• Title/Summary/Keyword: zooglan

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Optimization of Growth Conditions for Production of Zooglan by Zoogloea ramigera (Zooglan 생산을 위한 Zoogloea ramigera의 배양조건의 최적화)

  • 권영은;박상옥;안장우;정윤철;서진호
    • KSBB Journal
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    • v.14 no.2
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    • pp.255-258
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    • 1999
  • Effects of growth conditions on the growth of Zoogloea ramigera and the production of zooglan were investigated. The production of zooglan was greatly reduced in the phosphate-limiting medium. $NH_4Cl$ and ${(NH_4)}_2SO_4$ improved cell growth when they were used as a nitrogen source. The medium containing 45 g/L of glucose and 27 g/L of $NaNO_3$ resulted in the highest production of zooglan at 18.5 g/L.

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A Useful Material Production from Whey : Effect of Carbon Sources on Zooglan Production by Zoogloea ramigera (유청으로부터 유용물질 생산 : Zoogloea remigera에 의한 Zooglan 생산에서 탄소원의 영향)

  • 김동운;이재찬
    • KSBB Journal
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    • v.10 no.2
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    • pp.221-229
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    • 1995
  • Effects of carbon sources on zooglan production by Zoogloea ramigera were investigated. The production of zooglan was varied according to the carbon sources used. The largest amount of zooglan was obtained when lactose was used as carbon source and fermentation broth with lactose showed the higher viscosity. The effects of carbon sources were in decreasing order of lactose, glucose, galactose and sucrose. The viscosities of purified zooglan solutions (5g/L) obtained from different carbon sources were measured. When lactose was used, the viscosities of zooglan solutions was quite high and other carbon sources such as glucose and galactose gave little lower viscosities than lactose but sucrose gave very low values. On the other hand, it could be postulated that most of lactose is hydrolyzed by intracellular ${\beta}$-galactosidase.

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Zoolan Gene Cloning of Zoogloea ramigera 115 (Zoogloea ramigera 115의 Zooglan Gene Cloning)

  • 이기영;전순배
    • KSBB Journal
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    • v.11 no.1
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    • pp.115-123
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    • 1996
  • Two kinds of mutants were isolated to clone a cluster of genes essential for zooglan biosynthesis. Zoogloea ramigera 115 strains produce capsular polysaccharide. To achieve conjugation in strain 115 and to facilitate recovery of product, a capsule non-forming strain was isolated via successive centrifugation and screening. The other kind of mutants devoid of or producing altered exopolysaccharides were obtained using classical transposon(Tn5) technique and screened for altered colony morphology and celluflour binding properties. Complementation of these mutants was achieved with Z. ramigera 115 slime gene library constructed in a broad host range cosmid vector and helper plasmid by triparental conjugation.

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Heavy Metal Adsorption Characteristics of Extracellular Polysaccharide Produced by Zoogloea ramigera Grown on Various Carbon Sources

  • Kim, Se-Kyung;Lee, Choul-Gyun;Yun, Hyun-Shik
    • Journal of Microbiology and Biotechnology
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    • v.13 no.5
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    • pp.745-750
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    • 2003
  • Zoogloea ramigera produces an extracellular polysaccharide called zooglan, which adsorbs heavy metals. In the current study, Zoogloea ramigera was cultured in media containing various carbon sources. When different carbon sources were included in the cultivation medium, there was a change in the composition of zooglan that is mainly composed of glucose, galactose, and pyruvic acid. The various zooglan compositions were analyzed by HPLC, and changes in the heavy metal (lead (II) and cadmium) adsorption characteristics relative to a change in the composition were examined using an atomic absorption spectrophotometer. A high adsorption capacity was observed at a pH higher than 3.0. The adsorption of metal ions was the highest at $35^{\circ}C$, and a higher adsorption was obtained with a lower flow rate. Changes in the zooglan composition did result in changes in the heavy metal adsorption characteristics. Furthermore, it was also found that the pyruvic acid content was more important than the glucose or galactose content for heavy metal adsorption.

다당류를 이용한 중금속 이온의 흡착특성 비교

  • Kim, Se-Gyeong;Yun, Hyeon-Sik
    • 한국생물공학회:학술대회논문집
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    • 2000.04a
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    • pp.386-389
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    • 2000
  • Polysaccharides are very effective adsorbents for heavy metals. In this study, the adsorption characteristics of various polysaccharides for heavy metal adsorption were investigated. Tested polysaccharides were homogeneous polysaccharides such as curdlan, chitin, starch, cellulose, Avicel, and Solka floc and heterogeneous polysaccharides such as zooglan, locust bean gum, ghatti gum, pectin, and xylan. Lead(II) adsoption characteristic on these polysaccharides followed Freundlich isotherm and the isotherm parameters were calculated. For adsorption of lead(ll), Avicel, starch, and zooglan were found to be good adsorbents.

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Microbial Modification of Extracellular Polysaccharides

  • Jin Woo Lee
    • Journal of Life Science
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    • v.9 no.1
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    • pp.69-80
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    • 1999
  • Some trials to alter the structure of extracellular polysaccharides by means of biotransformation and microbial modification have been reported. Seaweed alginate was acetylated by intact and resting cells of Pseudomonas syringae ATCC 19304. Glucose analogs such as 3-O-methyl-D-glucose used as sole carbon sources was directly incorporated into curdlan by agrobacterium sp. ATCC 31749. The 2-amino-2-deoxy-D-glucose (glucosamine)and 2-acetamido-2-deoxy-D-glucose (N-acetylglucosamine) were incorporated into microbial cellulose by Acetobacter xylinum ATCC 10245. The changed monomeric composition in pullulan by Aureobasidium pullulans ATCC 42023 as well as zooglan by Zoogoea ramigera ATCC 25935 was another effect of glucose analogs used a carbon source. There was no effect of glucose analogs found in polysacharide-7 (PS-7) produced by Beijerinckia indica. ATCC 21423.

