Miao Ai-Jun, Wang Wen-Xiong, Juneau Philippe
Department of Biology, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.
Environ Toxicol Chem. 2005 Oct;24(10):2603-11. doi: 10.1897/05-009r.1.
The toxic effects of Cd, Cu, and Zn on four different marine phytoplankton, Dunaliella tertiolecta, Prorocentrum minimum, Synechococcus sp., and Thalassiosira weissflogii, were examined by comparing the cell-specific growth rate, pulse-amplitude-modulated (PAM) parameters (maximum photosystem II quantum yield phiM and operational quantum yield phi'M, chlorophyll a content, and cellular metal concentration, over a 96-h period. The calculated no-observed-effect concentration (NOEC) based on both cell-specific growth rate and two PAM parameters (phiM and phi'M) were mostly identical. Thus, these PAM parameters and cell-specific growth rate were comparable in their sensitivities as the biomarkers for trace metal toxicity to marine phytoplankton. The cyanobacteria Synechococcus sp. was the most sensitive species among the four algal species tested because of its higher cell surface to volume ratio. The toxicity of the three tested metals followed the order of Cd > Cu > Zn based on the cellular metal concentration of the four algae at the NOEC. The cellular metal bioaccumulation followed the same Freundlich isotherm for each metal regardless of the algal species, indicating that the metal accumulation was a nonmetabolic process under high ambient metal concentrations and that the cell surface metal binding was comparable among the different species. For all the algae examined in our study, the bioaccumulation potentials of Cu and Zn were similar to each other, while the Cd bioaccumulation was much lower under environmentally realistic metal concentration.
通过比较细胞比生长速率、脉冲幅度调制(PAM)参数(最大光系统II量子产率φM和有效量子产率φ'M)、叶绿素a含量以及细胞金属浓度,在96小时内研究了镉、铜和锌对四种不同海洋浮游植物——杜氏盐藻、微小原甲藻、聚球藻属和威氏海链藻的毒性影响。基于细胞比生长速率和两个PAM参数(φM和φ'M)计算出的无观察效应浓度(NOEC)大多相同。因此,这些PAM参数和细胞比生长速率作为海洋浮游植物微量金属毒性生物标志物的敏感性具有可比性。聚球藻属蓝细菌是受试的四种藻类中最敏感的物种,因为其细胞表面积与体积之比更高。基于四种藻类在NOEC时的细胞金属浓度,三种受试金属的毒性顺序为Cd > Cu > Zn。无论藻类种类如何,每种金属的细胞金属生物积累均遵循相同的弗罗因德利希等温线,这表明在高环境金属浓度下,金属积累是一个非代谢过程,并且不同物种之间的细胞表面金属结合具有可比性。对于我们研究中检测的所有藻类,铜和锌的生物积累潜力彼此相似,而在环境现实的金属浓度下,镉的生物积累要低得多。