Novia University of Applied Sciences, Ekenäs, Finland.
Laboratory of Animal Physiology, Department of Biology, University of Turku, Turku, Finland.
PLoS One. 2018 Apr 13;13(4):e0195981. doi: 10.1371/journal.pone.0195981. eCollection 2018.
On a daily basis, planktonic organisms migrate vertically and thus experience widely varying conditions in their physico-chemical environment. In the Gulf of Finland, these changes are larger than values predicted by climate change scenarios predicted for the next century (up to 0.5 units in pH and 5°C in temperature). In this work, we are interested in how temporal variations in physico-chemical characteristics of the water column on a daily and weekly scale influence oxidative stress level and antioxidant responses in the planktonic copepod of the genus Acartia. Responses were determined from samples collected during a two-week field survey in the western Gulf of Finland, Baltic Sea. Our results showed that GST (Glutathione-S-transferase) enzyme activity increased in the surface waters between Weeks I and II, indicating antioxidant defense mechanism activation. This is most likely due to elevating temperature, pH, and dissolved oxygen observed between these two weeks. During Week II also GSSG (oxidized glutathione) was detected, indicating that copepods responded to stressor(s) in the environment. Our results suggest that Acartia copepods seem fairly tolerant to weekly fluctuations in environmental conditions in coastal and estuarine areas, in terms of antioxidant defense and oxidative stress. This could be directly connected to a very efficient glutathione cycling system acting as antioxidant defense system for neutralizing ROS and avoiding elevated levels of LPX.
浮游生物每天都会垂直迁移,因此会经历其物理化学环境中广泛变化的条件。在芬兰湾,这些变化比下个世纪气候变化情景预测的值更大(pH 值变化高达 0.5 个单位,温度变化高达 5°C)。在这项工作中,我们感兴趣的是水层理化特性的日变化和周变化如何影响浮游桡足类属的浮游桡足类的氧化应激水平和抗氧化反应。在波罗的海芬兰湾西部进行为期两周的实地调查期间收集的样本中确定了这些反应。我们的研究结果表明,GST(谷胱甘肽 S-转移酶)酶活性在第一周到第二周之间的表层水中增加,表明抗氧化防御机制被激活。这很可能是由于在这两周之间观察到的温度、pH 值和溶解氧升高所致。在第二周也检测到了 GSSG(氧化型谷胱甘肽),表明桡足类对环境中的胁迫因素做出了反应。我们的研究结果表明,在沿海和河口地区,桡足类对环境条件的每周波动具有相当的耐受性,表现在抗氧化防御和氧化应激方面。这可能与作为中和 ROS 并避免 LPX 水平升高的抗氧化防御系统的非常有效的谷胱甘肽循环系统直接相关。