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Flocculating Properties of Bioflocculant Biopol32 from Pseudomonas sp. GP32 (Pseudomonas sp. GP32가 생산하는 생물고분자응집제 Biopol32의 응집특성)

  • Lee, Hyun Don;Oh, Nara;Lee, Muyeong Eun;Suh, Hyun Hyo
    • Journal of Life Science
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    • v.27 no.8
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    • pp.930-936
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    • 2017
  • The flocculating properties of bioflocculant Biopol32 produced by Pseudomonas sp. GP32 were investigated for application in industrial wastewater treatment. The major flocculating substance of bioflocculant Biopol32 was identified as polysaccharide. Many anionic flocculants need a counter ion to induce higher flocculating activity. The flocculating activity of bioflocculant Biopol32 was markedly increased by the addition of cationic ions ($Ca^{2+}$, $Al^{3+}$). The flocculating activity of bioflocculant Biopol32 was the most effective when 7.0 mM $CaCl_2{\cdot}2H_2O$ as coflocculant was added. The flocculating activity on the effect of pH and the temperature of the bioflocculant Biopol32 was compared with anionic commercial flocculant (polyacrylamide) and bioflocculant (zooglan from Zoogloea ramigera). In kaolin suspension, the highest flocculating activity was obtained at the bioflocculant Biopol32 concentration of 1.5 mg/l. A high flocculating activity was observed in the pH range of 5.0 to 8.0. The flocculating activity of bioflocculant Biopol32 was sustained up to $60^{\circ}C$, but decreased rapidly at over $70^{\circ}C$. In the batch culture, the charge density of bioflocculant Biopol32 was compared with flocculating activity. The larger the anionic charge density and apparent viscosity of bioflocculant Biopol32, the higher the flocculating activity. Therefore, we confirmed that the flocculating activity and apparent viscosity of bioflocculant Biopol32 was closely related to the charge density of bioflocculant Biopol32.

Physico-Chemical and Rheological Properties of a Bioflocculant BF-56 from Bacillus sp. A56

  • Suh, Hyun-Hyo;Moon, Seong-Hoon;Seo, Weon-Taek;Kim, Kyung-Kab;Jeon, Gee-Ill;Park, Hyun-Geoun;Park, Yong-Il
    • Journal of Microbiology and Biotechnology
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    • v.12 no.2
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    • pp.209-216
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    • 2002
  • Bacillus sp. A56 was studied, because of its high flocculating activity. The flocculating substance produced by this strain was purified by ethanol precipitation, cetylpyridinium chloride (CPC) precipitation, and gel permeation chromatography (GPC). The FT-IR spectrum of the purified bioflocculant, designated as BF-56, showed typical characteristics of polysaccharides. The non-sugar substituents, and sugar components of BF-56 containing glucose, fucose, glucuronic acid, and galactose in an approximate molar ratio of 2.76:1.10:1:0.12, suggested that it was a novel bioflocculant with an estimated molecular mass of over $7{\times}10^3$ kDa. Rheological analysis of BF-56 revealed that it was a pseudoplastic that had higher apparent viscosity rate at dilute concentrations than those of zooglan. The solution of bioflocculant BF-56 exhibited non-Newtonian characteristics and it was compatible to high concentrations of salts such as KCl, NaCl, $CaCl_2,\;or\;FeCl_3.$ The present results suggested strong possibility of bioflocculant BF-56 to be fully applicable to industries such as wastewater treatment.

Production and Rheological Properties of Bioflocculant Produced by Bacillus sp. DP-152

  • SUH, HYUN-HYO;SEONG-HOON MOON;HEE-SIK KIM;HYOUNG-KAB KIM;GEE-ILL JUN;HYUN-GEOUN PARK;DAE-OOK KANG;HEE-MOCK OH;BYUNG-DAE YOON
    • Journal of Microbiology and Biotechnology
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    • v.8 no.6
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    • pp.618-624
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    • 1998
  • The culture conditions for Bacillus sp. DP-152 in the flask were investigated for the production of polysaccharide locculant, DP-152. The optimum pH and temperature for the locculant production were 8.0 and $30^{\circ}C$, respectively. The avorable substrates for flocculant production were soluble tarch and ammonium nitrate. The medium composition was optimized as follows: 30 g soluble starch, 0.75 g $NH_4NO_3,\; 2.0g\; K_2\;HPO_4,\; 0.1\; g KH_2PO_4,\; 0.2g\; MgSO_4.\; 7H_2O,\; and\; 0.2g\; MnSO_4~5H_2O$ in 11 of distilled water. Under this optimized condition, flocculating activity has been improved 4-fold compared with that of the basal medium. In the culture flask, the highest flocculating activity was obtained after 70 h of cultivation and the amount of bioflocculant DP-152 yielded was 12.4 g/$\ell$. The solution of bioflocculant DP-152 showed non-Newtonian characteristics. Bioflocculant DP-152 exhibited apparently higher viscosity at all concentrations compared to that of zooglan (from Zoogloea ramigera), and it was stable over a wide range of temperatures and pHs.

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