화학공학소재연구정보센터
Applied Chemistry for Engineering, Vol.26, No.5, 569-574, October, 2015
전자빔 조사를 통해 유도된 Arthrospira platensis 변이주 분리 및 특성 분석
Isolation of an Arthrospira platensis Mutant Induced by Electron Beam Irradiation and its Characterization
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초록
미세조류 Arthrospira platensis (A. platensis)는 색소(chlorophyll, carotenoids), 지질을 다량 함유하여 기능성 식품 생산에 중요한 자원으로 평가받고 있다. A. platensis에 조사선량 240 kGy의 전자빔을 조사하여 균주를 개량하고자 하였으며, 스크리닝을 통해 지질 함량이 높은 EM24를 선별하였다. EM24는 세포생장률 및 색소농도가 야생균주에 비해 약 1.2배 증가함을 확인하였다. 또한 형광강도법으로 측정 후 triolin을 이용해 세포 내 지질 농도를 정량하고자 하였다. EM24의 지질 농도는 62.9 mg/L로 야생균주(38.9 mg/L)에 비해 약 1.5배 증대되었다. 세포 내 지방산 또한 gamma-linoleic acid (GLA) 함량이 약 1.5배 증가하였다.
Arthrospira platensis has high lipid and pigment (such as chlorophyll and carotenoid) contents and thus evaluated as an important resource in functional food production. The cell growth rate and pigment concentration of EM24 increased by approximately 1.2-fold than those of the wild-type strain (WT). Fluorescence intensity levels in EM24, which were quantified with a lipid triolein standard curve, also increased by approximately 1.5-fold than those in WT (62.9 mg/Lvs. 38.9 mg/L). The analysis of fatty acid profiles indicated that the gamma-linoleic acid level in EM24 increased by 1.5-fold than that in WT.
  1. Lim KY, Sharma K, Garg S, Schnk PM, Biofuels, 1(6), 835 (2010)
  2. Hong SS, Lee NH, J. Microbiol. Biotechnol., 3(1), 19 (1993)
  3. Klanchui A, Vorapreeda T, Vongsangnak W, Khannapho C, Cheevadhanarak S, Meechai A, Comput. Struct. Biotechnol. J., 4(3), 1 (2012)
  4. Otles S, Pire R, J. AOAC Int., 84(6), 1708 (2001)
  5. Cheevadhanarak S, Marsac NT, Thomas JC, Tanticharoen M, Nomsawai P, Plant Cell Physiol., 40(12), 1194 (1999)
  6. Bescos PB, Fresno AM, Estrada JEP, Farmaco, 56, 497 (2001)
  7. Lee YJ, Wok SC, Kim HJ, Lee JH, Kim MR, Korean J. Food Preserv., 16(1), 8 (2009)
  8. Mendiola JA et al., Food Chem., 102(4), 1357 (2007)
  9. Kim JY, Joo H, Lee JH, Appl. Chem. Eng., 22(3), 301 (2011)
  10. Ramadan MF, Asker MMS, Ibrahim ZK, Czech J. Food Sci., 26(3), 211 (2008)
  11. Ronda SR, Lele SS, Brazil. J. Microbiol., 39(4), 693 (2008)
  12. Park HJ, Kim YH, Lee JH, Appl. Chem. Eng., 23(5), 496 (2012)
  13. Kim YH, Choi SJ, Park HJ, Lee JH, J. Ind. Eng. Chem., 20(4), 1834 (2014)
  14. Park JK, Lee CG, J. Chitin Chitosan., 13(4), 210 (2008)
  15. Jeong HY, Kim KR, J. Microbiol. Biotechnol., 38(3), 235 (2010)
  16. Hiroyasu Y, Akemi S, Yoshihiro H, Konosuke D, Atsushi T, Toshikazu M, Euphytica, 165(1), 97 (2009)
  17. Park SY, Noh HA, Cho H, Dumont A, Ptasinska S, Bass AD, Sanche L, J. Kor. Radiat. Prot., 33(2), 53 (2008)
  18. Ptasinska S, Sanche L, J. Chem. Phys., 125(14), 144713 (2006)
  19. Yu SH, Cho IH, Chang SW, Lee SJ, Chun SY, Kim HL, J. Kor. Soc. Environ. Eng., 30(9), 955 (2008)
  20. Ryu JH, So HS, Bae SH, Kang HS, Lee BC, Kang SY, Lee HY, Bae CH, Kor. J. Breed. Sci., 45(1), 8 (2013)
  21. Kim YM, Kim JY, Lee SM, Ha JM, Kwon TH, Lee JH, Appl. Chem. Eng., 21(3), 272 (2010)
  22. Choi SJ, Kim YH, Kim A, Lee JH, Appl. Chem. Eng., 24(6), 628 (2013)
  23. Moon SR, Son BK, Yang JO, Woo JS, Yoom CM, Kim GH, Kor. J. Appl. Entomol., 49(2), 129 (2010)
  24. Park HJ, Kim YH, Lee JH, Appl. Chem. Eng., 23(5), 496 (2012)
  25. Chen W, Sommerfeld M, Hu QA, Bioresour. Technol., 102(1), 135 (2011)
  26. Kim YH, Lee JH, Kor. Soc. Biotechnol. Bioeng. J., 27, 172 (2012)
  27. Bertozzini E, Galluzzi L, Penna A, Magnani M, J. Microbiol. Methods, 87(1), 17 (2011)
  28. Minkova KM, Tchernov AA, Tchorbadjieva MI, Fournadjieva ST, Antova RE, Busheva MCH, J. Biotechnol., 102(1), 55 (2003)
  29. Tran HL, Hong SJ, Lee CG, Biotechnol. Bioeng., 14(2), 187 (2009)
  30. Kim JH, Park HJ, Kim YH, Joo H, Lee SH, Lee JH, Appl. Chem. Eng., 24(2), 155 (2013)
  31. Boussiba S, Bing W, Yuan JP, Zarka A, Chen F, Biotechnol. Lett., 21(7), 601 (1999)
  32. Oh SH, Han JG, Kim NY, Cho JS, Yim TB, Lee SY, Lee HY, Kor. Soc. Biotechnol. Bioeng. J., 24(4), 377 (2009)
  33. Kim DK, Shin JA, Lee KT, CNU J. Agric. Sci., 38(2), 277 (2011)