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Dynamic Patterns And Ecological Impacts Of Declining Ocean Ph In A High-resolution Multi-year Dataset

机译:高分辨率多年数据集中海洋磷下降的动态模式和生态影响

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Increasing global concentrations of atmospheric CO_2 are predicted to decrease ocean pH, with potentially severe impacts on marine food webs, but empirical data documenting ocean pH over time are limited. In a high-resolution dataset spanning 8 years, pH at a north-temperate coastal site declined with increasing atmospheric CO_2 levels and varied substantially in response to biological processes and physical conditions that fluctuate over multiple time scales. Applying a method to link environmental change to species dynamics via multispecies Markov chain models reveals strong links between in situ benthic species dynamics and variation in ocean pH, with calcareous species generally performing more poorly than noncalcareous species in years with low pH. The models project the long-term consequences of these dynamic changes, which predict substantial shifts in the species dominating the habitat as a consequence of both direct effects of reduced calcification and indirect effects arising from the web of species interactions. Our results indicate that pH decline is proceeding at a more rapid rate than previously predicted in some areas, and that this decline has ecological consequences for near shore benthic ecosystems.
机译:预计全球大气中CO_2浓度的增加会降低海洋的pH值,从而对海洋食物网产生潜在的严重影响,但是记录海洋pH随时间变化的经验数据有限。在一个跨越8年的高分辨率数据集中,北温带沿海地区的pH值随着大气CO_2含量的增加而下降,并随着生物学过程和物理条件在多个时间范围内波动而发生显着变化。通过多物种马尔可夫链模型应用一种将环境变化与物种动态联系起来的方法,揭示了原地底栖物种动态与海洋pH值之间的紧密联系,在低pH值的年份,钙质物种的表现通常比非钙质物种差。这些模型预测了这些动态变化的长期后果,这些趋势预测由于减少钙化的直接效应和物种相互作用网所产生的间接效应,将使占主导地位的物种发生重大变化。我们的结果表明,在某些地区,pH下降的速度比以前预期的要快,并且这种下降对近岸底栖生态系统具有生态影响。

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