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Original Articles

Purification and Characterization of a Novel Polysaccharide Involved in the Pellicle Produced by a Thermotolerant Acetobacter Strain

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Pages 777-783 | Received 28 Sep 2001, Accepted 08 Dec 2001, Published online: 22 May 2014

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Arpaporn DEERAKSA, Somporn MOONMANGMEE, Hirohide TOYAMA, Osao ADACHI & Kazunobu MATSUSHITA. (2006) Conversion of Capsular Polysaccharide, Involved in Pellicle Formation, to Extracellular Polysaccharide by galE Deletion in Acetobacter tropicalis . Bioscience, Biotechnology, and Biochemistry 70:10, pages 2536-2539.
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Articles from other publishers (30)

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Minenosuke Matsutani, Nami Matsumoto, Hideki Hirakawa, Yuh Shiwa, Hirofumi Yoshikawa, Akiko Okamoto-Kainuma, Morio Ishikawa, Naoya Kataoka, Toshiharu Yakushi & Kazunobu Matsushita. (2020) Comparative Genomic Analysis of Closely Related Acetobacter pasteurianus Strains Provides Evidence of Horizontal Gene Transfer and Reveals Factors Necessary for Thermotolerance . Journal of Bacteriology 202:8.
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Theerisara Phathanathavorn, Kallayanee Naloka, Minenosuke Matsutani, Toshiharu Yakushi, Kazunobu Matsushita & Gunjana Theeragool. (2019) Mutated fabG gene encoding oxidoreductase enhances the cost-effective fermentation of jasmine rice vinegar in the adapted strain of Acetobacter pasteurianus SKU1108. Journal of Bioscience and Bioengineering 127:6, pages 690-697.
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Julia U. Brandt, Frank Jakob, Daniel Wefers, Mirko Bunzel & Rudi F. Vogel. (2018) Characterization of an acetan-like heteropolysaccharide produced by Kozakia baliensis NBRC 16680. International Journal of Biological Macromolecules 106, pages 248-257.
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Haisong Yin, Renkuan Zhang, Menglei Xia, Xiaolei Bai, Jun Mou, Yu Zheng & Min Wang. (2017) Effect of aspartic acid and glutamate on metabolism and acid stress resistance of Acetobacter pasteurianus. Microbial Cell Factories 16:1.
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Julia U. Brandt, Friederike-Leonie Born, Frank Jakob & Rudi F. Vogel. (2017) Environmentally triggered genomic plasticity and capsular polysaccharide formation are involved in increased ethanol and acetic acid tolerance in Kozakia baliensis NBRC 16680. BMC Microbiology 17:1.
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Alyssa L. Henning & Jeffrey M. Catchmark. (2017) The impact of antibiotics on bacterial cellulose in vivo. Cellulose 24:3, pages 1261-1285.
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Naoto Tonouchi. 2016. Acetic Acid Bacteria. Acetic Acid Bacteria 299 320 .
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Naoto Tonouchi. (2015) <b>History and food culture of acetic acid bacteria utilization</b>. Japanese Journal of Lactic Acid Bacteria 26:1, pages 6-13.
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Mamoru YAMADA, Rinji AKADA, Tomoyuki KOSAKA, Yoshinao AZUMA, Hisashi HOSHIDA & Kazunobu MATSUSHITA. (2015) Molecular Mechanisms of Thermotolerance of Thermotolerant Fermentation Microorganisms. Kagaku To Seibutsu KAGAKU TO SEIBUTSU 53:11, pages 763-773.
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Joshua Armitano, Vincent Méjean & Cécile Jourlin-Castelli. (2014) Gram-negative bacteria can also form pellicles. Environmental Microbiology Reports 6:6, pages 534-544.
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Lin Fang & Jeffrey M. Catchmark. (2014) Characterization of water-soluble exopolysaccharides from Gluconacetobacter xylinus and their impacts on bacterial cellulose crystallization and ribbon assembly. Cellulose 21:6, pages 3965-3978.
