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Stress and Recovery Responses of Microcystis aeruginosa Exposed to Extreme Light for Different Durations

机译:微囊杆菌铜绿假单胞菌暴露于不同持续时间的极光的应力和恢复反应

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Cyanobacterial growth is a significant problem in most parts of the world. Control measures are necessary to suppress cyanobacterial growth in natural water bodies. When the control measures were discontinued, cyanobacteria growth rebounded quickly. This study was conducted to provide insight into the stress and recovery responses of cyanobacteria. Microcystis aeruginosa was exposed to extreme light for 8 days, and the changes in response to the light exposure were observed. Post-exposure recovery performances were accessed by allowing Cyanobacteria to recover under optimum conditions for 8 days. Extreme light exposure causes stress on M. aeruginosa, but by adjusting the growth, pigmentation, chlorophyll fluorescence, and antioxidant levels, M. aeruginosa surpasses the stress. M. aeruginosa showed sudden changes in parameters on the eighth day of extreme light exposure. The post-stress recovery capacity of M. aeruginosa was positively correlated with the exposure duration. These findings suggest that exposure to light stress causes hardening of M. aeruginosa. The inter-parameter relationships differed between the stress and recovery phases. Besides, non-photochemical quenching was strongly correlated with cellular H2O2 content, which can indirectly explain the oxidative stress status of M. aeruginosa. This study highlights the research requirement on the post-stress recovery capacity of M. aeruginosa.
机译:蓝藻生长是世界大部分地区的重要问题。控制措施是抑制天然水体中的蓝细菌生长所必需的。当停止控制措施时,蓝细菌生长迅速反弹。进行了本研究,以了解Cyanobacteria的应力和恢复反应的洞察。微阴压铜绿假单胞菌暴露于极端光线8天,观察到响应光暴露的变化。通过在最佳条件下允许蓝细菌来恢复暴露后恢复性能8天。极端曝光导致M.铜绿假单胞菌的胁迫,但通过调节生长,色素沉着,叶绿素荧光和抗氧化水平,M.铜绿假单胞菌超越应力。 M. Aruginosa在极端曝光的第八天的参数突然变化。铜绿假单胞菌的后应力恢复能力与暴露持续时间呈正相关。这些研究结果表明,暴露于轻度应力导致M.铜绿假单胞菌的硬化。参数间关系不同于压力和恢复阶段。此外,非光化学猝灭与细胞H 2 O 2含量强烈相关,其可以间接解释M.铜绿假单胞菌的氧化应激状态。本研究突出了M.铜绿假单胞菌后应力恢复能力的研究要求。

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