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不同浓度的铜和铅对体外培养的绳藻形态和生理的影响:一项比较分析

The effect of different concentrations of copper and lead on the morphology and physiology of Hypnea musciformis cultivated in vitro: a comparative analysis.

作者信息

Santos Rodrigo W, Schmidt Éder C, Vieira Izabela C, Costa Giulia B, Rover Ticiane, Simioni Carmen, Barufi José Bonomi, Soares Carlos Henrique L, Bouzon Zenilda L

机构信息

Plant Cell Biology Laboratory, Department of Cell Biology, Embryology and Genetics, Federal University of Santa Catarina, 88049-900, CP 476, Florianópolis, SC, Brazil,

出版信息

Protoplasma. 2015 Sep;252(5):1203-15. doi: 10.1007/s00709-014-0751-8. Epub 2015 Jan 7.

Abstract

Copper and lead, as remnants of industrial activities and urban effluents, have heavily contaminated many aquatic environments. Therefore, this study aimed to determine their effects on the physiological, biochemical, and cell organization responses of Hypnea musciformis under laboratory conditions during a 7-day experimental period. To accomplish this, segments of H. musciformis were exposed to photosynthetic active radiation at 80 μmol photons m(-2) s(-1), Cu (0.05 and 0.1 mg kg(-1)), and Pb (3.5 and 7 mg kg(-1)). Various intracellular abnormalities resulted from exposure to Cu and Pb, including a decrease in phycobiliproteins. Moreover, carotenoid and flavonoid contents, as well as phenolic compounds, were decreased, an apparent reflection of chemical antioxidant defense against reactive oxygen species. Treatment with Cu and Pb also caused an increase in the number of floridean starch grains, probably as a defense against nutrient deprivation. Compared to plants treated with lead, those treated with copper showed higher metabolic and ultrastructural alterations. These results suggest that H. musciformis more readily internalizes copper through transcellular absorption. Finally, as a result of ultrastructural damage and metabolic changes observed in plants exposed to different concentrations of Cu and Pb, a significant reduction in growth rates was observed. Nevertheless, the results indicated different susceptibility of H. musciformis to different concentrations of Cu and Pb.

摘要

作为工业活动和城市污水的残留物,铜和铅已严重污染了许多水生环境。因此,本研究旨在确定在实验室条件下,在为期7天的实验期内,它们对绳藻(Hypnea musciformis)的生理、生化和细胞组织反应的影响。为实现这一目标,将绳藻切段暴露于80 μmol光子·m⁻²·s⁻¹的光合有效辐射、0.05和0.1 mg·kg⁻¹的铜以及3.5和7 mg·kg⁻¹的铅中。暴露于铜和铅会导致各种细胞内异常,包括藻胆蛋白减少。此外,类胡萝卜素和黄酮类化合物的含量以及酚类化合物均减少,这明显反映了针对活性氧的化学抗氧化防御。用铜和铅处理还导致了红藻淀粉粒数量增加,这可能是对营养缺乏的一种防御。与用铅处理的植物相比,用铜处理的植物表现出更高的代谢和超微结构改变。这些结果表明,绳藻更容易通过跨细胞吸收将铜内化。最后,由于在暴露于不同浓度铜和铅的植物中观察到超微结构损伤和代谢变化,其生长速率显著降低。然而,结果表明绳藻对不同浓度的铜和铅具有不同的敏感性。

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