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Adaptation of cyanobacteria to UV-B stress correlated with oxidative stress and oxidative damage

机译:蓝细菌对UV-B胁迫的适应性与氧化应激和氧化损伤相关

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摘要

Cyanobacteria must cope with the negative effects of ultraviolet B (280-315 nm) (UV-B) stress caused by their obligatory light requirement for photosynthesis. The adaptation of the cyanobacterium Anabaena sp. to moderate UV-B radiation has been observed after 2 weeks of irradiation, as indicated by decreased oxidative stress, decreased damage, recovered photosynthetic efficiency and increased survival. Oxidative stress in the form of UV-B-induced production of reactive oxygen species was measured in vivo with the oxidative stress-sensitive probe 2',7'-dichlorodihydrofluorescein diacetate. Photooxidative damage by UV-B radiation, including lipid peroxidation and DNA strand breakage, was determined by a modified method using thiobarbituric acid reactive substances and fluorometric analysis of DNA unwinding. Photosynthetic quantum yield was determined by pulse amplitude-modulated fluorometry. The results suggest that moderate UV-B radiation results in an evident oxidative stress, enhanced lipid peroxidation, increased DNA strand breaks, elevated chlorophyll bleaching as well as decreased photosynthetic efficiency and survival during the initial exposure. However, DNA strand breaks, photosynthetic parameters and chlorophyll bleaching returned to their unirradiated levels after 4-7 days of irradiation. Oxidative stress and lipid peroxidation appeared to respond later because decreases were observed after 7 days of radiation. The survival curve against irradiation time exhibited a close relationship with the changes in photosynthetic quantum yield and DNA damage, with little mortality after 4 days. Growth inhibition by UV-B radiation was observed during the first 7 days of radiation, whereas normal growth resumed even under UV-B stress thereafter. An efficient defense system was assumed to come into play to repair photosynthetic and DNA damage and induce the de novo synthesis of UV-sensitive proteins and lipids, allowing the organisms to adapt to UV-B stress successfully and survive as well as grow. No induction of mycosporine-like amino acids (MAA) was observed during the adaptation of Anabaena sp. to UV-B stress in our work. The adaptation of the cyanobacterium correlated with and could be caused by the oxidative stress and oxidative damage. [References: 44]
机译:蓝细菌必须应对由于光合作用所必需的光而引起的紫外线B(280-315 nm)(UV-B)胁迫的负面影响。蓝细菌鱼腥藻的适应。辐照2周后,观察到中度的UV-B辐射,表现为氧化应激降低,损害减少,光合作用恢复效率和存活率提高。用氧化应激敏感探针2',7'-二氯二氢荧光素二乙酸酯在体内测量了UV-B诱导的活性氧物质生成形式的氧化应激。通过改良的方法使用硫代巴比妥酸反应性物质并通过DNA展开的荧光分析确定了UV-B辐射造成的光氧化损伤,包括脂质过氧化和DNA链断裂。光合量子产率通过脉冲幅度调制荧光法测定。结果表明,适度的UV-B辐射会导致明显的氧化应激,脂质过氧化作用增强,DNA链断裂增加,叶绿素漂白增加以及初始暴露期间光合作用效率和存活率降低。但是,辐照4-7天后,DNA链断裂,光合作用参数和叶绿素漂白恢复到未辐照的水平。氧化应激和脂质过氧化反应似乎较晚响应,因为在辐射7天后观察到了下降。相对于照射时间的存活曲线与光合量子产率和DNA损伤的变化密切相关,在4天后死亡率极低。在辐射的前7天观察到了UV-B辐射的生长抑制作用,而此后即使在UV-B胁迫下也恢复了正常生长。一个有效的防御系统被认为可以修复光合作用和DNA损伤,并诱导紫外线敏感蛋白和脂质的从头合成,从而使生物体成功适应UV-B胁迫并生存和生长。 Anabaena sp。的适应过程中未观察到霉菌素样氨基酸(MAA)的诱导。在我们的工作中遇到UV-B压力。蓝细菌的适应性与氧化应激和氧化损伤有关并且可能由其引起。 [参考:44]

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