Recruiting a new strategy to improve levan production in Bacillus amyloliquefaciens
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Chao Yang | Jun Feng | Shufang Wang | Cunjiang Song | Mingfeng Cao | Wei Zhang | Yufen Quan | Weixia Gao | Yanyan Gu
[1] Chao Yang,et al. Construction of a Bacillus amyloliquefaciens strain for high purity levan production. , 2015, FEMS microbiology letters.
[2] K. Uppuluri,et al. Review on production, characterization and applications of microbial levan. , 2015, Carbohydrate polymers.
[3] Chao Yang,et al. Metabolic engineering of Bacillus amyloliquefaciens for poly-gamma-glutamic acid (γ-PGA) overproduction , 2014, Microbial biotechnology.
[4] Chao Yang,et al. Functions of poly-gamma-glutamic acid (γ-PGA) degradation genes in γ-PGA synthesis and cell morphology maintenance , 2014, Applied Microbiology and Biotechnology.
[5] Taner Baysal,et al. Levan production by Zymomonas mobilis in batch and continuous fermentation systems. , 2014, Carbohydrate polymers.
[6] M. Su,et al. Functional characterization of sucrose phosphorylase and scrR, a regulator of sucrose metabolism in Lactobacillus reuteri. , 2013, Food microbiology.
[7] I. Shih,et al. Factors affecting the production and molecular weight of levan of Bacillus subtilis natto in batch and fed-batch culture in fermenter , 2013 .
[8] Chao Yang,et al. Curing the Plasmid pMC1 from the Poly (γ-glutamic Acid) Producing Bacillus amyloliquefaciens LL3 Strain Using Plasmid Incompatibility , 2013, Applied Biochemistry and Biotechnology.
[9] Jun Feng,et al. Chromosome integration of the Vitreoscilla hemoglobin gene (vgb) mediated by temperature-sensitive plasmid enhances γ-PGA production in Bacillus amyloliquefaciens. , 2013, FEMS microbiology letters.
[10] I. Mandic-Mulec,et al. Exopolymer Diversity and the Role of Levan in Bacillus subtilis Biofilms , 2013, PloS one.
[11] Chao Yang,et al. Complete Genome Sequence of Bacillus amyloliquefaciens LL3, Which Exhibits Glutamic Acid-Independent Production of Poly-γ-Glutamic Acid , 2011, Journal of bacteriology.
[12] Shufang Wang,et al. Glutamic acid independent production of poly-γ-glutamic acid by Bacillus amyloliquefaciens LL3 and cloning of pgsBCA genes. , 2011, Bioresource technology.
[13] Jane-Yii Wu,et al. Levan production using Bacillus subtilis natto cells immobilized on alginate , 2010 .
[14] R. Losick,et al. Amyloid fibers provide structural integrity to Bacillus subtilis biofilms , 2010, Proceedings of the National Academy of Sciences.
[15] J. Wall,et al. Development of a Markerless Genetic Exchange System for Desulfovibrio vulgaris Hildenborough and Its Use in Generating a Strain with Increased Transformation Efficiency , 2009, Applied and Environmental Microbiology.
[16] M. Cajero-Juárez,et al. Microbial fructosyltransferases and the role of fructans , 2009, Journal of applied microbiology.
[17] S. Rahman,et al. A thermostable α-amylase from a moderately thermophilic Bacillus subtilis strain for starch processing , 2007 .
[18] M. Ferrer,et al. Purification and kinetic characterization of a fructosyltransferase from Aspergillus aculeatus. , 2007, Journal of biotechnology.
[19] R. Losick,et al. A major protein component of the Bacillus subtilis biofilm matrix , 2006, Molecular microbiology.
[20] B. Lazazzera,et al. Defining the genetic differences between wild and domestic strains of Bacillus subtilis that affect poly‐γ‐dl‐glutamic acid production and biofilm formation , 2005, Molecular microbiology.
[21] Lidia Westers,et al. Bacillus subtilis as cell factory for pharmaceutical proteins: a biotechnological approach to optimize the host organism. , 2004, Biochimica et biophysica acta.
[22] S. Ehrlich,et al. Genes Involved in Formation of Structured Multicellular Communities by Bacillus subtilis , 2004, Journal of bacteriology.
