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Ecotoxicology. 2020 Mar;29(2):185-195. doi: 10.1007/s10646-020-02166-8. Epub 2020 Jan 22.
Variations of temperature and photoperiod throughout different seasons can affect aquatic communities such as biofilms. Biofilms, generally present at the base of trophic chains in freshwaters, are also subject to organic contamination, and are especially affected by herbicides. Many studies have investigated the effect and interactions of herbicides and environmental factors on biofilms, but never with a toxicokinetic point of view. The objective of this study was to assess structural and functional changes in biofilms exposed to diuron, and to link them with contaminant accumulation, under the influence of temperature and light variations. To this aim, biofilms were exposed to all possible combinations of three concentrations (0, 5 and 50 µg L) of diuron, two temperatures (10 and 26 °C), and two light/dark photoperiods (16/8, 10/14), for durations of 0, 1 and 3 days. Diuron accumulation in biofilms was quantified and structural descriptors (protein and polysaccharide contents, dry weight) and functional endpoints (photosynthetic and enzymatic activities) were analyzed. The results obtained mainly highlighted the influence of temperature on diuron bioaccumulation and the associated toxic impact on biofilms. Bioaccumulation in biofilms exposed during three days at 10 °C, at the highest diuron concentration, was in average 1.4 times higher than bioaccumulation on biofilms exposed to 26 °C. Accordingly, the photosynthetic yield was more inhibited at lower than at higher temperatures. Temperature was also the highest impacting factor for metabolism regulation; for example, at 26 °C after three days of exposure, polysaccharide production was boosted under both photoperiods tested.
不同季节温度和光周期的变化会影响水生群落,如生物膜。生物膜通常存在于淡水食物链的底部,也会受到有机污染的影响,尤其容易受到除草剂的影响。许多研究已经调查了除草剂和环境因素对生物膜的影响和相互作用,但从未从毒代动力学的角度进行过研究。本研究的目的是评估生物膜在温度和光照变化的影响下暴露于敌草隆时的结构和功能变化,并将其与污染物积累联系起来。为此,生物膜暴露于敌草隆三种浓度(0、5 和 50μg/L)、两种温度(10 和 26°C)和两种光照/黑暗光周期(16/8、10/14)的所有可能组合中,持续时间分别为 0、1 和 3 天。定量测定了生物膜中敌草隆的积累情况,并分析了结构描述符(蛋白质和多糖含量、干重)和功能终点(光合作用和酶活性)。结果主要强调了温度对生物膜中敌草隆生物积累的影响以及对生物膜的相关毒性影响。在 10°C 下暴露三天的生物膜中,最高敌草隆浓度下的生物积累量平均比在 26°C 下暴露的生物膜高 1.4 倍。相应地,光合作用产量在较低温度下比在较高温度下受到更大的抑制。温度也是对代谢调节影响最大的因素;例如,在 26°C 下暴露三天后,在两种测试的光周期下,多糖的产生都有所增加。