Complete genome sequence of the cellulose-producing strain Komagataeibacter nataicola RZS01
Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic acid. To globally understand its fermentation characteristics, we present a high-quality complete genome sequence of K. nataicola RZS01. The genome co...
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Published in | Scientific reports Vol. 7; no. 1; pp. 4431 - 8 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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Nature Publishing Group
30.06.2017
Nature Publishing Group UK Nature Portfolio |
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Abstract | Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic acid. To globally understand its fermentation characteristics, we present a high-quality complete genome sequence of K. nataicola RZS01. The genome consists of a 3,485,191-bp chromosome and 6 plasmids, which encode 3,514 proteins and bear three cellulose synthase operons. Phylogenetic analysis at the genome level provides convincing evidence of the evolutionary position of K. nataicola with respect to related taxa. Genomic comparisons with other AAB revealed that RZS01 shares 36.1%~75.1% of sequence similarity with other AAB. The sequence data was also used for metabolic analysis of biotechnological substrates. Analysis of the resistance to acetic acid at the genomic level indicated a synergistic mechanism responsible for acetic acid tolerance. The genomic data provide a viable platform that can be used to understand and manipulate the phenotype of K. nataicola RZS01 to further improve bacterial cellulose production. |
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AbstractList | Komagataeibacter nataicola
is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic acid. To globally understand its fermentation characteristics, we present a high-quality complete genome sequence of
K. nataicola
RZS01. The genome consists of a 3,485,191-bp chromosome and 6 plasmids, which encode 3,514 proteins and bear three cellulose synthase operons. Phylogenetic analysis at the genome level provides convincing evidence of the evolutionary position of
K. nataicola
with respect to related taxa. Genomic comparisons with other AAB revealed that RZS01 shares 36.1%~75.1% of sequence similarity with other AAB. The sequence data was also used for metabolic analysis of biotechnological substrates. Analysis of the resistance to acetic acid at the genomic level indicated a synergistic mechanism responsible for acetic acid tolerance. The genomic data provide a viable platform that can be used to understand and manipulate the phenotype of
K. nataicola
RZS01 to further improve bacterial cellulose production. Abstract Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic acid. To globally understand its fermentation characteristics, we present a high-quality complete genome sequence of K. nataicola RZS01. The genome consists of a 3,485,191-bp chromosome and 6 plasmids, which encode 3,514 proteins and bear three cellulose synthase operons. Phylogenetic analysis at the genome level provides convincing evidence of the evolutionary position of K. nataicola with respect to related taxa. Genomic comparisons with other AAB revealed that RZS01 shares 36.1%~75.1% of sequence similarity with other AAB. The sequence data was also used for metabolic analysis of biotechnological substrates. Analysis of the resistance to acetic acid at the genomic level indicated a synergistic mechanism responsible for acetic acid tolerance. The genomic data provide a viable platform that can be used to understand and manipulate the phenotype of K. nataicola RZS01 to further improve bacterial cellulose production. Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic acid. To globally understand its fermentation characteristics, we present a high-quality complete genome sequence of K. nataicola RZS01. The genome consists of a 3,485,191-bp chromosome and 6 plasmids, which encode 3,514 proteins and bear three cellulose synthase operons. Phylogenetic analysis at the genome level provides convincing evidence of the evolutionary position of K. nataicola with respect to related taxa. Genomic comparisons with other AAB revealed that RZS01 shares 36.1%~75.1% of sequence similarity with other AAB. The sequence data was also used for metabolic analysis of biotechnological substrates. Analysis of the resistance to acetic acid at the genomic level indicated a synergistic mechanism responsible for acetic acid tolerance. The genomic data provide a viable platform that can be used to understand and manipulate the phenotype of K. nataicola RZS01 to further improve bacterial cellulose production. Abstract Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic acid. To globally understand its fermentation characteristics, we present a high-quality complete genome sequence of K. nataicola RZS01. The genome consists of a 3,485,191-bp chromosome and 6 plasmids, which encode 3,514 proteins and bear three cellulose synthase operons. Phylogenetic analysis at the genome level provides convincing evidence of the evolutionary position of K. nataicola with respect to related taxa. Genomic comparisons with other AAB revealed that RZS01 shares 36.1%~75.1% of sequence similarity with other AAB. The sequence data was also used for metabolic analysis of biotechnological substrates. Analysis of the resistance to acetic acid at the genomic level indicated a synergistic mechanism responsible for acetic acid tolerance. The genomic data provide a viable platform that can be used to understand and manipulate the phenotype of K. nataicola RZS01 to further improve bacterial cellulose production. |
ArticleNumber | 4431 |
Author | Sun, Dongping Sun, Bianjing Yuan, Fanshu Yang, Jiazhi Xu, Yunhua Xu, Xuran Chen, Xiao Zhang, Heng |
Author_xml | – sequence: 1 givenname: Heng surname: Zhang fullname: Zhang, Heng organization: School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China – sequence: 2 givenname: Xuran surname: Xu fullname: Xu, Xuran organization: School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China – sequence: 3 givenname: Xiao surname: Chen fullname: Chen, Xiao organization: School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China – sequence: 4 givenname: Fanshu surname: Yuan fullname: Yuan, Fanshu organization: School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China – sequence: 5 givenname: Bianjing surname: Sun fullname: Sun, Bianjing organization: School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China – sequence: 6 givenname: Yunhua surname: Xu fullname: Xu, Yunhua organization: Department of Life Sciences, Lianyungang Normal College, Lianyungang, 222000, China – sequence: 7 givenname: Jiazhi surname: Yang fullname: Yang, Jiazhi email: jiazhiyang@sina.com, jiazhiyang@sina.com organization: School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China. jiazhiyang@sina.com – sequence: 8 givenname: Dongping surname: Sun fullname: Sun, Dongping email: sundpe301@163.com, sundpe301@163.com organization: School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China. sundpe301@163.com |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/28667320$$D View this record in MEDLINE/PubMed |
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Snippet | Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic acid. To... Abstract Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic... Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic acid. To... Abstract Komagataeibacter nataicola is an acetic acid bacterium (AAB) that can produce abundant bacterial cellulose and tolerate high concentrations of acetic... |
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SubjectTerms | Acetic acid Acids Cellulose Cellulose synthase Fermentation Genomes Nucleotide sequence Operons Phylogeny Plasmids |
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Title | Complete genome sequence of the cellulose-producing strain Komagataeibacter nataicola RZS01 |
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