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Physiological and Biochemical Analyses Shed Light on the Response of Sargassum vulgare to Ocean Acidification at Different Time Scales

机译:生理生化分析在不同的时间尺度上揭示了马尾藻对海洋酸化的响应

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摘要

Studies regarding macroalgal responses to ocean acidification (OA) are mostly limited to short-term experiments in controlled conditions, which hamper the possibility to scale up the observations to long-term effects in the natural environment. To gain a broader perspective, we utilized volcanic CO2 vents as a “natural laboratory” to study OA effects on Sargassum vulgare at different time scales. We measured photosynthetic rates, oxidative stress levels, antioxidant contents, antioxidant enzyme activities, and activities of oxidative metabolic enzymes in S. vulgare growing at a natural acidified site (pH 6.7) compared to samples from a site with current pH (pH 8.2), used as a control one. These variables were also tested in plants transplanted from the control to the acidified site and vice-versa. After short-term exposure, photosynthetic rates and energy metabolism were increased in S. vulgare together with oxidative damage. However, in natural populations under long-term conditions photosynthetic rates were similar, the activity of oxidative metabolic enzymes was maintained, and no sign of oxidative damages was observed. The differences in the response of the macroalga indicate that the natural population at the acidified site is adapted to live at the lowered pH. The results suggest that this macroalga can adopt biochemical and physiological strategies to grow in future acidified oceans.
机译:关于大型藻类对海洋酸化(OA)响应的研究主要限于在受控条件下进行的短期实验,这妨碍了将观测值扩大到对自然环境的长期影响的可能性。为了获得更广阔的视野,我们利用火山二氧化碳排放口作为“天然实验室”,研究了OA在不同时间尺度下对Sargassum vulgare的影响。我们测量了在自然酸化位点(pH 6.7)上生长的普通链霉菌(S. vulgare)的光合作用速率,氧化应激水平,抗氧化剂含量,抗氧化酶活性以及氧化代谢酶的活性,与来自当前pH值(pH 8.2)的样品相比,用作对照。这些变量也在从对照到酸化部位移植的植物中进行了测试,反之亦然。短期接触后,寻常葡萄球菌的光合速率和能量代谢增加,并伴有氧化损伤。然而,在长期条件下的自然种群中,光合速率相似,氧化代谢酶的活性得以维持,并且未观察到氧化损伤的迹象。大型藻类反应的差异表明,酸化位点的自然种群适合生活在较低的pH下。结果表明,这种大型藻类可以采用生化和生理策略在未来的酸化海洋中生长。

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