Characterisation of marine bacterium Microbulbifer sp. ALW1 with Laminaria japonica degradation capability

被引:0
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作者
Zhipeng Li
Zeping Du
Hebin Li
Yanhong Chen
Mingjing Zheng
Zedong Jiang
Xiping Du
Hui Ni
Yanbing Zhu
机构
[1] Jimei University,College of Ocean Food and Biological Engineering
[2] Fujian Provincial Key Laboratory of Food Microbiology and Enzyme Engineering,Department of Pharmacy
[3] Research Center of Food Biotechnology of Xiamen City,undefined
[4] Xiamen Medical College,undefined
来源
AMB Express | / 12卷
关键词
Brown algae; Polysaccharide degradation; Strain characteristics; Complete genome sequence;
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摘要
Marine bacterium Microbulbifer sp. ALW1 was revealed to be able to effectively degrade Laminaria japonica thallus fragments into fine particles. Polysaccharide substrate specificity analysis indicated that ALW1 could produce extracellular alginate lyase, laminarinase, fucoidanase and cellulase. Based on alignment of the 16 S rRNA sequence with other reference relatives, ALW1 showed the closest relationship with Microbulbifer aggregans CCB-MM1T. The cell morphology and some basic physiological and biochemical parameters of ALW1 cells were characterised. ALW1 is a Gram-negative, rod- or oval-shaped, non-spore-forming and non-motile bacterium. The DNA–DNA relatedness values of ALW1 with type strains of M. gwangyangensis (JCM 17,800), M. aggregans (JCM 31,875), M. maritimus (JCM 12,187), M. okinawensis (JCM 16,147) and M. rhizosphaerae (DSM 28,920) were 28.9%, 43.3%, 41.2%, 35.4% and 45.6%, respectively. The major cell wall sugars of ALW1 were determined to be ribose and galactose, which differed from other closely related species. These characteristics indicated that ALW1 could be assigned to a separate species of the genus Microbulbifer. The complete genome of ALW1 contained one circular chromosome with 4,682,287 bp and a GC content of 56.86%. The putative encoded proteins were categorised based on their functional annotations. Phenotypic, physiological, biochemical and genomic characterisation will provide insights into the many potential industrial applications of Microbulbifer sp. ALW1.
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