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Isolation and algae-lysing characteristics of the algicidal bacterium B5

机译:杀藻细菌B5的分离和溶藻特性

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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 × 10~7 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 by secreting metabolites and these metabolites could bear heat treatment.
机译:水华已成为全球性的环境问题。近来,杀藻细菌作为抑制藻类水华的可能试剂已引起广泛关注。在这项研究中,从活性污泥中分离出一株杀菌剂B5。通过对其生理特性和16S rDNA基因序列的分析,确定其为梭状芽孢杆菌。测试了其对铜绿微囊藻,小球藻和场景藻的溶藻特性。结果表明:(1)杀藻细菌B5为革兰氏阴性细菌。 B5菌株与2株fusiformis菌株的16S rDNA核苷酸序列同源性达到99.86%,因此B5被鉴定为fusiformis。 (2)杀菌剂B5对铜绿假单胞菌,小球藻和Scendesmus具有明显的溶藻作用。初始细菌和藻类细胞密度强烈影响叶绿素-a的去除率。初始细菌细胞密度越大,叶绿素-a的降解越快。初始藻类细胞密度越大,叶绿素-a的降解越慢。当细菌细胞密度为3.6×10〜7细胞/ ml时,几乎去除了90%的叶绿素-a。当叶绿素-a浓度小于550μg/ L时,约70%被去除。 (3)菌株B5通过分泌代谢产物裂解藻类,这些代谢产物可以进行热处理。

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