• 제목/요약/키워드: Glucooligosaccharides

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Production of Glucooligosaccharides and Mannitol from Leuconostoc mesenteroides B-742 Fermentation and its Separation from Byproducts

  • Chung Chang-Ho
    • Journal of Microbiology and Biotechnology
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    • v.16 no.2
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    • pp.325-329
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    • 2006
  • Leuconostoc mesenteroides B-742 fermentations with maltose as an acceptor were tested for glucooligosaccharides and mannitol co-production. Leuconostoc oligosaccharides were produced that were oligomers with a size range of DP 2 to 7 and were primarily DP 3, 4, 5, and 6, containing mainly ${\alpha}-1,4$ and ${\alpha}-1,6$ linkages. Maltose was linked to the reducing end of the isomaltosyl residues. The $Ca^{2+}$ form of cation-exchange column could separate glucooligosaccharides from byproducts.

Effects of Lactococcus lactis subsp. lactis I2 with β-Glucooligosaccharides on Growth, Innate Immunity and Streptococcosis Resistance in Olive Flounder (Paralichthys olivaceus)

  • Hasan, Md Tawheed;Jang, Won Je;Tak, Jin Yeong;Lee, Bong-Joo;Kim, Kang Woong;Hur, Sang Woo;Han, Hyon-Sob;Kim, Bo-Seong;Huh, Min-Do;Kim, Shin-Kwon;Kong, In-Soo
    • Journal of Microbiology and Biotechnology
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    • v.28 no.9
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    • pp.1433-1442
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    • 2018
  • To identify and quantify the effects of a combination of dietary $1{\times}10^8CFU/g$ Lactococcus lactis subsp. lactis I2 ($LI_2$) and 0.1% ${\beta}$-glucooligosaccharides (BGO) on the growth and immunity of olive flounder (Paralichthys olivaceus), a feeding experiment was conducted. Flounder ($14{\pm}0.5g$) were divided into two groups and fed control and synbiotic feeds for 8 weeks. Investigations were carried out on growth and feed utilization, innate immunity, serum biochemical parameters, intestinal lactic acid bacterial (LAB) viability, microvillus length, and changes in the expression levels of genes encoding pro-inflammatory cytokines (tumor necrosis factor $[TNF]-{\alpha}$, interleukin $[IL]-1{\beta}$, and IL-6). Results demonstrated the synbiotic diet had significantly better (p < 0.05) responses in terms of weight gain and specific growth rate, three innate immune parameters (respiratory burst, serum lysozyme, and superoxide dismutase), intestinal LAB viability, and the relative $TNF-{\alpha}$ expression level (p < 0.05). Moreover, after challenge with Streptococcus iniae ($1{\times}10^8CFU/ml$), the synbiotically fed group exhibited significantly higher (p < 0.05) protection against streptococcosis, validating the observed changes in immune parameters and induction of the cytokine-encoding gene. Therefore, according to the results of the present study, synbiotic feed ($LI_2+BGO$) increased growth, modulated innate immune parameters and protected olive flounder against streptococcosis.

A Systematic NMR Determination of α-D-Glucooligosaccharides, Effect of Linkage Type, Anomeric Configuration and Combination of Different Linkages Type on 13C Chemical Shifts for the Determination of Unknown Isomaltooligosaccharides

  • Goffin, Dorothee;Bystricky, Peter;Shashkov, Alexander S.;Lynch, Mary;Hanon, Emilien;Paquot, Michel;Savage, Angela V.
    • Bulletin of the Korean Chemical Society
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    • v.30 no.11
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    • pp.2535-2541
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    • 2009
  • Prebiotic isomaltooligosaccharide preparations contain $\alpha$-D-glucooligosaccharides comprising isomaltooligosaccharides (IMOs) and non-prebiotic maltooligosaccharides (MOs). They are both glucose oligosaccharides characterized by their degree of polymerization (DP) value (from 2 to $\sim$10), linkages types and positions (IMOs: $\alpha$-(1$\rightarrow$2, 3, 6 and in a lower proportion internal 1$\rightarrow$4) linkages, MOs: α-(1$\rightarrow$4) linkages). Their structure is the key factor for their prebiotic potential. In order to determine and elucidate the exact structure of unknown IMOs and MOs, unambiguous assignments of $^{13}C$ and $^1H$ chemical shifts of commercial standards, representative of IMOs and MOs diversity, have been determined using optimized standard one and two-dimensional experiments such as $^1H$ NMR, $^{13}C$ NMR, APT and ${^1}H-{^1}H$ COSY, TOCSY, NOESY and <$^1H-{^{13}}C$ heteronuclear HSQC, HSQC-TOCSY, and HMBC. Here we point out the differential effect of substitution by a glucose residue at different positions on chemical shifts of anomeric as well as ring carbons together with the effect of the reducing end configuration for low DP oligosaccharides and diasteroisotopic effect for H-6 protons. From this study, structural $^{13}C$ specific spectral features can be identified as tools for structural analysis of isomaltooligosaccharides.

