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An ecological study on dynamics of toxic Microcystis blooms in a eutrophic park pond, Wuhan, China

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【Author】 CHENG Kai, ZHAO Yijun, XU Min, YIN Jun, XIONG Qin, ZHOU Jinchen, WANG Yuzhen, ZHANG Wei, WANG Jinwang, LIU Zhaoyin and WANG Furong(College of Life Science, Central China Normal University, Wuhan 430079, China)

【摘要】 <正> The results of ecological investigation of Microcystis blooms and their toxicity in a eutrophic park pond (where the annual average of total nitrogen and total phosphorus was 6.1 mg·L-1 and 1. 79 mg·L-1, respectively) are presented. The blooms were mainly contributed by M. aeruginosa occurring in the period from May to October when water temperature ranged from 16 to 33℃ . Three remarkable growth peaks of Microcystis during the period were observed with chlorophyll a level of 0. 73 mg· L-1 ,1.44 mg·L-1 , and 1.30 mg· L-1 , respectively. The blooms were independent of phosphorus, but highly dependent on ammonium. A level of ammonium of 9. 5 mg· L-1 could trigger the outbreak of the bloom, while that below 0. 89 mg· L-1 could inhibit its formation. In other words, ammonium in higher concentrations could promote blooming, while that in lower concentrations could be inhibitory. Microcystis toxicity tended to increase with the blooming process, but the toxic peaks lagged behind their corresponding gr

【Abstract】 The results of ecological investigation of Microcystis blooms and their toxicity in a eutrophic park pond (where the annual average of total nitrogen and total phosphorus was 6.1 mg·L-1 and 1. 79 mg·L-1, respectively) are presented. The blooms were mainly contributed by M. aeruginosa occurring in the period from May to October when water temperature ranged from 16 to 33℃ . Three remarkable growth peaks of Microcystis during the period were observed with chlorophyll a level of 0. 73 mg· L-1 ,1.44 mg·L-1 , and 1.30 mg· L-1 , respectively. The blooms were independent of phosphorus, but highly dependent on ammonium. A level of ammonium of 9. 5 mg· L-1 could trigger the outbreak of the bloom, while that below 0. 89 mg· L-1 could inhibit its formation. In other words, ammonium in higher concentrations could promote blooming, while that in lower concentrations could be inhibitory. Microcystis toxicity tended to increase with the blooming process, but the toxic peaks lagged behind their corresponding growth peaks.

【基金】 Supported by the National Natural Science Foundation of China (Grant No. 39970064); the Natural Science Foundation of Hubei Province (Grant No. 98J015) ; Wuhan Funding Programme of Young Scientists(Grant No. 985003072)
  • 【文献出处】 Progress in Natural Science ,自然科学进展(英文版) , 编辑部邮箱 ,2002年01期
  • 【分类号】X173
  • 【被引频次】2
  • 【下载频次】20
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