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首页> 外文期刊>Science Advances >Environmental controls on modern scleractinian coral and reef-scale calcification
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Environmental controls on modern scleractinian coral and reef-scale calcification

机译:现代巩膜珊瑚的环境控制和珊瑚礁钙化

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Modern reef-building corals sustain a wide range of ecosystem services because of their ability to build calcium carbonate reef systems. The influence of environmental variables on coral calcification rates has been extensively studied, but our understanding of their relative importance is limited by the absence of in situ observations and the ability to decouple the interactions between different properties. We show that temperature is the primary driver of coral colony ( Porites astreoides and Diploria labyrinthiformis ) and reef-scale calcification rates over a 2-year monitoring period from the Bermuda coral reef. On the basis of multimodel climate simulations (Coupled Model Intercomparison Project Phase 5) and assuming sufficient coral nutrition, our results suggest that P. astreoides and D. labyrinthiformis coral calcification rates in Bermuda could increase throughout the 21st century as a result of gradual warming predicted under a minimum CO2 emissions pathway [representative concentration pathway (RCP) 2.6] with positive 21st-century calcification rates potentially maintained under a reduced CO2 emissions pathway (RCP 4.5). These results highlight the potential benefits of rapid reductions in global anthropogenic CO2 emissions for 21st-century Bermuda coral reefs and the ecosystem services they provide.
机译:现代造礁珊瑚由于具有建造碳酸钙礁石系统的能力,因此可以提供广泛的生态系统服务。已经广泛研究了环境变量对珊瑚钙化率的影响,但是由于缺乏原位观察以及分离不同特性之间相互作用的能力,我们对它们的相对重要性的理解受到限制。我们显示温度是百慕大殖民地珊瑚礁在2年的监测期内珊瑚礁(Porites astreoides和Diploria labyrinthiformis)和礁石规模钙化率的主要驱动力。根据多模式气候模拟(耦合模型比较项目第5阶段),并假设有足够的珊瑚营养,我们的结果表明,由于预测到的逐渐变暖,百慕大的P. astreoides和D. labyrinthiformis珊瑚钙化率在整个21世纪可能会增加在最小的CO 2 排放路径下[代表浓度路径(RCP)2.6]下,在减少的CO 2 排放路径下可能保持正向21世纪钙化率(RCP 4.5) 。这些结果凸显了迅速减少全球人类活动对21世纪的百慕大珊瑚礁及其提供的生态系统服务所产生的CO 2 排放量的潜在好处。

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