Isolation and Identification of Aldehyde Producing Methanol Utilizing Yeast

메탄올 자화성 효모의 분리, 동정 및 Aldehyde 생산

  • 윤병대 (한국과학기술연구원 유전공학연구소 미생물공학실) ;
  • 김희식 (한국과학기술연구원 유전공학연구소 미생물공학실) ;
  • 권태종 (건국대학교 미생물학과) ;
  • 양지원 (한국과학기술원 화학공학과) ;
  • 권기석 (건국대학교 미생물학과) ;
  • 이현선 (한국과학기술연구원 유전공학연구소 미생물공학실) ;
  • 안종석 (한국과학기술연구원 유전공학연구소 미생물공학실) ;
  • 민태익 (한국과학기술연구원 유전공학연구소 미생물공학실)
  • Published : 1992.12.01

Abstract

Hansenula nonfermentans KYP-l was selected and identified from 19 methanol utilizing yeasts isolated from soil samples by the enrichment culture technique. This strain showed a high cell concentration and a high aldehyde production. Aldehyde production was carried out in a resting cell system using methanol utilizing yeast as a biocatalyst. The molar yield of acetaldehyde was the highest among the aldehyde investigated, and the maximum amount of aldehyde was produced by cells obtained from a 40 hours' culture.

토양으로부터 19균주의 메탄올 자화성 효모를 분리하였으며, 이들 중 높은 균체농도와 aldehyde 생산을 보인 균주를 선별 및 동정하여 Hansenula nonfermentant KYP-1으로 명명하였다. Aldehyde 생산은 메탄올 자화성 효모의 균체를 생촉매로 하는 resting cell system에서 행하였으며, 조사된 aldehyde 가운데 acetaldehyde의 생산량이 가장 높았다. 최대의 aldehyde 생산은 40시간 배양한 균체를 생촉매로 이용하였을 때 얻어졌다.