Highly Branched Glucooligosaccharide and Mannitol Production by Mixed Cultrue Fermentation of Leuconostoc mesenteroides and Lipomyces starkeyi

  • Yoo, Sun-Kyun;Kim, Do-Man;Day, Donal F.
    • Journal of Microbiology and Biotechnology
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    • v.11 no.4
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    • pp.700-703
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    • 2001
  • The influence of process conditions on highly branched glucooligosaccharides production by mixed culture of Leuconostoc mesenteroides ATCC 13146 and Lipomyces starkeyi ATCC 74054 was studied. We divided the batch culture fermentations into two groups according to inoculation method. One-point inoculation was performed by coinoculation of L. mesenteroides and L. starkeyi at the ration of 10 to 1, and two-point inoculation by L. mesenteroides inoculation first and L. starkeyi inoculation after L. mesenteroides grew to the end of the log phase of growth. Two-point inoculation improved the yield of oligosaccharide by 1.5 to 20 fold more than one-point inoculation. In this process, the highest yield of oligosaccharides (48% of theoretical yield) and productivity (0.85 g/l/h) were obtained with starch as an initial substrate for L. starkeyi growth. The estimated composition of the end product consisted of 31.5% oligosaccharides, 17.6% dextran, and 46.5% mannitol.

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Changes of the Textural Properties of the Sweet Potato Starch Gels using Maltogenic Amylase (Maltogenic amylase를 이용한 고구마 전분겔의 텍스쳐 특성 변화)

  • Kweon, Mee-Ra;Jung, Dong-Sun;Park, Kwan-Hwa
    • Korean Journal of Food Science and Technology
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    • v.25 no.6
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    • pp.649-654
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    • 1993
  • We investigated the texture of the sweet potato starch gels treated with maltogenic amylase. Effects of branched gluco-oligosaccharides and acorn starch on the texture of the sweet potato starch gel were also investigated. Hardness and cohesiveness of gels were measured by using Instron and sensory evaluation on the gel properties was performed. From the results of the instrumental analysis, it was found that the overall textural properties as Mook could be improved by adding branched glucooligosaccharides, maltogenic amylase or acorn starch to the sweet potato starch gel. As a result, there was a decrease in the cohesiveness of gels while the hardness of gels increased. The sensory evaluation study indicated that the sweet potato starch gels treated with 0.02% maltogenic amylase, or added with 12.5% branched gluco-oligosaccharides, or mixed with 50% acorn starch had preferable quality as Mook.

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Oligosaccharide Production by Leuconostoc lactis CCK940 Which Has Glucansucrase Activity (Leuconostoc lactis CCK940의 Glucansucrase 활성에 의한 올리고당 생산 최적화)

  • Lee, Sulhee;Park, Young-Seo
    • Food Engineering Progress
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    • v.21 no.4
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    • pp.383-390
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    • 2017
  • Glucansucrase is an enzyme classified as a glycoside hydrolase (GH) 70 family, which catalyzes the synthesis of glucooligosaccharides with a low molecular weight using sucrose as a donor of D-glucopyranose and maltose as a carbohydrate acceptor. In this study, glucansucrase-producing lactic acid bacteria strain was isolated from the fermented foods collected in traditional markets, and the optimum conditions for the oligosaccharide production were investigated. The strain CCK940 isolated from Chinese cabbage kimchi was selected as an oligosaccharide-producing strain due to its high glucansucrase activity, with 918.2 mU/mL, and identified as Leuconostoc lactis. The optimum conditions for the production of oligosaccharides using Leu. lactis CCK940 were to adjust the initial pH to 6.0, add 5% (w/v) sucrose and 10% (w/v) maltose as a donor and acceptor molecules, respectively, and feed 5% (w/v) sucrose at 4 and 8 h of cultivation. When Leu. lactis CCK940 was cultured for 12 h at optimum conditions, at least four oligosaccharides with a polymerization degree of 2-4 were produced.