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Stoichiometric impacts of increased carbon dioxide on a planktonic herbivore

机译:二氧化碳增加对浮游草食动物的化学计量影响

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The partial pressure of carbon dioxide (pCO(2)) in lake ecosystems varies over four orders of magnitude and is affected by local and global environmental perturbations associated with both natural and anthropogenic processes. Little is known, however, about how changes in pCO(2) extend into the function and structure of food webs in freshwater ecosystems. To fill this gap, we performed laboratory experiments using the ecologically important planktonic herbivore Daphnia and its algal prey under a natural range of pCO(2) with low light and phosphorus supplies. The experiment showed that increased pCO(2) stimulated algal growth but reduced algal P:C ratio. When feeding on algae grown under high pCO(2), herbivore growth decreased regardless of algal abundance. Thus, high CO2-raised algae were poor food for Daphnia. Short-term experimental supplementation of PO4 raised the P content of the high CO2-raised algae and improved Daphnia growth, indicating that low Daphnia growth rates under high pCO(2) conditions were due to lowered P content in the algal food. These results suggest that, in freshwater ecosystems with low nutrient supplies, natural 'processes as well as anthropogenic perturbations resulting in increased pCO(2) enhance algal production but reduce energy and mass transfer efficiency to herbivores by decreasing algal nutritional quality. [References: 55]
机译:湖泊生态系统中的二氧化碳分压(pCO(2))在四个数量级上变化,并受与自然和人为过程相关的局部和全球环境扰动的影响。然而,关于pCO(2)的变化如何扩展到淡水生态系统中食物网的功能和结构方面知之甚少。为了填补这一空白,我们在具有低光照和磷供应的自然pCO(2)范围内,使用了具有重要生态意义的浮游草食性食草动物水蚤及其藻类猎物进行了实验室实验。实验表明,增加的pCO(2)刺激了藻类的生长,但降低了藻类的P:C比。当饲喂在高pCO(2)下生长的藻类时,无论藻类的丰度如何,草食动物的生长都会减少。因此,二氧化碳含量高的藻类是水蚤的劣质食物。短期实验性补充PO4可以提高高CO2浓度藻类的P含量并改善水蚤的生长,这表明在高pCO(2)条件下水蚤的低增长率是由于藻类食物中的P含量降低所致。这些结果表明,在营养供应不足的淡水生态系统中,自然过程以及人为扰动导致pCO(2)增加,从而通过降低藻类营养质量而提高了藻类产量,但降低了向草食动物的能量和质量转移效率。 [参考:55]

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