Literature DB >> 17578410

Production of tannase by the immobilized cells of Bacillus licheniformis KBR6 in Ca-alginate beads.

P K D Mohapatra1, K C Mondal, B R Pati.   

Abstract

AIMS: The present study was aimed at finding the optimal conditions for immobilization of Bacillus licheniformis KBR6 cells in calcium-alginate (Ca-alginate) beads and determining the operational stability during the production of tannin-acyl-hydrolase (tannase) under semicontinous cultivation. METHODS AND
RESULTS: The active cells of B. licheniformis KBR6 were immobilized in Ca-alginate and used for the production of tannase. The influence of alginate concentration (5, 10, 20 and 30 g l(-1)) and initial cell loading on enzyme production were studied. The production of tannase increased significantly with increasing alginate concentration and reached a maximum enzyme yield of 0.56 +/- 0.03 U ml(-1) at 20 g l(-1). This was about 1.70-fold higher than that obtained by free cells. The immobilized cells produced tannase consistently over 13 repeated cycles and reached a maximum level at the third cycle. Scanning electron microscope study indicated that the cells in Ca-alginate beads remain in normal shape.
CONCLUSIONS: The Ca-alginate entrapment is a promising immobilization method of B. licheniformis KBR6 for repeated tannase production. Tannase production by immobilized cells is superior to that of free cells because it leads to higher volumetric activities within the same period of fermentation. SIGNIFICANCE AND IMPACT OF THE STUDY: This is the first report of tannase production from immobilized bacterial cells. The bacterium under study can produce higher amounts of tannase with respect to other fungal strains within a short cultivation period.

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Year:  2007        PMID: 17578410     DOI: 10.1111/j.1365-2672.2006.03207.x

Source DB:  PubMed          Journal:  J Appl Microbiol        ISSN: 1364-5072            Impact factor:   3.772


  4 in total

1.  Characterization of tannase protein sequences of bacteria and fungi: an in silico study.

Authors:  Amrita Banerjee; Arijit Jana; Bikash R Pati; Keshab C Mondal; Pradeep K Das Mohapatra
Journal:  Protein J       Date:  2012-04       Impact factor: 2.371

2.  Production of D-alanine from DL-alanine using immobilized cells of Bacillus subtilis HLZ-68.

Authors:  Yangyang Zhang; Xiangping Li; Caifei Zhang; Xiaodong Yu; Fei Huang; Shihai Huang; Lianwei Li; Shiyu Liu
Journal:  World J Microbiol Biotechnol       Date:  2017-09-13       Impact factor: 3.312

3.  Catalytical Properties of Free and Immobilized Aspergillus niger Tannase.

Authors:  Abril Flores-Maltos; Luis V Rodríguez-Durán; Jacqueline Renovato; Juan C Contreras; Raúl Rodríguez; Cristóbal N Aguilar
Journal:  Enzyme Res       Date:  2011-09-12

4.  Novel strategies for upstream and downstream processing of tannin acyl hydrolase.

Authors:  Luis V Rodríguez-Durán; Blanca Valdivia-Urdiales; Juan C Contreras-Esquivel; Raúl Rodríguez-Herrera; Cristóbal N Aguilar
Journal:  Enzyme Res       Date:  2011-09-19
  4 in total

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