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In situ changes of tropical crustose coralline algae along carbon dioxide gradients

机译:热带地壳珊瑚藻藻类沿二氧化碳梯度的原位变化

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摘要

Crustose coralline algae (CCA) fulfill important ecosystem functions in coral reefs, including reef framework stabilization and induction of larval settlement. To investigate in situ the effects of high carbon dioxide on CCA communities, we deployed settlement tiles at three tropical volcanic CO2 seeps in Papua New Guinea along gradients spanning from 8.1 to 7.4 pH. After 5 and 13 months deployment, there was a steep transition from CCA presence to absence around pH 7.8 (660 μatm pCO2): 98% of tiles had CCA at pH > 7.8, whereas only 20% of tiles had CCA at pH ≤ 7.8. As pH declined from 8.0 to 7.8, the least and most sensitive CCA species lost 43% and 85% of cover, respectively. Communities on upward facing surfaces exposed to high light and high grazing pressure showed less steep losses than those on shaded surfaces with low grazing. Direct CO2 effects on early life stages were the main mechanisms determining CCA cover, rather than competitive interactions with other benthic groups. Importantly, declines were steepest at near-ambient pH, suggesting that CCA may have already declined in abundance due to the recent seawater pH decline of 0.1 units, and that future severe losses are likely with increasing ocean acidification.
机译:rust珊瑚藻(CCA)在珊瑚礁中发挥重要的生态系统功能,包括稳定珊瑚礁框架和诱导幼虫沉降。为了原位调查高二氧化碳对CCA社区的影响,我们在巴布亚新几内亚的三个热带火山二氧化碳渗漏处沿8.1至7.4 pH的梯度部署了沉降砖。部署5个月和13个月后,pH 7.8(660?atatm pCO2)附近存在从CCA到不存在的急剧转变:98%的瓷砖的pH> 7.8的CCA,而只有20%的瓷砖的pH≤7.8的CCA。当pH从8.0降至7.8时,最不敏感的CCA和最不敏感的CCA种类分别损失了43%和85%的覆盖率。暴露于高光和高放牧压力的朝上表面上的群落比低放牧的阴影表面上的群落损失少。对早期生命阶段的直接CO2影响是决定CCA覆盖率的主要机制,而不是与其他底栖生物的竞争性相互作用。重要的是,在接近环境pH值的情况下下降幅度最大,这表明由于最近海水pH值下降0.1个单位,CCA可能已经大量下降,并且随着海洋酸化程度的增加,未来可能会出现严重损失。

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