Novel Exopolysaccharide Produced from Fermented Bamboo Shoot-IsolatedLactobacillus Fermentum

  • Thi Bich Thuy Do
  • Thi Ai Luyen Tran
  • Thi Van Thi Tran
  • Trung Hieu Le
  • Jayasena, Vijay
  • ... Kim, Soo Young
  • 외 3명
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초록

This study aimed at providing a route towards the production of a novel exopolysaccharide (EPS) from fermented bamboo shoot-isolatedLactobacillus fermentum. A lactic acid bacteria strain, with high EPS production ability, was isolated from fermented bamboo shoots. This strain, R-49757, was identified in the BCCM/LMG Bacteria Collection, Ghent University, Belgium by the phenylalanyl-tRNA synthetase gene sequencing method, and it was namedLb. fermentumMC3. The molecular mass of the EPS measured via gel permeation chromatography was found to be 9.85 x 10(4)Da. Moreover, the monosaccharide composition in the EPS was analyzed by gas chromatography-mass spectrometry. Consequently, the EPS was discovered to be a heteropolysaccharide with the appearance of two main sugars-D-glucose and D-mannose-in the backbone. The results of one-dimensional (1D) and two-dimensional (2D) nuclear magnetic resonance spectroscopy analyses prove the repeating unit of this polysaccharide to be [-> 6)-beta-D-Glcp-(1 -> 3)-beta-D-Manp-(1 -> 6)-beta-D-Glcp-(1 ->](n), which appears to be a new EPS. The obtained results open up an avenue for the production of novel EPSs for biomedical applications.

키워드

lactic acid bacteriaphenylalanyl-tRNA synthase geneexopolysaccharidegas-liquid chromatography-mass spectrometryLactobacillus fermentumnuclear magnetic resonance spectroscopyLACTIC-ACID BACTERIATOF MASS-SPECTROMETRYNMR-SPECTROSCOPYSTRUCTURAL-CHARACTERIZATIONLACTOBACILLUS-RHAMNOSUSNEM-CHUAIDENTIFICATIONPURIFICATIONPROBIOTICSSTRAIN
제목
Novel Exopolysaccharide Produced from Fermented Bamboo Shoot-IsolatedLactobacillus Fermentum
저자
Thi Bich Thuy DoThi Ai Luyen TranThi Van Thi TranTrung Hieu LeJayasena, VijayThi Hong Chuong NguyenChinh Chien NguyenKim, Soo YoungQuyet Van Le
DOI
10.3390/polym12071531
발행일
2020-07
유형
Article
저널명
Polymers
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