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Physiological responses of Dunaliella salina and Dunaliella tertiolecta to copper toxicity

机译:杜氏盐藻和杜氏杜氏藻对铜毒性的生理响应

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Species differences in heavy metal tolerance were investigated by comparing the responses of Dunaliella tertiolecta and Dunaliella salina to elevated concentrations Of CuCl2. Although both species showed reduced cell number ml(-1) of algal culture, D. salina was more affected by increase in CuCl2. This reflects higher sensitivity of D. salina to CuCl2 compared to D. tertiolecta. Total chlorophyll in terms of mu g ml(-1) was higher in D. tertiolecta at all tested CuCl2 levels, but in terms of mu g cell(-1) no significant difference was observed between the two species. Total carotenoids in mu g cell(-1) increased with increase in CuCl2 in both species and it was about five times higher in D. salina at all CuCl, concentrations. While both species showed significant increase in lipid peroxidation at elevated CuCl2, the malondialdehyde content of D. salina cells was about three times higher at Most CuCl2 concentrations. Although ascorbate peroxidase (APX) activity increased with increase in CuCl2 levels in both species, higher activity was observed in D. tertiolecta at all tested CuCl2 concentrations. Cu content of D. salina cells was higher than D. tertiolecta which may be due to larger volume of D. salina cells. In conclusion, since hydroxyl radical (HOcenter dot) produced from H2O2 by Cu2+ (Haber-Weiss cycle) is involved in lipid peroxidation, higher ascorbate peroxidase activity in D. tertiolecta may partly account for lower sensitivity of this species to CuCl2 compared to D. salina. (C) 2005 Elsevier B.V. All rights reserved.
机译:通过比较杜氏杜氏藻和盐藻对高浓度CuCl2的响应,研究了重金属耐受性的物种差异。尽管两个物种都显示藻类培养的细胞数ml(-1)减少,但D. salina受CuCl2增加的影响更大。这反映了盐藻对叔丁基氯化铵的敏感性比叔丁醇铜更高。在所有测试的CuCl2水平下,总菌中的总叶绿素以μg ml(-1)计较高,但以μg cell(-1)计,这两个物种之间未观察到显着差异。在两个物种中,μg细胞(-1)中的总类胡萝卜素均随CuCl2的增加而增加,在所有浓度的CuCl中,盐藻中的总类胡萝卜素约高五倍。虽然这两个物种在升高的CuCl2下都显示出脂质过氧化作用的显着增加,但在大多数CuCl2浓度下,盐藻的丙二醛含量大约高出三倍。尽管两种物种中抗坏血酸过氧化物酶(APX)活性均随CuCl2水平的增加而增加,但在所有测试的CuCl2浓度下,在D. tertiolecta中均观察到较高的活性。盐藻D. salina细胞的Cu含量高于叔叔藻D. tertiolecta,这可能是由于盐藻D. salina细胞的体积更大。总之,由于通过Cu2 +(Haber-Weiss循环)由H2O2产生的羟自由基(HOcenter dot)参与脂质过氧化,因此D.tertiolecta中较高的抗坏血酸过氧化物酶活性可能部分解释了该物种对DCl2的敏感性低于D.盐沼。 (C)2005 Elsevier B.V.保留所有权利。

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