of Si in some picophytoplankton, suggests that small phytoplankton could play a potentially important role in Si cycling in the CRD, which may help to explain its peculiar export characteristics.
机译:哥斯达黎加圆顶(CRD)是一个独特的开放海洋上升流系统,其浮游植物的优势主要体现在浮游生物的浮游生物和硅藻的抑制下,但生物硅的出口却高得离谱。作为夏季(2010年6月至2010年7月)航行的通量和锌实验的一部分,我们在CRD中进行了船上孵化实验,以研究Si,Zn,Fe和光作为浮游植物生物量和群落结构调节因子的潜在作用。对光合作用量子产率的估计表明,浮游植物极度受胁迫,对硅酸,铁和锌的添加以及更高的光照条件具有积极的响应。大小分级的Chla产生了令人惊讶的结果,即浮游植物和较大的浮游植物对在高入射光(HL + Si)下孵育的添加硅酸的处理反应最大。 Si和HL的组合还导致微微浮游生物的细胞大小增加,特别是在Synechococcus中。这种反应,再加上最近发现的一些浮游植物中大量硅在细胞内蓄积,表明小型浮游植物可能在CRD中的Si循环中发挥潜在的重要作用,这可能有助于解释其独特的出口特征。

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