Ross P, Mayer R, Benziman M. Cellulose Biosynthesis and Function in Bacteria [J]. Microbiol Mol Biol Rev, 1991, 55(1): 35-58.
[2]
Ma C Z, Gu Z R. Biological and Physicochemical Properties and Commercial Application of Bacterial Cellulose Produced by Acetobacter xylinum [J]. Acta Agriculture Shanghai, 2001, 17(4): 93-98. (in Chinese)
Song H N, Zhang Y Q, Guo H Q. Bacterial Cellulose the Applications and Prospect on Papermaking [J]. Journal of Guangxi University, 2004, 29(1): 73-76. (in Chinese)
Sanchavanakit N, Sangrungraungroj W, Aomongkolgit R, et al. Growth of Human Keratinocytes and Fibroblasts on Bacterial Cellulose Film [J]. Biotechnology Prog, 2006, 22(4): 1194-1199.
[11]
Ma X, Chen S W, Wang R M, et al. Nanometer Biomaterial Cellulose for Accelerating Skin Wound Healing in Rats [J]. Chinese Journal of Clinical Rehabilitation, 2006, 10(37): 45-48. (in Chinese)
Nguyen V T, Gidley M J, Dykes G A, et al. Potential of a Nisin-Containing Bacterial Cellulose Film to Inhibit Listeria monocytogenes on Processed Meats [J]. Food Microbiology, 2008, 25(3): 471-478.
[14]
Wang S L, Wu X Z, Hao L H, et al. Mutation Effect of Ultra High Pressure on Industrialized Microbe [J]. China Biotechnology, 2005, 25(6): 7-9. (in Chinese)
Gao X, Li J, Ruan K C. Barotolerant E. coli Induced by High Hydrostatic Pressure [J]. Acta Biochimica et Biophysica Sinica, 2001, 33(1): 79-84. (in Chinese)
Silva J L, Luan P, Glaser M, et al. Effects of Hydrostatic Pressure on a Membrane-Enveloped Virus: High Immunogenicity of the Pressure-Inactivated Virus [J]. J Virology, 1992, 66(4): 2111-2117.
[19]
Wang S L, Wu X Z, Hao L H, et al. Mutation Effect of Ultra High Pressure on Microbe [J]. Acta Microbiologica Sinica, 2005, 45(6): 970-973. (in Chinese)
Wang S L, Li G F, Wang Q B, et al. Mutagenic Effect of UV Radiation and Ultra High Pressure on Strains Producing Laccase [J]. Journal of Zhengzhou University of Light Industry, 2005, 20(3): 39-42. (in Chinese)
Wang H, Shen S L, Li Z H, et al. High Pressure-Induced Changes of Physico-Chemical Properties and Mutagenesis in Aspergillus Oryza [J]. Chinese Journal of High Pressure Physics, 2008, 22(3): 259-263. (in Chinese)
Wu R Q, Li Z X, Shao D Y, et al. Screening and Primary Identification of Bacterial Cellulose Producing Strain [J]. China Brewing, 2008, (10): 37-38. (in Chinese)
Wu R Q, Du S K, Li Z X, et al. Optimization of Bacterial Cellulose Fermentation Medium and Observation of Bacterial Cellulose Ultra-Micro-Structure [J]. Chinese Journal of Biotechnology, 2008, 24(6): 1068-1074. (in Chinese)
Guo W Q, Ren N Q, Wang X J, et al. Optimization of Culture Conditions for Hydrogen Production by Ethanoligenens Harbinense B49 Using Response Surface Methodology [J]. Bioresource Technology, 2008, 100(3): 1192-1196.
[30]
Banik R M, Santhiagu A, Upadhyay S N, et al. Optimization of Nutrients for Gellan Gum Production by Sphingomonas Paucimobilis ATCC-31461 in Molasses Based Medium Using Response Surface Methology [J]. Bioresource Technology, 2007, 98(4): 792-797.
[31]
Sheu F, Wng C L, Shyu Y T. Fermentation of Monascus purpureus on Bacterial Cellulose-nata and the Color Stability of Monascus-nata Complex [J]. J Food Sci, 2000, 65(2): 342-345.
[32]
Dalian Polytechnic University, Zhengzhou University of Light Industry. Food Analysis [M]. Beijing: China Light Industry Press, 2006: 100-216. (in Chinese)