KAUST Global Partnership Program, Department of Biology, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, PR China.
Biofouling. 2010 Jan;26(1):119-28. doi: 10.1080/08927010903329680.
Copper (Cu) contamination is a potential threat to the marine environment due to the use of Cu-based antifouling paints. Cu stress on larval settlement of the polychaete Hydroides elegans was investigated, and this was linked to Cu stress on biofilms and on the biofilm development process. The inductiveness of young biofilms was more easily altered by Cu stress than that of old biofilms, indicating the relative vulnerability of young biofilms. This might result from changes in bacterial survival, the bacterial community composition and the chemical profiles of young biofilms. Cu also affected biofilm development and the chemical high performance liquid chromatograph fingerprint profile. The results indicate that Cu affected larval settlement mainly through its effect on the process of biofilm development in the marine environment, and the chemical profile was crucial to biofilm inductiveness. It is strongly recommended that the effects of environmentally toxic substances on biofilms are evaluated in ecotoxicity bioassays using larval settlement of invertebrates as the end point.
铜(Cu)污染是海洋环境的潜在威胁,这是由于使用了含铜的防污涂料。本文研究了 Cu 对多毛类环节动物秀丽盘管虫幼虫附着的胁迫作用,以及 Cu 对生物膜和生物膜发育过程的胁迫作用。Cu 胁迫更容易改变年轻生物膜的感应性,而不是老生物膜的感应性,这表明年轻生物膜相对脆弱。这可能是由于细菌存活、细菌群落组成和年轻生物膜的化学特征发生了变化。Cu 还影响生物膜的发育和化学高效液相色谱指纹图谱。结果表明,Cu 主要通过影响海洋环境中生物膜的发育过程来影响幼虫的附着,而化学特征对于生物膜的感应性至关重要。强烈建议在使用无脊椎动物幼虫附着作为终点的生态毒性生物测定中,评估环境毒性物质对生物膜的影响。