Auxin과 Siderophore 생산성 다기능 생물방제균 Bacillus subtilis AH18

An Auxin Producing Plant Growth Promoting Rhizobacterium Bacillus subtilis AH18 which has Siderophore-Producing Biocontrol Activity

  • 정희경 (영남대학교 자연자원대학 응용미생물학과) ;
  • 김진락 (영남대학교 자연자원대학 응용미생물학과) ;
  • 우상민 (영남대학교 자연자원대학 응용미생물학과) ;
  • 김상달 (영남대학교 자연자원대학 응용미생물학과)
  • Jung Hee-Kyoung (Department of Applied Microbiology, College of Natural Resources, Yeungnam University) ;
  • Kim Jin-Rak (Department of Applied Microbiology, College of Natural Resources, Yeungnam University) ;
  • Woo Sang-Min (Department of Applied Microbiology, College of Natural Resources, Yeungnam University) ;
  • Kim Sang-Dal (Department of Applied Microbiology, College of Natural Resources, Yeungnam University)
  • 발행 : 2006.06.01

초록

식물생장 촉진 호르몬인 auxin을 생산하는 균주를 선발하기 위해 경산지역 경작지 토양에서 29종의 세균을 분리하였으며 Salkowsky test를 통해 auxin을 생산하는 14종을 선발하였다. 이 중 CAS(chrome azurol S) blue agar에서 siderophore의 생산을 확인 후 auxin과 siderohroe를 동시에 생산하는 AH18을 최종 선발하였다. AH18의 mung-bean adventitious root induction test를 통해 식물생장 촉진 능이 대조구에 비해 1.5배나 뛰어남을 알 수 있었고, 토마토 pot test에서 토마토 시들음병의 윈인균인 F. oxysporum에 대해서 길항력도 나타내었다. 선발된 AHl8 균주는 16S rDNA와 Biolog system을 통해 Bacillus subtilis 동정되었다. B. subtilis AH18은 Sucrose-asparagine-MgsO$_4$(SAM) medium (pH 6.0)에 접종하여 30$^{\circ}C$에서 3일간 배양 시 siderophore를 가장 많이 생산하는 것을 알 수 있었다.

To isolate a bacterium that produces plant growth promoting hormone, a total of 29 bacteria were obtained from the soil in Gyeongsan, Korea. Among these, 14 strains were selected by their positive reaction on Salkowski to produce auxin. All of these were then tested for their property to produce siderophore using CAS (chrome azurol S) blue agar, and one was chosen for its ability to produce both, auxin and siderophore. This strain, denoted, AHl8, showed 1.5 times higher adventitious root induction rates than controls, using mung-beans. The strain also showed efficient biocontrol properties towards Fusarium-wilt of tomatoes in artificial pot assays. The strain was identified as Bacillus subtilis by 16s rDNA comparison and Biolog analyses. Growth and media conditions for Bacillus subtilis AH1 8 to highly produce siderophore were also investigated.

