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铜对镉在浮萍(浮萍)中的毒性和遗传毒性的影响。

Effect of copper on the toxicity and genotoxicity of cadmium in duckweed (lemna minor L.).

机构信息

Department of Molecular Biology, University of Zagreb, Croatia.

出版信息

Arh Hig Rada Toksikol. 2010 Sep;61(3):287-96. doi: 10.2478/10004-1254-61-2010-2059.

Abstract

We investigated interactions between copper (in the concentrations of 2.5 μmol L-1 and 5 μmol L-1) and cadmium (5 μmol L-1) in common duckweed (Lemna minor L.) by exposing it to either metal or to their combinations for four or seven days. Their uptake increased with time, but it was lower in plants treated with combinations of metals than in plants treated with either metal given alone. In separate treatments, either metal increased malondialdehyde (MDA) level and catalase and peroxidase activity. Both induced DNA damage, but copper did it only after 7 days of treatment. On day 4, the combination of cadmium and 5 μmol L-1 copper additionally increased MDA as well as catalase and peroxidase activity. In contrast, on day 7, MDA dropped in plants treated with combinations of metals, and especially with 2.5 μmol L-1 copper plus cadmium. In these plants, catalase activity was higher than in copper treated plants. Peroxidase activity increased after treatment with cadmium and 2.5 μmol L-1 copper but decreased in plants treated with cadmium and 5 μmol L-1 copper. Compared to copper alone, combinations of metals enhanced DNA damage after 4 days of treatment but it dropped on day 7. In conclusion, either metal given alone was toxic/genotoxic and caused oxidative stress. On day 4 of combined treatment, the higher copper concentration was more toxic than either metal alone. In contrast, on day 7 of combined treatment, the lower copper concentration showed lower oxidative and DNA damage. These complex interactions can not be explained by simple antagonism and/or synergism. Further studies should go in that direction.

摘要

我们通过将浮萍(浮萍)暴露于单一金属或其组合中 4 或 7 天,研究了铜(浓度为 2.5 μmol L-1 和 5 μmol L-1)和镉(5 μmol L-1)之间的相互作用。它们的摄取量随时间增加,但在处理金属组合的植物中低于单独处理单一金属的植物。在单独的处理中,任一金属均增加丙二醛(MDA)水平和过氧化氢酶和过氧化物酶活性。两者均诱导 DNA 损伤,但铜仅在处理 7 天后才起作用。在第 4 天,镉和 5 μmol L-1 铜的组合还增加了 MDA 以及过氧化氢酶和过氧化物酶活性。相比之下,在第 7 天,处理金属组合的植物中 MDA 下降,尤其是 2.5 μmol L-1 铜加镉的植物。在这些植物中,过氧化氢酶活性高于铜处理的植物。在处理镉和 2.5 μmol L-1 铜后,过氧化物酶活性增加,但在处理镉和 5 μmol L-1 铜后则降低。与单独的铜相比,金属组合在处理 4 天后增强了 DNA 损伤,但在第 7 天下降。总之,单独的任一金属都是有毒/遗传毒性的,并引起氧化应激。在联合处理的第 4 天,较高的铜浓度比单独的任一金属更有毒。相比之下,在联合处理的第 7 天,较低的铜浓度显示出较低的氧化和 DNA 损伤。这些复杂的相互作用不能用简单的拮抗作用和/或协同作用来解释。应该进行进一步的研究。

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