[23] P. Gunasekaran,et al. Disruption of the Zymomonas mobilis extracellular sucrase gene (sacC) improves levan production , 2004, Journal of applied microbiology.
[24] S. Yoo,et al. Antitumor activity of levan polysaccharides from selected microorganisms. , 2004, International journal of biological macromolecules.
[25] Zhang Da-dong. Determination of Fructose in Fruit Juice based on UV-Photometric Method , 2003 .
[26] Sau-Ching Wu,et al. Secretory production and purification of functional full-length streptavidin from Bacillus subtilis. , 2002, Protein expression and purification.
[27] S. Ishikawa,et al. Production of Long-chain Levan by a sacC Insertional Mutant from Bacillus subtilis 327UH , 2002, Bioscience, biotechnology and biochemistry.
[28] P. Gunasekaran,et al. Overproduction of levan in Zymomonas mobilis by using cloned sacB gene , 1999 .
[29] Y. Yamamoto,et al. In vitro digestibility and fermentability of levan and its hypocholesterolemic effects in rats. , 1999, The Journal of nutritional biochemistry.
[30] D. Karamata,et al. The wprA gene of Bacillus subtilis 168, expressed during exponential growth, encodes a cell-wall-associated protease. , 1996, Microbiology.
[31] R. Ye,et al. Engineering and production of streptokinase in a Bacillus subtilis expression-secretion system , 1994, Applied and environmental microbiology.
[32] S. Ng,et al. Efficient Production of a Functional Single-Chain Antidigoxin Antibody via an Engineered Bacillus subtilis Expression-Secretion System , 1993, Bio/Technology.
[33] M. Kunioka,et al. Biosynthesis and Hydrolysis of Poly(γ-glutamic acid) from Bacillus subtilis IF03335. , 1992, Bioscience, biotechnology, and biochemistry.
[34] P. Youngman,et al. Use of a new integrational vector to investigate compartment-specific expression of the Bacillus subtilis spoIIM gene. , 1992, Biochimie.
[35] M. Dwyer,et al. Cloning and characterization of the gene for an additional extracellular serine protease of Bacillus subtilis , 1991, Journal of bacteriology.
[36] L. Tran,et al. Cloning and expression of a novel protease gene encoding an extracellular neutral protease from Bacillus subtilis , 1991, Journal of bacteriology.
[37] L. Tran,et al. Engineering a Bacillus subtilis expression-secretion system with a strain deficient in six extracellular proteases , 1991, Journal of bacteriology.
[38] A. Pang,et al. Cloning, genetic organization, and characterization of a structural gene encoding bacillopeptidase F from Bacillus subtilis. , 1990, The Journal of biological chemistry.
[39] A. Sloma,et al. Bacillopeptidase F of Bacillus subtilis: purification of the protein and cloning of the gene , 1990, Journal of bacteriology.
[40] A. Sloma,et al. Isolation and characterization of a novel extracellular metalloprotease from Bacillus subtilis , 1990, Journal of bacteriology.
[41] A. Sloma,et al. Gene encoding a novel extracellular metalloprotease in Bacillus subtilis , 1990, Journal of bacteriology.
[42] Y. W. Han. Microbial levan. , 1990, Advances in applied microbiology.
[43] A. Sloma,et al. Gene encoding a minor extracellular protease in Bacillus subtilis , 1988, Journal of bacteriology.
[44] F. Kawamura,et al. Construction of a Bacillus subtilis double mutant deficient in extracellular alkaline and neutral proteases , 1984, Journal of bacteriology.
[45] E. Ferrari,et al. Replacement of the Bacillus subtilis subtilisin structural gene with an In vitro-derived deletion mutation , 1984, Journal of bacteriology.
[46] D. Goldfarb,et al. The subtilisin E gene of Bacillus subtilis is transcribed from a sigma 37 promoter in vivo. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[47] R. Chambert,et al. Levansucrase of Bacillus subtilis , 1976 .
[48] J. Millet,et al. Characterization of proteinases excreted by Bacillus subtilis Marburg strain during sporulation. , 1970, The Journal of applied bacteriology.
[49] R. Dedonder. [86] Levansucrase from Bacillus subtilis , 1966 .
[50] G. L. Miller. Use of Dinitrosalicylic Acid Reagent for Determination of Reducing Sugar , 1959 .