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Isolation and algae-lysing characteristics of the algicidal bacterium B5
Authors:MU Rui-min  FAN Zheng-qiu  PEI Hai-yan  YUAN Xue-liang  Liu Si-xiu and WANG Xiang-rong
Institution:1. Department of Environmental Science and Engineering, Fudan University, Shanghai 200433, China
2. College of Environmental Science and Engineering, Ocean University of China, Qingdao 266003, China
3. Environmental Research Institute, Shandong University, Jinan 250100, China
Abstract:Water blooms have become a worldwide environmental problem. Recently, algicidal bacteria have attracted wide attention as possible agents for inhibiting algal water blooms. In this study, one strain of algicidal bacterium B5 was isolated from activated sludge. On the basis of analysis of its physiological characteristics and 16S rDNA gene sequence, it was identified as Bacillus fusiformis. Its algae-lysing characteristics on Microcystis aeruginosa, Chlorella and Scenedesmus were tested. The results showed that: (1) the algicidal bacterium B5 is a Gram-negative bacterium. The 16S rDNA nucleotide sequence homology of strain B5 with 2 strains of B. fusiformis reached 99.86%, so B5 was identified as B. fusiformis; (2) the algal-lysing effects of the algicidal bacterium B5 on M. aeruginosa, Chlorella and Scenedesmus were pronounced. The initial bacterial and algal cell densities strongly influence the removal rates of chlorophyll-a. The greater the initial bacterial cell density, the faster the degradation of chlorophyll-a. The greater the initial algal cell density, the slower the degradation of chlorophyll-a. When the bacterial cell density was 3.6 × 107 cells/ml, nearly 90% of chlorophyll-a was removed. When the chlorophyll-a concentration was less than 550 μg/L, about 70 % was removed; (3) the strain B5 lysed algae not directly but by secreting metabolites and these metabolites could bear heat treatment.
Keywords:Algicidal bacteria  water blooms  algae-lysing characteristic  16S rDNA  Bacillus fusiformis    bacterium  characteristics  algae  metabolites  bear  heat treatment  concentration  nearly  cells  faster  degradation  cell density  initial  bacterial  densities  influence  removal  rates  aeruginosa  effects
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