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Long photoperiods sustain high pH in Arctic kelp forests

机译:长光周期在北极海带森林中维持高pH

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摘要

Concern on the impacts of ocean acidification on calcifiers, such as bivalves, sea urchins, and foraminifers, has led to efforts to understand the controls on pH in their habitats, which include kelp forests and seagrass meadows. The metabolism of these habitats can lead to diel fluctuation in pH with increases during the day and declines at night, suggesting no net effect on pH at time scales longer than daily. We examined the capacity of subarctic and Arctic kelps to up-regulate pH in situ and experimentally tested the role of photoperiod in determining the capacity of Arctic macrophytes to up-regulate pH. Field observations at photoperiods of 15 and 24 hours in Greenland combined with experimental manipulations of photoperiod show that photoperiods longer than 21 hours, characteristic of Arctic summers, are conducive to sustained up-regulation of pH by kelp photosynthesis. We report a gradual increase in pH of 0.15 units and a parallel decline in pCO2 of 100 parts per million over a 10-day period in an Arctic kelp forest over midsummer, with ample scope for continued pH increase during the months of continuous daylight. Experimental increase in CO2 concentration further stimulated the capacity of macrophytes to deplete CO2 and increase pH. We conclude that long photoperiods in Arctic summers support sustained up-regulation of pH in kelp forests, with potential benefits for calcifiers, and propose that this mechanism may increase with the projected expansion of Arctic vegetation in response to warming and loss of sea ice.
机译:对海洋酸化对钙化剂(例如双壳类,海胆和有孔虫)的影响的关注,导致人们努力了解其生境(包括海藻森林和海草草甸)对pH的控制。这些栖息地的新陈代谢会导致pH值波动,白天增加,而晚上则下降,这表明在比每天更长的时间范围内对pH值没有净影响。我们检查了北极海带和北极海带原位上调pH的能力,并通过实验测试了光周期在确定北极大型植物向上调pH的能力中的作用。格陵兰岛15和24小时的光周期的野外观察以及对光周期的实验处理表明,北极夏季特有的长于21小时的光周期有助于海带光合作用持续地上调pH值。我们报告说,在盛夏的北极海带森林中,在10天的时间内,pH值逐渐增加了0.15个单位,而pCO2却平行下降了百万分之100,在连续的日光照射下,有足够的空间继续增加pH值。实验中CO2浓度的增加进一步刺激了大型植物消耗CO2和增加pH的能力。我们得出的结论是,北极夏季的长光周期支持海带森林中pH的持续上调,这对钙化剂具有潜在的好处,并提出这种机制可能随着北极植被的预计扩张而增加,以应对气候变暖和海冰流失。

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