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首页> 外文期刊>Marine & freshwater research >Variability in the benefits of ocean acidification to photosynthetic rates of macroalgae without CO_2-concentrating mechanisms
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Variability in the benefits of ocean acidification to photosynthetic rates of macroalgae without CO_2-concentrating mechanisms

机译:没有CO_2浓缩机制,海洋酸化与大型宏观光合速率的益处的变化

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Increasing concentrations of surface-seawater carbon dioxide (CO_2) (ocean acidification) could favour seaweed species that currently are limited for dissolved inorganic carbon (DIC). Among them, those that are unable to use CO_2-concentrating mechanisms (CCMs) to actively uptake bicarbonate (HCO_3~-) across the plasmalemma are most likely to benefit. Here, we assess how the DIC uptake and photosynthetic rates of three rhodophytes without CCMs respond to four seawater CO_2 concentrations representing pre-industrial (280 μmatm), present-day (400 μmatm), representative concentration pathway (RCP) emissions scenario 8.5 2050 (650 μmatm) and RCP 8.5 2100 (1000 μmatm). We demonstrated that the photosynthetic rates of only one species increase between the preindustrial and end-of-century scenarios, but because of differing photosynthetic quotients (DIC taken up relative to O_2 evolved), all three increase their DIC uptake rates from pre-industrial or present-day scenarios to the end-of-century scenario. These variable, but generally beneficial, responses highlight that not all species without CCMs will respond to ocean acidification uniformly. This supports past assessments that, on average, this group will likely benefit from the impacts of ocean acidification. However, more concerted efforts are now required to assess whether similar benefits to photosynthetic rates and DIC uptake are also observed in chlorophytes and ochrophytes without CCMs.
机译:增加表面海水二氧化碳(CO_2)(海洋酸化)的浓度可以利用目前受到溶解的无机碳(DIC)的限制的海藻物种。其中,无法使用CO_2集中机制(CCMS)的那些,以积极吸收碳酸氢盐(HCO_3〜 - ),最有可能受益。在这里,我们评估DIC吸收和光合速率的三种菱形没有CCMS的光合速率响应于代表预工业前(280μmATM)的四个海水CO_2浓度,现在(400μmATM),代表性浓度途径(RCP)排放场景8.5 2050( 650μmatm)和RCP 8.5 2100(1000μmatm)。我们证明,在预工资和世纪末的情景之间只有一个物种的光合速率,但由于不同的光合素(DIC相对于O_2进化),所有三个都会增加他们的DIC从工业预处理率目前的情景到世纪末的情景。这些变量,但通常有益,响应突出显示并非所有没有CCM的物种都会均匀地响应海洋酸化。这支持过去的评估,平均而言,该组可能会受益于海洋酸化的影响。然而,现在需要更多协调的努力来评估对光合速率和DIC吸收的类似益处是否也在没有CCMS的叶绿素和Ochrophytes中观察到。

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