Laboratorio de Microbiología, Facultad de Ciencias, Universidad de A Coruña, Coruña, Spain.
Ecotoxicology. 2012 Mar;21(2):409-20. doi: 10.1007/s10646-011-0801-3. Epub 2011 Oct 5.
Investigation of herbicide toxicology in non-target aquatic primary producers such as microalgae is of great importance from an ecological point of view. In order to study the toxicity of the widely used herbicide paraquat on freshwater green microalga Chlamydomonas moewusii, physiological changes associated with 96 h-exposures to this pollutant were monitored using flow cytometry (FCM) technique. Intracellular reactive oxygen species concentration, cytoplasmic membrane potential, metabolic activity and cell protein content were monitored to evaluate the toxicological impact of paraquat on algal physiology. Results showed that herbicide paraquat induced oxidative stress in C. moewusii cells, as it indicated the increase of both superoxide anion and hydrogen peroxide levels observed in non-chlorotic cells of cultures exposed to increasing herbicide concentrations. Furthermore, a progressive increase in the percentage of depolarised cells and a decrease in the metabolic activity level were observed in response to paraquat when non-chlorotic cells were analysed. Chlorotic cells were probably non-viable cells, based on the cytoplasmic membrane depolarisation, its metabolically non-active state and its drastically reduced protein content. In view of the obtained results, we have concluded that a range of significant physiological alterations, detected by flow cytometry, occur when C. moewusii, an ubiquitous microalga in freshwater environments, is challenged with environmentally relevant concentrations of the herbicide paraquat.
从生态学角度来看,研究非靶标水生初级生产者(如微藻)中的除草剂毒理学非常重要。为了研究广泛使用的除草剂百草枯对淡水绿藻衣藻的毒性,我们使用流式细胞术(FCM)技术监测了该污染物暴露 96 小时后与生理变化相关的变化。监测了细胞内活性氧浓度、细胞质膜电位、代谢活性和细胞蛋白含量,以评估百草枯对藻类生理的毒理学影响。结果表明,除草剂百草枯诱导了衣藻细胞的氧化应激,因为它表明在暴露于除草剂浓度增加的培养物中无绿斑细胞中观察到的超氧阴离子和过氧化氢水平增加。此外,当分析非绿斑细胞时,观察到随着百草枯的增加,去极化细胞的百分比逐渐增加,代谢活性水平降低。根据细胞质膜去极化、代谢非活性状态及其蛋白质含量急剧降低,推测绿斑细胞可能是不可存活的细胞。鉴于所获得的结果,我们得出结论,当普遍存在于淡水环境中的微藻衣藻受到环境相关浓度的除草剂百草枯挑战时,通过流式细胞术检测到一系列重要的生理变化。