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海洋酸化会降低海洋甲藻的生长和钙化。

Ocean acidification reduces growth and calcification in a marine dinoflagellate.

机构信息

Marine Biogeosciences, Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, Germany.

出版信息

PLoS One. 2013 Jun 11;8(6):e65987. doi: 10.1371/journal.pone.0065987. Print 2013.

Abstract

Ocean acidification is considered a major threat to marine ecosystems and may particularly affect calcifying organisms such as corals, foraminifera and coccolithophores. Here we investigate the impact of elevated pCO2 and lowered pH on growth and calcification in the common calcareous dinoflagellate Thoracosphaera heimii. We observe a substantial reduction in growth rate, calcification and cyst stability of T. heimii under elevated pCO2. Furthermore, transcriptomic analyses reveal CO2 sensitive regulation of many genes, particularly those being associated to inorganic carbon acquisition and calcification. Stable carbon isotope fractionation for organic carbon production increased with increasing pCO2 whereas it decreased for calcification, which suggests interdependence between both processes. We also found a strong effect of pCO2 on the stable oxygen isotopic composition of calcite, in line with earlier observations concerning another T. heimii strain. The observed changes in stable oxygen and carbon isotope composition of T. heimii cysts may provide an ideal tool for reconstructing past seawater carbonate chemistry, and ultimately past pCO2. Although the function of calcification in T. heimii remains unresolved, this trait likely plays an important role in the ecological and evolutionary success of this species. Acting on calcification as well as growth, ocean acidification may therefore impose a great threat for T. heimii.

摘要

海洋酸化被认为是对海洋生态系统的主要威胁,可能特别影响珊瑚、有孔虫和颗石藻等钙化生物。在这里,我们研究了高 pCO2 和低 pH 值对常见钙质甲藻胸刺甲藻生长和钙化的影响。我们观察到在高 pCO2 下,胸刺甲藻的生长速率、钙化和胞囊稳定性显著降低。此外,转录组分析显示,许多基因对 CO2 敏感,特别是那些与无机碳获取和钙化相关的基因。用于有机碳生产的稳定碳同位素分馏随着 pCO2 的增加而增加,而对于钙化则减少,这表明这两个过程相互依赖。我们还发现 pCO2 对方解石稳定氧同位素组成有强烈影响,这与早先对另一种胸刺甲藻菌株的观察结果一致。胸刺甲藻胞囊稳定氧和碳同位素组成的观察变化可能为重建过去海水碳酸盐化学,最终为过去的 pCO2 提供了一个理想的工具。尽管胸刺甲藻钙化的功能尚未解决,但这种特性可能在该物种的生态和进化成功中发挥重要作用。因此,海洋酸化作用于钙化和生长,可能对胸刺甲藻构成巨大威胁。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2182/3679017/a3ef02b46af8/pone.0065987.g001.jpg

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