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Taisuke Watanabe & Hirohide Toyama. (2014) Pellicle of thermotolerant Acetobacter pasteurianus strains: Characterization of the polysaccharides and of the induction patterns. Journal of Bioscience and Bioengineering 118:2, pages 134-138.
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Dorota Kregiel. (2013) Attachment of Asaia lannensis to materials commonly used in beverage industry. Food Control 32:2, pages 537-542.
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Dorota Kregiel, Anna Rygala, Zdzislawa Libudzisz, Piotr Walczak & Elzbieta Oltuszak-Walczak. (2012) Asaia lannensis–the spoilage acetic acid bacteria isolated from strawberry-flavored bottled water in Poland. Food Control 26:1, pages 147-150.
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Cristina Andrés-Barrao, Maged M. Saad, Marie-Louise Chappuis, Mauro Boffa, Xavier Perret, Ruben Ortega Pérez & François Barja. (2012) Proteome analysis of Acetobacter pasteurianus during acetic acid fermentation. Journal of Proteomics 75:6, pages 1701-1717.
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Ibnaof Ali Ibnaof Ali, Yoshihiko Akakabe, Somporn Moonmangmee, Arpaporn Deeraksa, Minenosuke Matsutani, Toshiharu Yakushi, Mamoru Yamada & Kazunobu Matsushita. (2011) Structural characterization of pellicle polysaccharides of Acetobacter tropicalis SKU1100 wild type and mutant strains. Carbohydrate Polymers 86:2, pages 1000-1006.
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Ling Chong Wang, Kun Zhang, Liu Qing Di, Rui Liu & Hao Wu. (2011) Isolation and structural elucidation of novel homogenous polysaccharide from Mactra veneriformis. Carbohydrate Polymers 86:2, pages 982-987.
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Minenosuke Matsutani, Hideki Hirakawa, Mitsuteru Nishikura, Wichai Soemphol, Ibnaof Ali Ibnaof Ali, Toshiharu Yakushi & Kazunobu Matsushita. (2011) Increased number of Arginine-based salt bridges contributes to the thermotolerance of thermotolerant acetic acid bacteria, Acetobacter tropicalis SKU1100. Biochemical and Biophysical Research Communications 409:1, pages 120-124.
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Amos NussinovitchAmos Nussinovitch. 2010. Polymer Macro- and Micro-Gel Beads: Fundamentals and Applications. Polymer Macro- and Micro-Gel Beads: Fundamentals and Applications 75 116 .
Margarita Kambourova, Rossica Mandeva, Damyana Dimova, Annarita Poli, Barbara Nicolaus & Giuseppina Tommonaro. (2009) Production and characterization of a microbial glucan, synthesized by Geobacillus tepidamans V264 isolated from Bulgarian hot spring. Carbohydrate Polymers 77:2, pages 338-343.
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Taous Khan, Joong Kon Park & Joong-Ho Kwon. (2007) Functional biopolymers produced by biochemical technology considering applications in food engineering. Korean Journal of Chemical Engineering 24:5, pages 816-826.
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Hugo Velasco-Bedrán & Felipe López-Isunza. (2007) The unified metabolism of Gluconacetobacter entanii in continuous and batch processes. Process Biochemistry 42:8, pages 1180-1190.
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Arpaporn Deeraksa, Somporn Moonmangmee, Hirohide Toyama, Mamoru Yamada, Osao Adachi & Kazunobu Matsushita. (2005) Characterization and spontaneous mutation of a novel gene, polE, involved in pellicle formation in Acetobacter tropicalis SKU1100. Microbiology 151:12, pages 4111-4120.
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Dieter Klemm, Brigitte Heublein, Hans-Peter Fink & Andreas Bohn. (2005) Cellulose: Fascinating Biopolymer and Sustainable Raw Material. Angewandte Chemie International Edition 44:22, pages 3358-3393.
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Dieter Klemm, Brigitte Heublein, Hans‐Peter Fink & Andreas Bohn. (2005) Cellulose: faszinierendes Biopolymer und nachhaltiger Rohstoff. Angewandte Chemie 117:22, pages 3422-3458.
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