Evaluation of Streptomyces padanus IA70-5 Strain to Control Hot Pepper Anthracnose (Colletotrichum acutatum)

고추 탄저병 (Colletotrichum acutatum) 방제를 위한 Streptomyces padanus IA70-5의 평가

  • Chi, Tran Thi Phuong (Dept. of Applied Biology, Gyeongsang National Univ.) ;
  • Choi, Okhee (Insti. of Agric. & Life Sci., Gyeongsang National Univ.) ;
  • Kwak, Youn-Sig (Dept. of Applied Biology, Gyeongsang National Univ., Insti. of Agric. & Life Sci., Gyeongsang National Univ.) ;
  • Son, Daeyoung (Dept. of Applied Biology, Gyeongsang National Univ., Insti. of Agric. & Life Sci., Gyeongsang National Univ.) ;
  • Lee, Jeung Joo (Dept. of Applied Biology, Gyeongsang National Univ., Insti. of Agric. & Life Sci., Gyeongsang National Univ.) ;
  • Kim, Jinwoo (Dept. of Applied Biology, Gyeongsang National Univ., Insti. of Agric. & Life Sci., Gyeongsang National Univ.)
  • 쩐티펑지 (경상대학교 응용생물학과) ;
  • 최옥희 (경상대학교 농업생명과학연구원) ;
  • 곽연식 (경상대학교 응용생물학과, 경상대학교 농업생명과학연구원) ;
  • 손대영 (경상대학교 응용생물학과, 경상대학교 농업생명과학연구원) ;
  • 이증주 (경상대학교 응용생물학과, 경상대학교 농업생명과학연구원) ;
  • 김진우 (경상대학교 응용생물학과, 경상대학교 농업생명과학연구원)
  • Received : 2012.02.07
  • Accepted : 2012.06.26
  • Published : 2012.06.30

Abstract

To select bacterial strains with antifungal activity against an anthracnose fungal disease causing damage severely on hot pepper, previous isolates obtained from plant root samples were screened. Among 457 isolates, IA70-5 isolate was finally selected and identified as Streptomyces padanus based on 16S rDNA sequence analysis. Strain IA70-5 is non-pigmenteous, non-mobile, and filamentous. S. padanus IA70-5 inhibited effectively the mycelium growth, spore germination, and appressorium formation of Colletotrichum acutatum in vitro. The results of this study demonstrated that IA70-5 strain, especially applied on fruit of hot pepper, decreased disease incidence 90% for pre-inoculation before pathogen treatment. Taken together, S. padanus IA70-5 strain is a promising biological control agent to control of a major fungal pepper disease, anthracnose.

고추에 큰 피해를 일으키는 탄저병에 대한 강한 길항력이 있는 세균을 선발하기 위해 선행연구에서 식물뿌리 시료로부터 분리하여 보관중인 세균들을 대상으로 검정에 사용하였다. 총 457균주로부터 IA70-5균주를 최종 선발하였고, 16S rDNA 염기서열 분석을 통해 Streptomyces padanus로 동정하였다. S. padanus IA70-5는 색소를 분비하지 않고 운동성이 없으며 전형적인 Streptomyces속에 속하는 세균들처럼 나선형의 형태를 이루고 있었다. S. padanus IA70-5 균주는 in vitro에서 Colletotrichum acutaum의 균사생장, 포자발아, 그리고 부착기 형성을 효과적으로 억제하였다. 실내 고추 과실에 대하여 병원균 접종 전 IA70-5 배양액 처리 시 약 90%의 탄저병 억제효과를 나타내었다. 본 연구결과를 통하여 길항방선균 S. padanus IA70-5는 고추 탄저병을 억제하는 효과가 있음을 확인하였다.

