State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, The Chinese Academy of Sciences, Wuhan 430072, PR China.
Chemosphere. 2009 Dec;77(11):1585-93. doi: 10.1016/j.chemosphere.2009.09.037. Epub 2009 Oct 23.
Although Microcystis-based toxins have been intensively studied, previous studies using laboratory cultures of Microcystis strains are difficult to explain the phenomenon that microcystin concentrations and toxin variants in natural blooms differ widely and frequently within a short-term period. The present study was designed to unravel the mechanisms for the frequent variations of intracellular toxins related to the differences in cyanobacterial colonies during bloom seasons in Lake Taihu, China. Monitoring of Microcystis colonies during warm seasons indicated that the variations in microcystins in both concentrations and toxin species were associated with the frequent alteration of Microcystis colonies in Lake Taihu. High concentration of microcystins in the blooms was always associated with two Microcystis colonies, Microcystis flos-aquae and Microcystis aeruginosa, whereas when Microcystis wesenbergii was the dominant colonial type, the toxin production of the blooms was low. Additionally, environmental factors such as temperature and nutrition were also shown to have an effect on the toxin production of the blooms, and may also potentially influence the Microcystis species present. The results of the present study provides insight into a new consideration for quick water quality monitoring, assessment and risk alert in cyanobacterium- and toxin-contaminated freshwaters, which will be beneficial not only for water agencies but also for public health.
虽然微囊藻毒素已得到深入研究,但以前使用微囊藻株系的实验室培养物进行的研究很难解释在短时间内天然水华的微囊藻浓度和毒素变体差异很大的现象。本研究旨在揭示中国太湖蓝藻水华季节中与蓝藻菌落差异相关的细胞内毒素频繁变化的机制。在温暖季节对微囊藻菌落的监测表明,微囊藻毒素浓度和毒素种类的变化与太湖微囊藻菌落的频繁变化有关。水华期间高浓度的微囊藻毒素总是与两种微囊藻有关,分别是水华微囊藻和铜绿微囊藻,而当颤藻为优势种时,水华的毒素产量较低。此外,环境因素如温度和营养也被证明对水华的毒素产生有影响,并且可能也会影响存在的微囊藻种类。本研究的结果为快速水质监测、评估和蓝藻及毒素污染淡水的风险预警提供了新的思路,这不仅对水务机构而且对公众健康都将是有益的。