Janknegt Paul J, Van De Poll Willem H, Visser Ronald J W, Rijstenbil Jan W, Buma Anita G J
Department of Ocean Ecosystems, Centre for Ecological and Evolutionary Studies, University of Groningen, Kerklaan 30, 9750 AA Haren, the NetherlandsAE3 Consultancy, Fuchsialaan 8, 4401 HV, Yerseke, the NetherlandsDepartment of Ocean Ecosystems, Centre for Ecological and Evolutionary Studies, University of Groningen, Kerklaan 30, 9750 AA Haren, the Netherlands.
J Phycol. 2008 Aug;44(4):957-66. doi: 10.1111/j.1529-8817.2008.00553.x.
The enzyme superoxide dismutase (SOD) holds a key position in the microalgal antioxidant network. The present research focused on oxidative stress responses in the Antarctic diatom Chaetoceros brevis F. Schütt during transition to excess (including ultraviolet radiation [UVR]) and limiting irradiance conditions. Over a 4 d period, cellular responses of thiobarbituric acid reactive substances (TBARS, a general oxidative stress indicator), SOD activity, photosynthetic and xanthophyll cycle pigments, PSII efficiency, and growth were determined. In addition, oxidative responses were measured during a daily cycle. Changing irradiance conditions significantly affected growth rates of C. brevis. PSII efficiency decreased significantly during periodic excess irradiance and increased under low irradiance conditions. Transition to excess irradiance increased the ratio of xanthophyll to light-harvesting pigments, whereas the opposite was observed for cultures transferred to low irradiance. This acclimation process was completed after 2 d in the new irradiance environment. SOD activity increased significantly after the first day regardless of the new irradiance environment but returned to preexposure values on the fourth day. We hypothesize that SOD activity may be temporarily elevated in C. brevis after irradiance shifts, thereby reducing oxidative stress when photoacclimation is in progress.
超氧化物歧化酶(SOD)在微藻抗氧化网络中占据关键地位。本研究聚焦于南极硅藻短角毛藻(Chaetoceros brevis F. Schütt)在过渡到过量光照(包括紫外线辐射[UVR])和光照受限条件下的氧化应激反应。在4天的时间里,测定了硫代巴比妥酸反应性物质(TBARS,一种一般氧化应激指标)的细胞反应、SOD活性、光合色素和叶黄素循环色素、PSII效率以及生长情况。此外,还在每日周期中测量了氧化反应。光照条件的变化显著影响了短角毛藻的生长速率。在周期性过量光照期间,PSII效率显著下降,而在低光照条件下则有所增加。过渡到过量光照会增加叶黄素与捕光色素的比例,而转移到低光照条件下的培养物则观察到相反的情况。在新的光照环境中2天后,这种适应过程完成。无论新的光照环境如何,第一天后SOD活性均显著增加,但在第四天恢复到暴露前的值。我们推测,光照变化后短角毛藻中SOD活性可能会暂时升高,从而在光适应过程中减轻氧化应激。