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Diel Variability in Seawater pH Relates to Calcification and Benthic Community Structure on Coral Reefs

机译:昼夜变异海水pH值关于对珊瑚礁的钙化和底栖生物群落结构

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摘要

Community structure and assembly are determined in part by environmental heterogeneity. While reef-building corals respond negatively to warming (i.e. bleaching events) and ocean acidification (OA), the extent of present-day natural variability in pH on shallow reefs and ecological consequences for benthic assemblages is unknown. We documented high resolution temporal patterns in temperature and pH from three reefs in the central Pacific and examined how these data relate to community development and net accretion rates of early successional benthic organisms. These reefs experienced substantial diel fluctuations in temperature (0.78°C) and pH (>0.2) similar to the magnitude of ‘warming’ and ‘acidification’ expected over the next century. Where daily pH within the benthic boundary layer failed to exceed pelagic climatological seasonal lows, net accretion was slower and fleshy, non-calcifying benthic organisms dominated space. Thus, key aspects of coral reef ecosystem structure and function are presently related to natural diurnal variability in pH.
机译:社区的结构和组装部分取决于环境的异质性。虽然造礁珊瑚对变暖(即漂白事件)和海洋酸化(OA)产生负面影响,但目前浅滩礁pH值自然变化的程度以及底栖生物的生态后果尚不清楚。我们记录了太平洋中部三个礁石的温度和pH的高分辨率时间模式,并研究了这些数据与早期演替底栖生物的群落发展和净繁殖率之间的关系。这些珊瑚礁经历了温度(0.78°C)和pH(> 0.2)的大幅狄尔波动,与下个世纪预计的“变暖”和“酸化”幅度相似。在底栖边界层内的日pH值未超过中上层气候季节的低点的地方,净吸积较慢且肉质,非钙化的底栖生物占主导地位。因此,珊瑚礁生态系统结构和功能的关键方面目前与pH值的自然昼夜变化有关。

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