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The impact of dehydration rate on the production and cellular location of reactive oxygen species in an aquatic moss

机译:脱水速率对水生苔藓中活性氧的产生和细胞定位的影响

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Background and Aims The aquatic moss Fontinalis antipyretica requires a slow rate of dehydration to survive a desiccation event. The present work examined whether differences in the dehydration rate resulted in corresponding differences in the production of reactive oxygen species (ROS) and therefore in the amount of cell damage. Methods Intracellular ROS production by the aquatic moss was assessed with confocal laser microscopy and the ROS-specific chemical probe 2,7-dichlorodihydrofluorescein diacetate. The production of hydrogen peroxide was also quantified and its cellular location was assessed. Key Results The rehydration of slowly dried cells was associated with lower ROS production, thereby reducing the amount of cellular damage and increasing cell survival. A high oxygen consumption burst accompanied the initial stages of rehydration, perhaps due to the burst of ROS production. Conclusions A slow dehydration rate may induce cell protection mechanisms that serve to limit ROS production and reduce the oxidative burst, decreasing the number of damaged and dead cells due upon rehydration.
机译:背景和目的水生苔藓丰年青需要缓慢的脱水速度才能在干燥过程中生存。目前的工作检查了脱水速率的差异是否会导致活性氧(ROS)的产生相应的差异,从而导致细胞损伤的程度。方法采用共聚焦激光显微镜和ROS专用化学探针2,7-dichlorodihydrofluorescein diacetate,评估水生苔藓细胞内ROS的产生。还定量了过氧化氢的产生并评估了其细胞位置。关键结果缓慢干燥的细胞的补液与较低的ROS产生有关,从而减少了细胞损伤的数量并提高了细胞存活率。补液初期伴随着高耗氧量的爆发,这可能是由于ROS产生的爆发。结论缓慢的脱水速率可能会诱导细胞保护机制,从而限制ROS的产生并减少氧化爆发,从而减少因再水化而导致的受损细胞和死亡细胞的数量。

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