Petersen Dorthe Groth, Dahllöf Ingela
Department of Marine Ecology, National Environmental Research Institute, Roskilde, Denmark.
Ecotoxicology. 2007 May;16(4):371-7. doi: 10.1007/s10646-007-0139-z. Epub 2007 Mar 23.
The phototoxicity potential of pyrene on natural algae and bacteria in an arctic sediment was evaluated and compared to that of pyrene treatment alone based on some functional and structural endpoints. Microcosms with arctic sediment from a shallow-water marine bay were incubated with pyrene under three different light regimes, natural sunlight with UV-light (Light(UV)), natural sunlight without UV-light (Light) and dark.Presence of pyrene directly affected the algal community measured as decreased (14)C-incorporation and decreased ammonium, nitrate and silicate uptake. These direct toxic effects from pyrene on the algae eventually led to indirect effects on the bacterial community observed as increased oxygen consumption. Besides the direct toxicity of pyrene to the benthic microbial community, indications of phototoxicity were found on the bacterial community detected as decreased oxygen consumption and increased bacterial diversity under Light(UV) compared to Light. No indication of phototoxicity of pyrene was found on the algae, which might be due to the high direct toxicity of pyrene. Our results indicate that shallow arctic marine areas might be affected by phototoxicity if concentrations of oil components in the sediments increase.
基于一些功能和结构端点,评估了芘对北极沉积物中天然藻类和细菌的光毒性潜力,并将其与单独芘处理的光毒性潜力进行了比较。用来自浅水海湾的北极沉积物构建的微型生态系统在三种不同光照条件下与芘一起培养,分别是含紫外线的自然阳光(光照(紫外线))、不含紫外线的自然阳光(光照)和黑暗条件。芘的存在直接影响藻类群落,表现为(14)C吸收减少以及铵、硝酸盐和硅酸盐吸收减少。芘对藻类的这些直接毒性作用最终导致对细菌群落的间接影响,表现为耗氧量增加。除了芘对底栖微生物群落的直接毒性外,还发现了光毒性迹象,与光照条件相比,在光照(紫外线)条件下,细菌群落的耗氧量减少且细菌多样性增加。未发现芘对藻类有光毒性迹象,这可能是由于芘的高直接毒性所致。我们的结果表明,如果沉积物中石油成分的浓度增加,北极浅海区域可能会受到光毒性的影响。