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吡啶硫酮锌和吡啶硫酮铜对沉积物中微生物群落功能和结构的影响。

Effects of zinc pyrithione and copper pyrithione on microbial community function and structure in sediments.

作者信息

Groth Petersen Dorthe, Dahllof Ingela, Nielsen Lars Peter

机构信息

Department of Marine Ecology, National Environmental Research Institute, Frederiksborgvej 399, 4000 Roskilde, Denmark.

出版信息

Environ Toxicol Chem. 2004 Apr;23(4):921-8. doi: 10.1897/03-196.

Abstract

The effects of the new antifouling biocides, zinc pyrithione (ZPT) and copper pyrithione (CPT), on microbial communities in estuarine sediments were studied in microcosms. As functional endpoints, fluxes of nutrients (NO3-, NH4+, HPO4(2-), Si(OH)4) and protein synthesis ([14C]leucine incorporation) were used, whereas molecular fingerprinting methods (polymerase chain reaction/denaturing gradient gel electrophoresis) were used to describe the bacterial community structure. The lowest-observed-effect concentration (LOEC) for ZPT was 0.001 nmol/g dry sediment for the phosphate flux and total DNA content, whereas the LOEC for CPT was 0.1 nmol/g dry sediment for the nitrate flux and total DNA content. Nitrate fluxes increased significantly following additions of both ZPT and CPT, whereas ammonium fluxes decreased significantly after ZPT addition, suggesting changes in the nitrification and denitrification processes. The total DNA content decreased significantly following addition of both ZPT and CPT, but at the highest addition of ZPT (10 nmol ZPT/g dry sediment), an increase in total DNA content was found. Increased protein synthesis and bacterial diversity were also observed at this concentration of ZPT, suggesting growth of tolerant opportunistic species.

摘要

在微宇宙实验中研究了新型防污杀菌剂吡啶硫酮锌(ZPT)和吡啶硫酮铜(CPT)对河口沉积物中微生物群落的影响。作为功能终点,使用了营养物质通量(NO3-、NH4+、HPO4(2-)、Si(OH)4)和蛋白质合成([14C]亮氨酸掺入),而分子指纹图谱方法(聚合酶链反应/变性梯度凝胶电泳)用于描述细菌群落结构。ZPT对磷酸盐通量和总DNA含量的最低观察效应浓度(LOEC)为0.001 nmol/g干沉积物,而CPT对硝酸盐通量和总DNA含量的LOEC为0.1 nmol/g干沉积物。添加ZPT和CPT后,硝酸盐通量均显著增加,而添加ZPT后铵通量显著下降,这表明硝化和反硝化过程发生了变化。添加ZPT和CPT后,总DNA含量均显著下降,但在ZPT的最高添加量(10 nmol ZPT/g干沉积物)下,发现总DNA含量增加。在该ZPT浓度下还观察到蛋白质合成增加和细菌多样性增加,这表明耐受性机会主义物种的生长。

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