Shen Guoqing, Lu Yitong, Zhou Qixing, Hong Jingbo
Department of Environment and Resource, College of Agriculture and Biology, Shanghai Jiaotong University, Shanghai 201101, PR China.
Chemosphere. 2005 Dec;61(8):1175-82. doi: 10.1016/j.chemosphere.2005.02.074. Epub 2005 Apr 13.
Actions and interactions of heavy metals (cadmium, zinc and plumbum) and polycyclic aromatic hydrocarbons (PAHs) [phenanthrene, fluoranthene, benzo(a)pyrene] on the soil urease and dehydrogenase activity were studied after 49 days exposure. The experimental approach was based on the uniform design which can cut the experiment time and improve the efficiency of experiments. Data treatment was essentially based on the multiple regression technique. The results showed that the action and interaction between heavy metals and PAHs were strongly dependent on the time of pollution. The dehydrogenase exhibits more sensitive to the combined pollution than urease. The negative interaction between Zn and Cd to hydrogenase activity and the combined stimulatory activity of Phenanthrene and Benzo(a)pyrene (or fluoranthene) to soil enzyme were observed. The interactions between Zn (Cd) and phenanthrene towards urease (dehydrogenase) were positive, and the interaction between Zn and benzo(a)pyrene to urease activity was negative. This study corresponds to exploratory phase in order to reveal interaction effects of heavy metals and PAHs on the soil enzyme and then to set up more in-depth analysis to increase progressively the understanding of the ecotoxicological mechanisms involved.
在暴露49天后,研究了重金属(镉、锌和铅)与多环芳烃(PAHs)[菲、荧蒽、苯并(a)芘]对土壤脲酶和脱氢酶活性的作用及相互作用。实验方法基于均匀设计,该设计可缩短实验时间并提高实验效率。数据处理主要基于多元回归技术。结果表明,重金属与PAHs之间的作用及相互作用强烈依赖于污染时间。脱氢酶对复合污染的敏感性高于脲酶。观察到锌和镉对氢化酶活性的负相互作用,以及菲和苯并(a)芘(或荧蒽)对土壤酶的联合刺激活性。锌(镉)与菲对脲酶(脱氢酶)的相互作用为正,而锌与苯并(a)芘对脲酶活性的相互作用为负。本研究处于探索阶段,旨在揭示重金属与PAHs对土壤酶的相互作用效应,进而进行更深入的分析,逐步加深对所涉及的生态毒理学机制的理解。