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Effect of elevated pCO 2 on thermal performance of Chattonella marina and Chattonella ovata (Raphidophyceae)

机译:升高PCO 2对Chattonella Marina和Chattonella Ovata(Raphidophycee)的热性能的影响

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Ocean acidification and warming, identified as environmental concerns likely to be affected by climate change, are crucial determinants of algal growth. The ichthyotoxic raphidophytes Chattonella species are responsible for huge economic losses and environmental impact worldwide. In this study, we investigated the impact of CO2 on the thermal performance curves (TPCs) of Chattonella marina and Chattonella ovata grown under temperatures ranging from 13 to 34°C under ambient pCO2 (350 μatm) and elevated pCO2 (950 μatm). TPCs were comparable between the species or even between pCO2 levels. With the exception of the critical thermal minimum (CTmin) for C. ovata, CTmin for C. marina and the thermal optimum (Topt) and critical thermal maximum (CTmax) for both species did not change with elevation of pCO2 levels. While CO2 enrichment increased the maximum photosynthetic rates (Pmax) up to 125% at the Totp of 30°C, specific growth rates were not significantly different under elevated pCO2 for the two species. Overall, C. ovata is likely to benefit from climate change, potentially widening its range of thermal tolerance limit in highly acidic waters and contributing to prolonged phenology of future phytoplankton assemblages in coastal waters.
机译:被确定为可能受气候变化影响的环境问题的海洋酸化和变暖是藻类生长的重要决定因素。 ICHThyotoxic Raphidophytes Chattonella物种负责全世界巨大的经济损失和环境影响。在这项研究中,我们研究了CO2对Chattonella Marina的热性能曲线(TPC)的影响,在环境PCO2(350μATM)和升高的PCO2(950μATM)下在13至34℃的温度下生长。 TPC在物种之间或甚至在PCO2水平之间相当。除了C.Ovata的临界热最小(CTMIN),C. C. marina的Ctmin和两个物种的热最佳(TOPT)和临界热最大(CTmax)与PCO2水平的升高没有变化。虽然CO 2富集在30°C的Totp在Totp的Totp的最大光合速率(Pmax)增加到125%,但在两个物种的升高的PCO2下,特异性生长速率没有显着差异。总体而言,C.卵子可能会受益于气候变化,潜在地扩大其在高度酸性水域中的热耐受限制范围,并有助于沿海水域的未来浮游植物组合的长期候选。

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