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首页> 外文期刊>Aquatic Toxicology >Combined effects of copper and ultraviolet radiation on a microscopic green alga in natural soft lake waters of varying dissolved organic carbon content
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Combined effects of copper and ultraviolet radiation on a microscopic green alga in natural soft lake waters of varying dissolved organic carbon content

机译:铜和紫外线对不同溶解有机碳含量的天然软湖水中微绿藻的联合作用

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Selenastrum capricornutum was grown in two lake waters of differing dissolved organic carbon content (1.8 vs. 9.1 mg DOC l(-1)) to determine the responses of population dynamics and photosynthesis to Cu, and to assess the modifying effects of varying ultraviolet radiation (UVR) exposure. In the absence of UVR, the mean EC50 for Cu effect on population growth rate was 2.3-2.6 mug l(-1) in the low DOC water and 17.4-26.2 mug l(-1) in the high DOC water. The,variable chlorophyll a fluorescence ratio, F-v/F-m, decreased approximately in parallel with the diminished growth rates. Exposure of the higher DOC lake water to full spectrum artificial radiation caused an increase Of Cu2+ concentration, compared to samples held in darkness or in photosynthetically active radiation (PAR) only. Full spectrum exposures also resulted in a lower (although not significantly so) EC50 for Cu effect on growth rate, consistent with response to the moderately elevated Cu2+ concentration. Cu2+ concentration was unaffected by radiation exposure in the low DOC water., and EC(50)s for growth were also unaffected except in the most severe UVR treatment, which was > 40% inhibited even in the absence of added Cu. Using F-v/F-m as an end-point, there was no evidence of interactions between UVR and Cu under the relatively low PAR exposures used here. Algal growth and photosynthesis was extremely sensitive to Cu in these soft lake waters, with EC(50)s close to current water quality standards in the low DOC water.
机译:硒硒草生长在两个溶解有机碳含量不同的湖泊水中(1.8 vs. 9.1 mg DOC l(-1)),以确定种群动态和光合作用对Cu的响应,并评估变化的紫外线辐射的修饰作用( UVR)暴露。在没有UVR的情况下,低DOC水中铜对种群增长率的平均EC50为2.3-2.6马克杯l(-1),高DOC水中的铜EC1为17.4-26.2马克杯l(-1)。叶绿素a的可变荧光比率F-v / F-m大约与生长速率降低平行降低。与仅在黑暗中或仅在光合有效辐射(PAR)中保存的样品相比,较高DOC的湖水中暴露于全光谱的人工辐射会导致Cu2 +浓度增加。全光谱暴露还导致较低的(尽管不是很明显)Cu对生长速率的EC50效应,与对适度升高的Cu2 +浓度的响应一致。 Cu2 +浓度不受低DOC水中辐射的影响,并且对EC(50)的生长也没有影响,除了最严格的UVR处理外,即使没有添加Cu,其抑制率也超过40%。以F-v / F-m为终点,在这里使用的PAR相对较低的情况下,没有证据表明UVR和Cu之间存在相互作用。在这些软湖水中,藻类的生长和光合作用对Cu极为敏感,在低DOC水中EC(50)接近当前的水质标准。

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