Simultaneous Microcystis Algicidal and Microcystin Degrading Capability by a Single Acinetobacter Bacterial Strain

溶解 微囊藻毒素 铜绿微囊藻 微生物学 蓝藻 细胞外 细菌 微囊藻 细菌细胞结构 生物 微囊藻毒素 水华 代谢物 拉伤 毒素 藻类 不动杆菌 化学 生物化学 植物 浮游植物 抗生素 生态学 解剖 遗传学 营养物
作者
Hong Li,Hainan Ai,Li Kang,Xingfu Sun,Qiang He
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:50 (21): 11903-11911 被引量:72
标识
DOI:10.1021/acs.est.6b03986
摘要

Measures for removal of toxic harmful algal blooms often cause lysis of algal cells and release of microcystins (MCs). In this study, Acinetobacter sp. CMDB-2 that exhibits distinct algal lysing activity and MCs degradation capability was isolated. The physiological response and morphological characteristics of toxin-producing Microcystis aeruginosa, the dynamics of intra- and extracellular MC-LR concentration were studied in an algal/bacterial cocultured system. The results demonstrated that Acinetobacter sp. CMDB-2 caused thorough decomposition of algal cells and impairment of photosynthesis within 24 h. Enhanced algal lysis and MC-LR release appeared with increasing bacterial density from 1 × 103 to 1 × 107 cells/mL; however, the MC-LR was reduced by nearly 94% within 14 h irrespective of bacterial density. Measurement of extracellular and intracellular MC-LR revealed that the toxin was decreased by 92% in bacterial cell incubated systems relative to control and bacterial cell-free filtrate systems. The results confirmed that the bacterial metabolite caused 92% lysis of Microcystis aeruginosa cells, whereas the bacterial cells were responsible for approximately 91% reduction of MC-LR. The joint efforts of the bacterium and its metabolite accomplished the sustainable removal of algae and MC-LR. This is the first report of a single bacterial strain that achieves these dual actions.
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