Keywords

References

  1. Agric. Biol. Chem. v.33 A yeast capable of utilizing methanol Ogata,K.;H.Nishikawa;M.Ohsugi
  2. J. Gen. Appl. Microbiol v.18 New yeasts capable of assimilating methanol Oki,T.;K.Kouno;A.Kitai;A.Ozaki
  3. J. Ferment. Technol. v.52 Yeasts utilizing methanol as a sole carbon source Yokote,Y.;M.Sugimoto;S.Abe
  4. J. Ferment. Technol. v.48 Studies on the production of yeast(Part 1. A yeast utilizing methanol as a sole carbon source) Ogata,K.;H.Nishikawa;M.Ohsugi;T.Tochikura
  5. Adv. Appl. Microbiol v.15 Microbiol utilization of methanol Cooney,C.L.;D.W.Levine
  6. J. Ferment. Technol. v.55 A fed-batch culture of methanol-utilizing bacteria with pH stat Nishio,N.;Y.Tsuchiya;M.Hayashi;S.Nagai
  7. J. Ferment. Technol. v.55 Kinetics of Torulopsis ernobii growing on methanol Elmayergi,H.;O.Coffaro,D.
  8. J. Ferment. Technol. v.55 Continuous biomass production from methanol by Methylomonas clara Faust,U.;P.Prave;D.A.Sukatsch
  9. J. Ferment. Bioeng v.71 Fed-batch culture with a modified DO-stat method Yano,T.;T.Endo;T.Tuji;Y.Nishikawa
  10. J. Ferment. Bioeng v.71 Optimum substrate feed rate in fed-batch culture with the DO-stat method Yano,T.;M.Kurokawa;Y.Nishikawa
  11. J. Ferment. Technol v.60 L-serine production by resting cells of a methanol-utilizing bacterium Izumi,Y.;M.Takizawa;Y.Tani;H.Yamada
  12. Agric. Biol. Chem. v.46 Lmethionine production by methionine-resistant mutants of a facultative methylotroph, Pseudomonas FM 518 Morinaga,Y.;Y.Tani;H.Yamada
  13. Agric. Biol. Chem. v.42 Productin of L-serine by a methanol-utilizing bacterium Tani,Y.;T.Kanagawa:A.Hanpongkittikun;K.Ogata;H.Yamada
  14. Agric. Biol. Chem. v.44 Occurrence of coenzyme $Q_{12}$ and coenzyme $Q_{1}$ in facultative methnol-oxidizing bacteria Natori,Y.;T.Nagasaki
  15. Agric. Biol. Chem. v.45 Enhancement of coenzyme $Q_{10}$ accumulation by mutation and effects of medium components on the formation of coenzyme Q homologs by Pseudomonas N842 and mutants Natori,Y.;T.Nagasaki
  16. Agric. Biol. Chem. v.48 ATP production by protoplasts of a methanol yeast, Candida boidnii No. 2201 Tani,Y.;Y.Mitani;H.Yamada
  17. Appl. Environ. Microbiol v.37 Growth and polysaccharide production by Methylocystis parvus OBBP on methanol Hou,C.T.;A.I.Laskin;R.N.Patel
  18. Kor. J. Appl. Microbiol. Bioeng v.17 Optimization fo growth medium and poly-β-hydroxybutyric acid production from methanol in Methylobacterium organophilum Choi,J.H.;J.H.Kim;M.Daniel;J.M.Lebeault
  19. Kor. J. Appl. Bioeng v.17 New extracellular biopolymer produced by Methylobacterium organophilum from methanol Choi,J.H.;U.T.Lee;J.H.Kim;J.S.Rhee
  20. Appl. Environ. Microbiol v.38 Oxidation of secondary alcohols to methyl ketones by yeasts Patel,R.N.;C.T.Hou;A.I.Laskin;P.Derelanko;A.Felix
  21. Arch. Microbiol v.109 Acetone production by methylobacteria Thomson,A.W.;J.G.O'Neill;J.F.Wilkinson
  22. Agric. Biol. Chem. v.50 Formaldehyde production by cells of a mutant of Candida boidinii S2 grown in methanol-limited chemostat culture Sakai,Y.;Y.Tani
  23. Appl. Environ. Microbiol. v.54 Production of formaldehyde by detergent-treated cells of a methanol yeast, Candida boidinii S2 mutant strain AOU1 Sakai,Y.;Y.Tani
  24. Biotech. Bioeng v.34 Oxidation of benzyl alcohol by whole cells of Pichia pastoris and by alcohol oxidase in aqueous and nonaqueous reaction media Duff,S.J.B.;W.D.Murray
  25. Agric. Biol. Chem. v.36 The microbial metabolism of methanol (Part 1. Formation and crystallization of methanol-oxidizing enzyme in a methanol-utilizing yeast, Kloeckera sp. No. 2201) Tani,Y.;T.Miya;H.Nishikawa;K.Ogata
  26. Adv. Biochem. Engineering v.6 Metabolism of methanol by yeasts Sham,H.
  27. The Yeasts (A Taxonomic Study) Kreger-Van Rij,N.J.W.
  28. Yeasts: Characteristics and Identification Barnett,J.A.;R.W.Payne;D.Yarrow
  29. J. Gen. Appl. Microbiol v.29 The coenzyme Q system in strains of some yeasts and yeast-like fungi Yamada,Y.;T.Ohishi;K.Kondo
  30. FEMS Microbiol. Letters v.25 Microbial oxidation of methanol: properties of crystallized alcohol oxidase from a yeast Patel,R.N.;C.T.Hou;A.I.Laskin;P.Derelanko
  31. Pichia sp. Arch. Biochem. Biophysic. v.210 Microbial oxidation of methanol: properties of crystallized alcohol oxidase from a yeast Patel,R.N.;C.T.Hou;A.I.Laskin;P.Derelanko
  32. Yeast v.7 Biosynthesis and assembly of alcohol oxidase, a peroxisomal matrix protein in methylotrophic yeasts: a review Van Der Klei,I.J.;W.Harder;M.Veenhuis
  33. J. Gen. Microbiol v.26 Taxonomic study of methanol-assimilating yeasts Lee,J.D.;K.Komagata