Civil and Environmental Engineering, New Jersey Institute of Technology, University Heights, Newark, New Jersey 07102, United States.
Environ Sci Technol. 2012 Jan 3;46(1):517-24. doi: 10.1021/es202790p. Epub 2011 Dec 8.
Trace metals play important roles in regulating phytoplankton growth and could influence algal bloom development. Laboratory studies were conducted to evaluate the influence of environmentally relevant concentrations of Cd, Cu, Ni, and Zn on Aureococcus anophagefferens bloom (brown tide) development. Results show that the elevated Ni(2+) concentrations, e.g. those of brown tide waters in the northeastern US, greatly stimulated A. anophagefferens growth (as compared to the control without Ni addition), yet, only low amounts of dissolved Ni were sequestered, thus leaving excessive Ni directly promoting A. anophagefferens blooms. The medium effective concentration EC(50) (Me(2+)) suggests A. anophagefferens has similar Cd sensitivity but much greater Cu tolerance as compared to cyanobacteria, as such, excessive Cu could indirectly promote A. anophagefferens blooms by inhibiting competitors such as Synechococcus sp. The effects of Ni and Cu promoting growth are consistent with the recent genomic study of this alga. In addition, Zn(2+) concentrations lower than those in brown tide waters enhance A. anophagefferens growth, but Zn sequestration in A. anophagefferens would not substantially reduce total dissolved Zn in these waters. Overall, this study, showing that excessive Cu and Ni likely promote brown tides, provides evidence for trace metal linkages in algal bloom development.
痕量金属在调节浮游植物生长方面发挥着重要作用,可能影响藻类的爆发发展。实验室研究评估了环境相关浓度的 Cd、Cu、Ni 和 Zn 对具齿原甲藻(棕色潮)爆发的影响。结果表明,升高的 Ni(2+)浓度(如美国东北部棕色潮水域的 Ni(2+)浓度)极大地刺激了具齿原甲藻的生长(与未添加 Ni 的对照相比),然而,只有少量的溶解态 Ni 被螯合,从而导致过量的 Ni 直接促进了具齿原甲藻的爆发。中效浓度 EC(50)(Me(2+)) 表明,与蓝藻相比,具齿原甲藻对 Cd 具有相似的敏感性,但对 Cu 的耐受性更高,因此,过量的 Cu 通过抑制如聚球藻属等竞争者,间接地促进了具齿原甲藻的爆发。Ni 和 Cu 促进生长的影响与最近对该藻类的基因组研究一致。此外,低于棕色潮水中浓度的 Zn(2+)浓度增强了具齿原甲藻的生长,但具齿原甲藻对 Zn 的螯合不会显著降低这些水域中总溶解态 Zn 的含量。总的来说,这项研究表明,过量的 Cu 和 Ni 可能促进棕色潮的爆发,为藻类爆发发展中的痕量金属联系提供了证据。