首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Antioxidative Responses of Two Marine Microalgae During Acclimation to Static and Fluctuating Natural UV Radiation
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Antioxidative Responses of Two Marine Microalgae During Acclimation to Static and Fluctuating Natural UV Radiation

机译:两种海洋微藻在适应过程中对静态和波动的自然紫外线辐射的抗氧化反应。

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Photoacclimation properties were investigated in two marine microalgae exposed to four ambient irradiance conditions: static photosynthetically active radiation (PAR: 400-700 nm), static PAR + UVR (280-700 nm), dynamic PAR and dynamic PAR + UVR. High light acclimated cultures of Thalassiosira weissflogii and Dunaliella tertiolecta were exposed outdoors for a maximum of 7 days. Dynamic irradiance was established by computer controlled vertical movement of 2 L bottles in a water filled basin. Immediate (< 24 h), short-term (1-3 days) and long-term (4-7 days) photoacclimation was followed for antioxidants (superoxide dismutase, ascorbate peroxidase and glutathione cycling), growth and pigment pools. Changes in UVR sensitivity during photoacclimation were monitored by measuring UVR-induced inhibition of carbon assimilation under standardized UV conditions using an indoor solar simulator. Both species showed immediate antioxidant responses due to their transfer to the outdoor conditions. Furthermore, upon outdoor exposure, carbon assimilation and growth rates were reduced in both species compared with initial conditions; however, these effects were most pronounced in D. tertiolecta. Outdoor UV exposure did not alter antioxidant levels when compared with PAR-only controls in both species. In contrast, growth was significantly affected in the static UVR cultures, concurrent with significantly enhanced UVR resistance. We conclude that antioxidants play a minor role in the reinforcement of natural UVR resistance in T. weissflogii and D. tertiolecta.
机译:在暴露于四种环境辐照条件的两个海洋微藻中研究了光驯化特性:静态光合活性辐射(PAR:400-700 nm),静态PAR + UVR(280-700 nm),动态PAR和动态PAR + UVR。 Thalassiosira weissflogii和Dunaliella tertiolecta的高光适应培养物在户外暴露最多7天。动态辐照度是通过计算机控制的2 L瓶子在充满水的盆中垂直移动来建立的。立即进行抗氧化剂(超氧化物歧化酶,抗坏血酸过氧化物酶和谷胱甘肽循环)的光适应(<24小时),短期(1-3天)和长期(4-7天)光适应,生长和色素沉淀。通过使用室内太阳模拟器在标准UV条件下测量UVR诱导的碳同化抑制,来监测光驯化过程中UVR敏感性的变化。两种物种由于转移到室外条件而显示出立即的抗氧化剂反应。此外,在室外暴露时,与初始条件相比,两种物种的碳同化和生长速率均降低了。然而,这些效应在D. tertiolecta中最为明显。与两种物种中仅使用PAR的对照相比,暴露在室外的紫外线不会改变抗氧化剂的水平。相反,在静态UVR培养中,生长受到显着影响,同时对UVR的抵抗力明显增强。我们得出的结论是,抗氧化剂在维氏梭菌和维氏梭状芽胞杆菌的天然抗紫外线能力中起较小的作用。

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