Genome sequence and plasmid transformation of the model high-yield bacterial cellulose producer Gluconacetobacter hansenii ATCC 53582

被引:64
作者
Florea, Michael [1 ,2 ]
Reeve, Benjamin [2 ,5 ]
Abbott, James [3 ,4 ]
Freemont, Paul S. [2 ,6 ]
Ellis, Tom [2 ,5 ]
机构
[1] Univ London Imperial Coll Sci Technol & Med, Dept Life Sci, London, England
[2] Univ London Imperial Coll Sci Technol & Med, Ctr Synthet Biol & Innovat, London, England
[3] Univ London Imperial Coll Sci Technol & Med, Dept Surg & Canc, Bioinformat Support Serv, London, England
[4] Univ London Imperial Coll Sci Technol & Med, Ctr Integrat Syst Biol & Bioinformat, London, England
[5] Univ London Imperial Coll Sci Technol & Med, Dept Bioengn, London, England
[6] Univ London Imperial Coll Sci Technol & Med, Dept Med, London, England
基金
英国工程与自然科学研究理事会;
关键词
EXPRESSING VITREOSCILLA HEMOGLOBIN; ACETOBACTER-XYLINUM; GENETIC ORGANIZATION; ESCHERICHIA-COLI; SYNTHASE OPERON; DI-GMP; IDENTIFICATION; BIOSYNTHESIS; ARCHITECTURE; PROPOSALS;
D O I
10.1038/srep23635
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Bacterial cellulose is a strong, highly pure form of cellulose that is used in a range of applications in industry, consumer goods and medicine. Gluconacetobacter hansenii ATCC 53582 is one of the highest reported bacterial cellulose producing strains and has been used as a model organism in numerous studies of bacterial cellulose production and studies aiming to increased cellulose productivity. Here we present a high-quality draft genome sequence for G. hansenii ATCC 53582 and find that in addition to the previously described cellulose synthase operon, ATCC 53582 contains two additional cellulose synthase operons and several previously undescribed genes associated with cellulose production. In parallel, we also develop optimized protocols and identify plasmid backbones suitable for transformation of ATCC 53582, albeit with low efficiencies. Together, these results provide important information for further studies into cellulose synthesis and for future studies aiming to genetically engineer G. hansenii ATCC 53582 for increased cellulose productivity.
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收藏
页数:9
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