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附生植物为海洋酸化提供了微观尺度的避难所。

Epiphytes provide micro-scale refuge from ocean acidification.

机构信息

Israel Oceanographic and Limnological Research, National Institute of Oceanography, P.O. Box 8030, Haifa, 31080, Israel; The Leon H. Charney School of Marine Sciences, Marine Biology Department, University of Haifa, Mt. Carmel, Haifa, 31905, Israel; GEOMAR, Helmholtz Centre for Ocean Research, Experimental Ecology, Düsternbrooker Weg 20, Kiel, 24105, Germany.

Israel Oceanographic and Limnological Research, National Institute of Oceanography, P.O. Box 8030, Haifa, 31080, Israel.

出版信息

Mar Environ Res. 2020 Oct;161:105093. doi: 10.1016/j.marenvres.2020.105093. Epub 2020 Jul 29.

Abstract

Coralline algae, a major calcifying component of coastal shallow water communities, have been shown to be one of the more vulnerable taxonomic groups to ocean acidification (OA). Under OA, the interaction between corallines and epiphytes was previously described as both positive and negative. We hypothesized that the photosynthetic activity and the complex structure of non-calcifying epiphytic algae that grow on corallines ameliorate the chemical microenvironmental conditions around them, providing protection from OA. Using mesocosm and microsensor experiments, we showed that the widespread coralline Ellisolandia elongata is less susceptible to the detrimental effects of OA when covered with non-calcifying epiphytic algae, and its diffusive boundary layer is thicker than when not covered by epiphytes. By modifying the microenvironmental carbonate chemistry, epiphytes, facilitated by OA, create micro-scale shield (and refuge) with more basic conditions that may allow the persistence of corallines associated with them during acidified conditions. Such ecological refugia could also assist corallines under near-future anthropogenic OA conditions.

摘要

珊瑚藻是沿海浅水群落中主要的钙化成分之一,已被证明是对海洋酸化 (OA) 更为脆弱的分类群之一。在 OA 下,珊瑚藻和附生藻类之间的相互作用以前被描述为既有积极的也有消极的。我们假设,非钙化附生藻类的光合作用和复杂结构,这些藻类生长在珊瑚藻上,改善了它们周围的化学微环境条件,为它们提供了免受 OA 的保护。通过使用中观和微传感器实验,我们表明,广泛分布的珊瑚藻 Ellisolandia elongata 在被非钙化附生藻类覆盖时,对 OA 的有害影响的敏感性较低,并且其扩散边界层比没有被附生藻类覆盖时更厚。通过改变微环境碳酸盐化学,附生藻类在 OA 的作用下创造了具有更碱性条件的微观尺度屏蔽(和避难所),这可能允许与它们相关的珊瑚藻在酸化条件下持续存在。在人为 OA 条件下,这种生态避难所也可以帮助珊瑚藻。

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