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水流和海洋酸化对珊瑚边界层中氧气和 pH 值梯度的影响。

Effects of water flow and ocean acidification on oxygen and pH gradients in coral boundary layer.

机构信息

Department of Animal Ecology & Systematics, Justus Liebig University Giessen, 35392, Giessen, Germany.

GEOMAR Helmholtz Centre for Ocean Research Kiel, 24148, Kiel, Germany.

出版信息

Sci Rep. 2024 Jun 4;14(1):12757. doi: 10.1038/s41598-024-63210-9.

Abstract

Reef-building corals live in highly hydrodynamic environments, where water flow largely controls the complex chemical microenvironments surrounding them-the concentration boundary layer (CBL). The CBL may be key to alleviate ocean acidification (OA) effects on coral colonies by partially isolating them. However, OA effects on coral CBL remain poorly understood, particularly under different flow velocities. Here, we investigated these effects on the reef-building corals Acropora cytherea, Pocillopora verrucosa, and Porites cylindrica. We preconditioned corals to a control (pH 8.0) and OA (pH 7.8) treatment for four months and tested how low flow (2 cm s) and moderate flow (6 cm s) affected O and H CBL traits (thickness, surface concentrations, and flux) inside a unidirectional-flow chamber. We found that CBL traits differed between species and flow velocities. Under OA, traits remained generally stable across flows, except surface pH. In all species, the H CBL was thin and led to lower surface pH. Still, low flow thickened H CBLs and increased light elevation of surface pH. In general, our findings reveal a weak to null OA modulation of the CBL. Moreover, the OA-buffering capacity by the H CBL may be limited in coral species, though low flow could enhance CBL sheltering.

摘要

造礁珊瑚生活在高水动力环境中,水流在很大程度上控制着它们周围复杂的化学微环境——浓度边界层(CBL)。CBL 可能是部分隔离珊瑚以减轻海洋酸化(OA)对珊瑚群落影响的关键。然而,OA 对珊瑚 CBL 的影响仍知之甚少,尤其是在不同流速下。在这里,我们研究了这些影响对造礁珊瑚鹿角杯形珊瑚、波纹珊瑚和圆柱鹿角珊瑚的影响。我们将珊瑚预培养 4 个月,使其适应对照(pH8.0)和 OA(pH7.8)处理,并在单向流室中测试低流速(2cm/s)和中流速(6cm/s)如何影响 O 和 H CBL 特征(厚度、表面浓度和通量)。我们发现 CBL 特征在物种和流速之间存在差异。在 OA 下,除了表面 pH 值外,所有流速下的特征基本保持稳定。在所有物种中,H CBL 较薄,导致表面 pH 值较低。尽管低流速会使 H CBL 变厚并增加表面 pH 值的升高,但仍会使 H CBL 变厚。总的来说,我们的研究结果表明,CBL 对 OA 的调节作用较弱甚至没有。此外,尽管低流速可以增强 CBL 的庇护作用,但 H CBL 对 OA 的缓冲能力可能有限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f17f/11148076/79081904e52f/41598_2024_63210_Fig1_HTML.jpg

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