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首页> 外文期刊>Biotechnology Letters >Genome sequencing and phylogenetic analysis of K1G4: a new Komagataeibacter strain producing bacterial cellulose from different carbon sources
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Genome sequencing and phylogenetic analysis of K1G4: a new Komagataeibacter strain producing bacterial cellulose from different carbon sources

机译:K1G4的基因组测序和系统发育分析:一种新的Komagataibacter株,产生不同碳源的细菌纤维素

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Objective The objective of this study was to evaluate the ability of a new Komagataeibacter xylinus strain in producing bacterial cellulose from glucose, mannitol and glycerol, and to assess the genome sequencing with special focus on bacterial cellulose related genes. Results Bacterial cellulose production during 9 days of cultivation was tested in glucose, mannitol and glycerol, respectively. Differences in the bacterial cellulose kinetic formation was observed, with a final yield of 9.47 g/L in mannitol, 8.30 g/L in glycerol and 7.57 g/L in glucose, respectively. The draft genome sequencing of K1G4 was produced, revealing a genome of 3.09 Mbp. Two structurally completed cellulose synthase operons and a third copy of the catalytic subunit of cellulose synthase were found. By using phylogenetic analysis, on the entire rRNA operon sequence, K1G4 was found to be closely related to Komagataeibacter xylinus LMG 1515(T) and K. xylinus K2G30. Conclusions The different yields of bacterial cellulose produced on glucose, mannitol and glycerol can be correlated with the third copy of bcsAB operon harboured by K1G4, making it a versatile strain for industrial applications.
机译:目的本研究的目的是评估新的Komagataeibacter木瓜菌株在产生葡萄糖,甘露醇和甘油的细菌纤维素中的能力,并评估专注于细菌纤维素相关基因的基因组测序。结果分别在葡萄糖,甘露醇和甘油中进行9天培养的细菌纤维素产生。观察到细菌纤维素动力学形成的差异,甘油中的甘油中的最终产率为9.47g / l,分别为甘油中的8.30g / L.7.57g / L.产生K1G4的基因组测序草案,揭示了3.09mbp的基因组。发现两个结构完成的纤维素合酶和纤维素合酶催化亚基的第三拷贝。通过使用系统发育分析,在整个RRNA操纵子序列上,发现K1G4与Komagataeibacter Xylinus LMG 1515(T)和K.Xylinus K2G30密切相关。结论在葡萄糖,甘露醇和甘油上产生的细菌纤维素的不同产量可以与K1G4覆盖的BCSAB操纵子的第三拷贝相关,使其成为工业应用的多功能菌株。

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