키워드

참고문헌

  1. Chio, D. W. and I. G. Kim. 1996. Respection of pectic enzyme among the hydrolysis enzymes of plant cell wall. KOREAN J. Food Nutrit. 9: 92-101
  2. Chun, J. O., Y. S. Hwang and J. C. Lee. 1995. Effect of cell wall hydrolase and Ca++ hydrolysis of isolated apple cell wall. J. Kor. Soc. Hort. Sci. 13: 206-207
  3. Devender K. J. and G. David. 1984. Characterization of a substance produced by Azospirillum which causes branching of wheat root hairs. Can. J. Microbial. 31: 206-210
  4. Elad, Y. and R. Baker. 1985. Intluence of trace amounts of cautions and siderophore producing Pseudomonads on chlamydospore germination of Fusarium oxysprum. Phytopathology 75: 1047-1052 https://doi.org/10.1094/Phyto-75-1047
  5. Francine, M. P., B. G. Rolfe, M. F. Hynes and Charles H. H. 2004. Gas chromatography-mass spectrometry analysis of indoleacetic acid and tryptophan following aqueous chloroformate derivatisation of Rhizobium exudates. Plant Physiol. Biochem. 42: 723-729 https://doi.org/10.1016/j.plaphy.2004.07.008
  6. Hess, C. E. 1961. The mungbean bioassay for the detection of root promoting substances. Plant Physiol. (suppl.) 36: xxi
  7. Holt, J. G, N. R. Krieg, P. H. Sneath, J. T. Staley and S. T. Williams. 1994. Bergey's manual of determinative Bacteriology. 9th., Williams and Wilkins, U.S.A. 1004-1139
  8. Katiyar, V. and G. Reeta. 2004. Improved plant growth from seed bacterization using siderophore overproducing cold resistant mutant of Pseudomonas fluorescens. J. Microbiol. Biotechnol. 14: 653-657
  9. Kwon, D. H., J. H. Choe, H. K. Jeong, J. H. Im, G. J. Ju and S. D. Kim. 2004. Selection and identification of auxinproducing plant growth promoting rhizobacteria having phytopathogenantagonistic activity. J. Kor. Soc. Appl. Biol. Chem. 47: 17-21
  10. Lee, J. K., C. J. Kim, S. D. Kim and J. D. Yoo. 1990. Antifungal antibiotic against fruit rot disease of red pepper form Streptomyces parvullus. Kor. J. Appl. Microbiol. Biotechnol. 18: 142-147
  11. Lee, J. M., H. S. Lim, T. H. Chang and S. D. Kim. 1999. Isolation of siderophore-producing Pseudomonas fluorescens GL 7 and its biocontrol activity against root-rot disease. Kor. J. Appl. Microbiol. Biotechnol. 27: 427-432
  12. Leonid, N. T., M. J. Lee, M. K. Lee, H. Park and J. H. Yoon. 2000. Production of Auxins and Auxin - like Compounds by Ginseng Growth - promoting Bacterium Pseudomonas fluorescens KGPP 207. Agric. Chem. Biotechnol. 43: 264-268
  13. Lim, H. S., J. M. Lee and S. D. Kim. 2002. A plant growth promoting Pseudomonas fluorescens GL20 - mechanism for disease suppression, outer membrane receptors for ferric siderophore and genetic improvement for increased biocontrol efficacy. J. Microbiol. Biotechnol. 12: 249-257
  14. Lim, S. U., T. G. Lee and D. M. Sa. 1995. Isolation and physiological characteristics of auxin-producing soil bacteria. Korean J. Soil Sci. Fert. 28: 75-82
  15. Nakano, M. M. and P. Zuber. 1990. Molecular biology of antibiotic production in Bacillus. Crit. Rev. Biotechnol. 10: 223-240 https://doi.org/10.3109/07388559009038209
  16. Oh, Y J., 2000. Cultural Conditions for the hnprovement in Gibberellic Acid Productivity by a Mutant of Gibberella fujikuroi ATCC 12616 - Gibberella fujikuroi G. - 36. Kor. J. Appl. Microbiol. Biotechnol. 28: 152-155
  17. Ravikurnar, S., K. Kathiresan, M. B. Selvam and S. Shanthy, 2004. Nitrogen-fixing azotobacters from mangrove habitat and their utility as marine biofertilizers. J. Exp. Mar. Biol. Ecol. 312: 5-17 https://doi.org/10.1016/j.jembe.2004.05.020
  18. Schwyn, B. and J. B. Neilands. 1987. Universal chemical assay for the detection and determination of siderophores. Anal. Biochem. 160: 47-56 https://doi.org/10.1016/0003-2697(87)90612-9
  19. Seong, K. Y. 1995. Factors influencing siderophore production by plant growth promoting rhizopseudomonas strains. Kor. J. Soil Sci. Fert. 28: 287-294
  20. Shivanna, M. B., M. S. Meera and M. Hyakumachi. 1994. Sterile fungi from zoysia grass rhizosphere as plant growth promoters in spring wheat. Can. J. Microbiol. 40: 637-644
  21. Stosola, F. H. Source book on Gibberellin. 1958. U. S. Dept. of Agr. Washington. 1828-1957
  22. Takeru, T. 1993. Enzymatic Determination of Itoic Acid, a Bacillus subtilis Siderophore, and 2, 3-Dihydroxybenzoic Acid. Appl. Environ. Microbiol. 59: 2343-2345
  23. Waring, W. S. and C. H. Werkman. 1942. Growth of bacteria in an iron-free medium. Arch. Biochem. 1: 303-310
  24. Weinberg, E. D. 1974. Iron and susceptibility to infectious disease. Science 184: 952-956 https://doi.org/10.1126/science.184.4140.952