首页> 外文期刊>Acta botanica sinica >Effects of CO_2 Enrichment on Photosynthesis, Lipid Peroxidation and Activities of Antioxidative Enzymes of Platymonas subcordiformis Subjected to UV-B Radiation Stress
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Effects of CO_2 Enrichment on Photosynthesis, Lipid Peroxidation and Activities of Antioxidative Enzymes of Platymonas subcordiformis Subjected to UV-B Radiation Stress

机译:富CO_2对UV-B辐射胁迫下皮下侧柏的光合作用,脂质过氧化和抗氧化酶活性的影响

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When the CO_2 concentration was kept at 360 μL/L (ambient) and 5 000 μL/L (elevated), the effects of UV-B stress on photosynthesis, lipid peroxidation and antioxidative enzymes of marine microalgae Platymonas subcordiformis (Wille) Hazen were examined. The experiment indicated that: (1) UV-B alone significantly decreased dry weight, photosynthetic rate, chlorophyll a (Chl a) and carotenoid (Car.) contents; CO_2 enrichment alone enhanced dry weight and photosynthetic rate, but Chl a content and Car. content had no major difference compared with those of ambient UV-B and ambient CO_2; the dry weight and photosynthetic rate of P. subcordiformis grown under the combination of UV-B and CO_2 had no major difference compared with that under ambient UV-B and ambient CO_2; while the Chl a content and Car. content significantly decreased compared to those of P. subcordiformis grown under ambient UV-B and ambient CO_2. (2) Both UV-B alone and CO_2 enrichment alone significantly decreased soluble protein content, when UV-B and CO_2 were in combination, the soluble protein content was higher than that of UV-B alone. Changes in soluble protein content of algae grown in high CO_2 could be largely due to a decline in Rubisco protein. (3) UV-B alone significantly increased the rate of O_2~- production, H_2O_2 and malondialdehyde (MDA) content, CO_2~- enrichment alone significantly decreased the rate of O_2~- production, H_2O_2 and MDA contents, when UV-B and CO_2 were in combination, the rate of O_2~- production, H_2O_2 and MDA contents were significantly lower than those of UV-B alone. The results suggested that CO_2 enrichment could reduce oxidative stress of reactive oxygen species to P. subcordiformis, and reduce the lipid peroxidation damage of UV-B to P. subcordiformis. And (4) UV-B alone significantly increased SOD, POD, CAT, GR and GP_x activities, CO_2 enrichment alone significantly decreased the activities of SOD, POD and GR, while the CAT and GP_x activities were decreased a little but not changed significantly compared to ambient UV-B and ambient CO_2. The SOD, POD, CAT, GR and GP_x activities of P. subcordiformis grown under the combination of UV-B and CO_2 were much lower than those of P. subcordiformis grown under UV-B alone. The results indicated that CO_2 enrichment showed a protective effect against the oxidative damage of UV-B-induced stress. Therefore, elevated CO_2 can be favor of enhancing the capacity of stress resistance.
机译:当CO_2浓度分别保持在360μL/ L(环境温度)和5 000μL/ L(升高)时,研究了UV-B胁迫对海洋微藻次生侧柏(Wille)Hazen光合作用,脂质过氧化和抗氧化酶的影响。 。实验表明:(1)单独使用UV-B可以显着降低干重,光合速率,叶绿素a(Chl a)和类胡萝卜素(Car。)含量;单独的CO_2富集增加了干重和光合速率,但是增加了Cha含量和Car。含量与环境UV-B和环境CO_2相比无显着差异。在UV-B和CO_2的组合下生长的亚鞭毛藻的干重和光合速率与环境UV-B和CO_2相比无显着差异;而Chl内容和Car。与在环境UV-B和环境CO_2下生长的皮下假单胞菌相比,其含量显着降低。 (2)单独的UV-B和单独的CO_2富集均显着降低了可溶性蛋白含量,当UV-B和CO_2结合使用时,可溶性蛋白含量高于单独的UV-B。在高CO_2条件下生长的藻类可溶性蛋白含量的变化可能主要是由于Rubisco蛋白的下降。 (3)单独使用UV-B显着提高了O_2〜-的产生速率,H_2O_2和丙二醛(MDA)的含量,单独使用CO_2〜-富集显着降低了O_2〜-的产生速率,H_2O_2和MDA的含量。 CO_2结合使用时,O_2〜-的生成速率,H_2O_2和MDA含量均明显低于单独的UV-B。结果表明,CO_2的富集可以减轻活性氧对皮下衣原体的氧化应激,减少UV-B对皮下衣原体的脂质过氧化损伤。 (4)单独的UV-B显着增加了SOD,POD,CAT,GR和GP_x的活性,单独的CO_2富集显着降低了SOD,POD和GR的活性,而CAT和GP_x的活性则有所降低但没有明显变化到环境UV-B和环境CO_2。在UV-B和CO_2的共同作用下繁殖的亚鞭毛藻的SOD,POD,CAT,GR和GP_x活性远低于在UV-B单独作用下的亚鞭毛藻的SOD,POD,CAT,GR和GP_x活性。结果表明,CO_2富集对UV-B诱导的胁迫的氧化损伤具有保护作用。因此,升高的CO 2可能有利于增强抗应力能力。

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