Keywords

References

  1. Ahn, I. P., O. Kim, and Y. H. Lee. 2008. Hight through screening of antifungal metabolites against Colletotrichum gloeosporioides. Plant Pathol. J. 24: 24- 30.
  2. Altschul, S. F., T. L. Madden, A. A. Schaffer, J. Zhang, Z. Zhang, W. Miller, and D. J. Lipman. 1997. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucleic Acids Res. 25: 3389-3402.
  3. Chung, W.-H., H. Ishii, K. Nishimura, M. Fukaya, K. Yano, and Y. Kajitani. 2006. Fungicide sensitivity and phylogenetic relationship of anthracnose fungi isolated from various fruit crops in Japan. Plant Dis. 90: 506-512.
  4. Freeman, S., D. Minz, I. Kolesnik, O. Barbul, A. Zveibil, and M. Maymon. 2004. Trichoderma biocontrol of Colletotrichum acutatum and Botrytis cinerea and survival in strawberry. Euro. Plant Pathol. 110: 361-370.
  5. Huang, J.-W., H.-D. Shih, H.-C. Huang, and W.-C. Chung. 2007. Effects of nutrients on production of fungichromin by Streptomyces padanus PMS-702 and efficacy of control of Phytophthtora infestans. Can. J. Plant Pathol. 29: 161-267.
  6. Hwang, B. K., S. W. Lim, B. S. Kim, J. Y. Lee, and S. S. Moon. 2001. Isolation and in vivo and in vitro antifungal activity of phenylacetic and sodium phenylacetate from Streptomyces humidus. Appl. Environ. Microbiol. 67: 3739-3745.
  7. Jebessa, M. T. and S. L. Ranamukhaarachchi. 2006. Attempts N biologically control anthracnose disease in chilli pepper. Trop. Sci. 46: 74-77.
  8. Joo, G.-J. 2005. Productions of an antifungal substance from biological control of Phytophthora capsici causing Phytophthora blight in red-pepper by Streptomyces halstedii. Biotechnol. Letter 27: 201-205.
  9. Kabaluk, T. and K. Gazdik. 2005. Directory of microbial pesticides for agricultural crops in OECD countries. Agriculture and Agri-food Canada, p14, 17, 28.
  10. Kang, B. K., J. Y. Kim, K. H. Lee, S. C. Lim, J. W. Lee, and H. T. Kim. 2009. Effects of temperature and moisture on the survival of Colletotrichum acutatum, the cause agent of pepper anthracnose in soil and pepper fruit debris. Plant Pathol. J. 25: 128-135.
  11. The Korean Society of Plant Pathology. 2009. List of Plant Diseases in Korea, 5th ed. 853 pp.
  12. Lenne, J. M. and D. G. Parbery. 1976. Phyllosphere antagonists and appressoria formation in Colletotrichum gloeosporioides. Trans. British Mycol. Soc. 66: 334-336.
  13. Lim, T. H., Y.-H. Choi, D. W. Lee, S. Han, and B. Cha. 2008. Antifungal activity of Streptomyces padanus isolate TH04 against Monilinia fructicola, brown rot fungus on stone-fruits. Korean Pest. Sci. 12: 291-194.
  14. Lim, T. H., S. Y. Kwon, and J. H. Kim. 2005. Antifungal activity of Streptomyces griseofuscus 200401 against pathogens causing late blight and anthracnose on pepper. Kor. Pest. Sci. 9: 102-107.
  15. Lim, T. H., S. H. Cho, and J. H. Kim. 2007. Effects of Streptomyces sp. MG121 on growth of pepper plants and antifungal activity. Res. Plant Dis. 13: 93-97.
  16. Okayama, K. and A. Tsujimeto. 1994. Occurrence of strawberry anthracnose caused by Glomerella cingulata (Stoneman) Spaulding et Schrenk and pathogenicity of the fungus. Ann. Phytopathol. Soc. Japan 60: 617-623.
  17. Park, K. S. and C. H. Kim. 1992. Identification, distribution and etiological characteristics of anthracnose fungi of red pepper in Korea. Korean J. Plant Pathol. 8: 61-69.
  18. Roberts P. D., K. Pernezny, and T. A. Kucharek. 2001. Anthracnose caused by Colletotrichum sp. on pepper. Journal of University of Florida/Institute of Food and Agricultural Sciences. (Available from: http://edis.ifas.ufl.edu/PP104) (Accessed 25/12/2007).
  19. Saitou N. and M. Nei. 1987. The neighbor-joining method: a new method for reconstructing phylogenetic trees. Mol. Biol. Evol. 4: 406-425.
  20. Shih, H.-D., Y.-C. Liu, F.-L. Hsu, V. Mulabagal, R. Dodda, and J.-W. Huang. 2003. Fungichromin: A substance from Streptomyces padanus with inhibitory effects on Rhizoctonia solani. J. Agri. Food Chem. 51: 95-99.
  21. White, T. J., T. Bruns, S. Lee, and J. W. Taylor. 1990. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In PCR Protocols: A guide to methods and applications. Innis, M. A., D. H. Gelfand, J. J. Sninsky, and T. J. White. pp. 315-322. eds. Academic Press Inc., New York, USA.
  22. Yeom, B.-M. 2009. Pesticide handbook. Korea Crop Protection Association, p138-139.
  23. Yin, S. Y., J. K. Chang, and P. C. Xun. 1965. Studies in the mechanisms of antagonistic fertilizer "5406" IV. The distribution of the antagonist in soil and its influence on the rhizosphere. Acta Microbiol. Sin. 11: 259-288.