首页> 外文期刊>ICES Journal of Marine Science >Responses of seaweeds that use CO_2 as their sole inorganic carbon source to ocean acidification: differential effects of fluctuating pH but little benefit of CO_2 enrichment
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Responses of seaweeds that use CO_2 as their sole inorganic carbon source to ocean acidification: differential effects of fluctuating pH but little benefit of CO_2 enrichment

机译:以CO_2为唯一无机碳源的海藻对海洋酸化的响应:pH值波动的差异效应,但CO_2富集的益处很小

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摘要

Laboratory studies that test the responses of coastal organisms to ocean acidification (OA) typically use constant pH regimes which do not reflect coastal systems, such as seaweed beds, where pH fluctuates on diel cycles. Seaweeds that use CO2 as their sole inorganic carbon source (non-carbon dioxide concentrating mechanism species) are predicted to benefit from OA as concentrations of dissolved CO2 increase, yet this prediction has rarely been tested, and no studies have tested the effect of pH fluctuations on non-CCM seaweeds. We conducted a laboratory experiment in which two ecologically dominant non-CCM red seaweeds (Callophyllis lambertii and Plocamium dilatatum) were exposed to four pH treatments: two static, pH(T) 8.0 and 7.7 and two fluctuating, pH(T) 8.0 +/- 0.3 and 7.7 +/- 0.3. Fluctuating pH reduced growth and net photosynthesis in C. lambertii, while P. dilatatum was unaffected. OA did not benefit P. dilatatum, while C. lambertii displayed elevated net photosynthetic rates. We provide evidence that carbon uptake strategy alone cannot be used as a predictor of seaweed responses to OA and highlight the importance of species-specific sensitivity to [H+]. We also emphasize the importance of including realistic pH fluctuations in experimental studies on coastal organisms.
机译:测试沿海生物对海洋酸化(OA)反应的实验室研究通常使用恒定的pH方案,该方案无法反映沿海系统,例如海藻床,其中pH值随diel周期而波动。随着溶解的CO2浓度的增加,使用CO2作为唯一无机碳源(非二氧化碳浓缩机制物种)的海藻预计会从OA中受益,但是这种预测很少得到验证,而且还没有研究测试pH波动的影响在非CCM海藻上我们进行了一项实验室实验,其中将两种生态优势的非CCM红海藻(Callophyllis lambertii和Plocamium dilatatum)暴露于四种pH处理:两种静态pH(T)8.0和7.7和两种波动pH(T)8.0 + / -0.3和7.7 +/- 0.3。 pH的波动会降低兰伯梭菌的生长和净光合作用,而膨胀梭菌则不受影响。 OA并不能使黑腹实蝇受益,而兰伯特球菌显示出较高的净光合速率。我们提供的证据表明,仅碳吸收策略不能用作海藻对OA反应的预测指标,并强调了物种对[H +]的敏感性的重要性。我们还强调了在沿海生物实验研究中纳入实际pH波动的重要性。

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