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Cadmium and copper toxicity in three marine macroalgae: evaluation of the biochemical responses and DNA damage

机译:三种海洋大型藻类中的镉和铜毒性:生化反应和DNA损伤的评估

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Marine macroalgae have evolved a different mechanism to maintain physiological concentrations of essential metal ions and non-essential metals. The objective of the present work was to evaluate the antioxidant response and DNA damage of copper and cadmium ions in three halophytes, namely, Acanthophora spicifera, Chaetomorpha antennina, and Ulva reticulata. Accumulation of copper was significantly higher (P<0.05) than that of cadmium. Biochemical responses showed that copper was considerably more toxic than cadmium (P<0.05). Decreases in glutathione content and fluctuations of super oxide dismutase, eatalase, and glutathione per-oxidase activities were observed corresponding to time and concentration of exposure. Interestingly, it was also observed that antioxidant levels decreased as a result of metal accumulation, which may be due to free radicals generated by copper and cadmium in seaweeds. The present study also showed that copper and cadmium increased oxidative stress and induced antioxidant defense systems against reactive oxygen species. The order of toxicity for metals in the studied seaweeds was U, reticulata > A. spicifera > C. antennina. DNA damage index analysis supported that copper was significantly (P<0.05) more toxic than cadmium. Bioaccumulation, biochemical responses, and DNA damage observed in the here analyzed marine macroalgae after exposure to selected metals indicate that these marine organisms represent useful bioindicators of marine pollution.
机译:海洋大型藻类已经发展出一种不同的机制来维持必需金属离子和非必需金属的生理浓度。本工作的目的是评估三种盐生植物中的铜和镉离子的抗氧化反应以及DNA和DNA的损伤,这三种盐生植物分别为刺五加(Acanthophora spicifera),彩叶蛛(Chaetomorpha antennina)和网状榆(Ulva reticulata)。铜的累积量显着高于镉(P <0.05)。生化反应表明,铜的毒性比镉高得多(P <0.05)。观察到谷胱甘肽含量的下降以及超氧化物歧化酶,双谷醛酶和谷胱甘肽过氧化物酶活性的波动,这与暴露的时间和浓度相对应。有趣的是,还观察到抗氧化剂水平由于金属积累而降低,这可能是由于海藻中铜和镉产生的自由基所致。本研究还表明,铜和镉会增加氧化应激并诱导抗氧化剂防御系统对抗活性氧。在所研究的海藻中,金属对金属的毒性顺序为:U,网纹> A. spicifera> C. antennina。 DNA损伤指数分析表明,铜的毒性比镉高(P <0.05)。暴露于选定金属后,在此处分析的海洋大型藻类中观察到的生物蓄积,生化反应和DNA损伤表明,这些海洋生物代表了海洋污染的有用生物指标。

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