| Literature DB >> 26715179 |
Pedro Aguilar-Zárate1, Mario A Cruz2, Julio Montañez3, Raúl Rodríguez-Herrera4, Jorge E Wong-Paz5, Ruth E Belmares6, Cristóbal N Aguilar7.
Abstract
BACKGROUND: Tannase is an enzyme that catalyses the breakdown of ester bonds in gallotannins such as tannic acid. In recent years, the interest on bacterial tannases has increased because of its wide applications. The lactic acid bacteria (LAB) plays an important role in food tannin biotransformation, it has the ability of hydrolyse tannins in ruminants intestine. The finding of tannin hydrolysis by LAB has sparked their use as tannase producer.Entities:
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Year: 2015 PMID: 26715179 PMCID: PMC4696078 DOI: 10.1186/s12934-015-0386-2
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Fig. 1Neighbor-Joining consensus tree of a Bacillus subtilis AM1 and b Lactobacillus plantarum CIR1. The identification was based on the RNA polymerase subunit beta (rpoβ) gene for B. subtilis AM1 and the 16S RNA gene for Lactobacillus plantarum CIR1. The numbers over branches represent bootstrap confidence values (%) based on 1000 replicates. Values below 50 % are not shown. The scale bar denotes the nucleotide substitutions per sequence. The Genbank accessions are shown in parenthesis
Fig. 2Batch fermentation by L. plantarum CIR1. Profile of tannase activity (open circle) and cell concentration (filled square)
Fig. 3Batch fermentation by B. subtilis CIR1. Profile of tannase activity (open circle) and cell concentration (filled square)
Fig. 4Bioconversion process by L. plantarum CIR1. Concentration of residual tannic acid (filled triangle) and gallic acid released (unfilled diamond)
Fig. 5Bioconversion process by B. subtillis AM1. Concentrations of residual tannic acid (filled triangle) and gallic acid released (unfilled diamond)
Fig. 6HPLC chromatograms for tannic acid hydrolysis. a L. plantarum CIR1 and b B. subtilis AM1