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COMPOSITION AND PRODUCTION OF THIOL CONSTITUENTS INDUCED BY CADMIUM IN THE MARINE MICROALGA TETRASELMIS SUECICA

机译:海水微藻中镉诱导的硫醇成分的组成和产生

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Time course of intracellular levels of different thiols (phytochelatins, desglycyl-phytochelatins, glutathione, γ-glutamylcysteine [γ-Glu-Cys], and cysteine) were studied in the microalga Tetraselmis suecica exposed to different cadmium concentrations for 8 d. The cadmium concentrations assayed were 3, 7.9, 15, and 30 mg/L. Contents of thiol compounds synthesized by this microalga changed with cadmium concentration and with time of exposure. Cysteine concentrations increased significantly compared with those of γ-Glu-Cys and glutathione in cultures containing 7.9, 15, and 30 mg/L. The increase in the amount of glutathione was significant only in cells exposed to the higher cadmium concentrations (15 and 30 mg/L). Nevertheless, in all the cadmium concentrations assayed, γ-Glu-Cys levels were constant. A rapid increase in phytochelatins was observed with increased cadmium concentration during the first days of culture. The type of phytochelatins (number of subunits) also was dependent on the concentration of cadmium. The rate of (γ-Glu-Cys)3-Gly accumulation was higher than those of other types of phytochelatins throughout the culture in cells exposed to 3, 15, and 30 mg/L. However, in cultures treated with 7.9 mg/L, (γ-Glu-Cys)4-Gly increased substantially after 8 d of culture, exceeding the amount of (γ-Glu-Cys)3-Gly. Cultures exposed to the higher cadmium concentrations (15 and 30 mg/L) showed a decrease in phytochelatins after 4 and 3 d of culture, respectively, whereas an increase in cysteine and glutathione occurred at the same time. A rapid decrease in phytochelatins also was measured when cells were placed into cadmium-free medium. This decrease is consistent with a degradation of the phytochelatins.
机译:研究了微藻Tetraselmis suecica暴露于不同镉浓度下8天后,不同硫醇(植物螯合素,去糖基植物螯合素,谷胱甘肽,γ-谷氨酰半胱氨酸[γ-Glu-Cys]和半胱氨酸)的细胞内水平随时间变化的过程。测定的镉浓度为3、7.9、15和30 mg / L。该微藻合成的硫醇化合物的含量随镉浓度和暴露时间而变化。在含有7.9、15和30 mg / L的培养物中,半胱氨酸浓度与γ-Glu-Cys和谷胱甘肽相比明显增加。谷胱甘肽的增加仅在暴露于较高镉浓度(15和30 mg / L)的细胞中才有意义。然而,在所有测定的镉浓度中,γ-Glu-Cys水平都是恒定的。在培养的第一天,随着镉浓度的增加,植物螯合素迅速增加。植物螯合素的类型(亚基数量)也取决于镉的浓度。在暴露于3、15和30 mg / L的细胞中,整个培养过程中(γ-Glu-Cys)3-Gly的积累速率高于其他类型的植物螯合素。然而,在用7.9mg / L处理的培养物中,(γ-Glu-Cys)4-Gly在培养8天后显着增加,超过了(γ-Glu-Cys)3-Gly的量。暴露于较高镉浓度(15和30 mg / L)的培养物分别在培养4和3 d后显示出植物螯合素的减少,而同时半胱氨酸和谷胱甘肽的增加。当将细胞放入不含镉的培养基中时,也检测到了植物螯合素的快速下降。该减少与植物螯合素的降解一致。

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