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镉、铜和锌之间的相互作用对海洋浮游植物中颗粒态植物螯合肽浓度的影响:实验室结果与初步现场数据

Interactions between Cd, Cu, and Zn influence particulate phytochelatin concentrations in marine phytoplankton: laboratory results and preliminary field data.

作者信息

Wei Liping, Donat John R, Fones Gary, Ahner Beth A

机构信息

Biological and Environmental Engineering, Cornell University, Ithaca, New York 14853, USA.

出版信息

Environ Sci Technol. 2003 Aug 15;37(16):3609-18. doi: 10.1021/es0340026.

Abstract

The effect of metal interactions on phytochelatin production by marine phytoplankton has received little attention but yet is critical to understanding the biochemical production of this potentially important metal-binding ligand in the field. Cd, Cu, and Zn additions were made singly and in combination to three species of laboratory cultures and to a natural algal assemblage from pristine coastal seawater. In the laboratory cultures intracellular phytochelatin varied with metal exposure and demonstrated metal- and concentration-dependent synergisms and antagonisms. Most notably, the addition of all three metals together greatly suppressed phytochelatin production in all cultures. Particulate phytochelatin was also measured at two field sites. In the field, phytochelatin production is related to ambient Cd, Cu, and Zn levels, and the deviations from the dose-response relationship are potentially explained by metal interactions similar to those observed in the laboratory cultures. Though particulate glutathione concentrations were very low in some field samples, it did not appear to limit phytochelatin production. Particulate phytochelatin concentrations in samples from both field sites were very similar to those measured in the laboratory cultures when exposed to all three metals together, and thus phytochelatin levels in the field may be regulated by the interaction of Cd, Cu, and Zn.

摘要

金属相互作用对海洋浮游植物产生植物螯合肽的影响鲜受关注,但对于理解该潜在重要金属结合配体在自然环境中的生化产生至关重要。分别单独及组合添加镉、铜和锌至三种实验室培养的藻类以及取自原始沿海海水的天然藻类组合中。在实验室培养中,细胞内植物螯合肽随金属暴露情况而变化,并表现出金属及浓度依赖性的协同作用和拮抗作用。最值得注意的是,同时添加所有三种金属极大地抑制了所有培养物中植物螯合肽的产生。还在两个野外站点测量了颗粒态植物螯合肽。在野外,植物螯合肽的产生与环境中镉、铜和锌的水平相关,与剂量反应关系的偏差可能由类似于在实验室培养中观察到的金属相互作用来解释。尽管在一些野外样本中颗粒态谷胱甘肽浓度非常低,但它似乎并未限制植物螯合肽的产生。当同时暴露于所有三种金属时,两个野外站点样本中的颗粒态植物螯合肽浓度与实验室培养中测得的浓度非常相似,因此野外的植物螯合肽水平可能受镉、铜和锌相互作用的调节。

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