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토양 pH 조절과 윤작에 의한 감자 더뎅이병 방제

Control of Common Scab of Potato Caused by Streptomyces spp. by Soil pH Adjustment and Crop Rotation

  • 김점순 (국립식량과학원 고령지농업연구센터) ;
  • 이영규 (국립식량과학원 고령지농업연구센터) ;
  • 권민 (국립식량과학원 고령지농업연구센터) ;
  • 김주일 (국립식량과학원 고령지농업연구센터) ;
  • 이계준 (국립식량과학원 고령지농업연구센터) ;
  • 이정태 (국립식량과학원 고령지농업연구센터) ;
  • 류종수 (국립식량과학원 고령지농업연구센터)
  • Kim, Jeom-Soon (Highland Agriculture Research Center, National Institute of Crop Science, Rural Development Administration (RDA)) ;
  • Lee, Young-Gyu (Highland Agriculture Research Center, National Institute of Crop Science, Rural Development Administration (RDA)) ;
  • Kwon, Min (Highland Agriculture Research Center, National Institute of Crop Science, Rural Development Administration (RDA)) ;
  • Kim, Ju-Il (Highland Agriculture Research Center, National Institute of Crop Science, Rural Development Administration (RDA)) ;
  • Lee, Gye-Jun (Highland Agriculture Research Center, National Institute of Crop Science, Rural Development Administration (RDA)) ;
  • Lee, Jeong-Tae (Highland Agriculture Research Center, National Institute of Crop Science, Rural Development Administration (RDA)) ;
  • Ryu, Jong-Soo (Highland Agriculture Research Center, National Institute of Crop Science, Rural Development Administration (RDA))
  • 투고 : 2011.11.03
  • 심사 : 2012.04.13
  • 발행 : 2012.06.30

초록

감자 더뎅이병 방제에 대한 토양 pH 조절의 효과를 더뎅이병에 감염된 포장에서 2006년 평가하였다. 원래 pH가 5.7이었던 토양을 pH 5.0, 6.0, 6.5로 조절하고자 유황(42 kg/10a)과 소석회(81.6 kg/10a, 184.5 kg/10a)를 처리하였고 석고(522 kg/10a)도 토양 pH와 더뎅이병 발생에 미치는 영향을 구명하고자 처리하였다. 유황처리구의 토양 pH는 괴경형성기에 5.13, 수확기에는 5.01로 지속적으로 감소하였다. 또한 괴경의 발병도는 22.8%로 상대적으로 낮았으며 90.5%의 높은 상품수량을 나타내었다. 반면 소석회를 81.6 kg/10a과 184.5 kg/10a 처리한 구의 토양 pH는 수확기에 6.06과 6.49로 증가하였고, 각각 51.0%와 61.1%의 높은 발병도와 55.7%와 37.0%의 낮은 상품수량을 보였다. 한편 석고처리구는 수확기까지 토양 pH의 변화가 거의 없었으며 발병도와 상품수량도 무처리구와 유의적인 차이가 없었다. 감자 더뎅이병의 방제를 위하여 윤작작물을 2005년부터 2007년까지 재배하고 2008년에 감자를 재배하였다. 3년 윤작 후의 발병도는 파, 콩, 옥수수, 배추 시험구에서 각각 13.1%, 16.7%, 28.9%, 30.2%로 감자 연작구의 73.1%에 비해 상당히 낮았으며 상품수량도 이와 유사한 경향을 보였다. 본 연구 결과에서 살펴본 바와 같이 토양 pH의 조절과 윤작은 감자 더뎅이병 방제를 위해 단장기적으로 활용될 수 있을 것으로 판단된다.

In 2006, the effect of soil pH adjustment on control of common scab of potato caused by Streptomyces spp. was evaluated in the field. Soil with an original pH 5.7 was treated with sulfur of 42 kg/10a and calcium hydroxide of 81.6 kg/10a and 184.5 kg/10a to adjust pH 5.0, 6.0 and 6.5, respectively. Additionally, the effect of gypsum (522 kg/10a) on soil pH and disease severity was examined. The soil pH of sulfur treatment plot was continuously declined from 5.13 at tuber initiation time to 5.01 at harvest. The disease severity of sulfur treatment plot was relatively low (22.8%) and the marketable yield of that was high (90.5%). By contrast, the soil pHs treated with calcium hydroxide (81.6 kg/10a and 184.5 kg/10a) were increased (pH 6.06 and 6.49, respectively) at harvest. In addition, calcium hydroxide treatment plots showed higher disease severities (51.0% and 61.1%), and lower marketable yields (55.7% and 37.0%). Meanwhile, the soil pH of gypsum treatment plot was not changed until harvest, and the disease severity and the marketable yield were not significantly different from those of control. The effect of crop rotation was also evaluated with four crops such as welsh onion, soybean, corn and Chinese cabbage. These crops were planted in the infested field from 2005 to 2007, and potatoes were planted in the same field in 2008. The disease severities of potatoes produced after rotations with welsh onion, soybean, corn and Chinese cabbage for 3 years were 13.1%, 16.7%, 28.9% and 30.2%, respectively. However, the disease severity of 73.1% was shown in continuous cropping of potato for 3 years. In addition, similar effects were exhibited in the marketable yield. These results demonstrate that the adjustment of soil pH and crop rotation might be very useful tools to control common scab of potato.

키워드

참고문헌

  1. Agrios, G. N. 2005. Plant Pathology. 5th edition. Elsevier Academic Press, Burlington, USA. pp. 674-675.
  2. David, J. R., Garner, J. G. and Callihan, R. H. 1974. Effects of gypsum, sulfur, terraclor and terraclor super-X for potato scab control. Am. Potato J. 51: 35-43. https://doi.org/10.1007/BF02858511
  3. Doyle, J. J. and Maclean, A. A. 1960. Relationships between Ca:K ratio, pH, and prevalence of potato scab. Can. J. Plant Sci. 40: 616-619. https://doi.org/10.4141/cjps60-090
  4. Duff, G. H. and Welch, C. G. 1927. Sulphur as a control agent for common scab of potato. Phytopathology 17: 297-314.
  5. Eckwall, E. C. and Schottel, J. L. 1997. Isolation and characterization of an antibiotic produced by the scab diseasesuppressive Streptomyces diastatochromogenes strain PonSSII. J. Ind. Microbiol. Biotechnol. 19: 220-225. https://doi.org/10.1038/sj.jim.2900455
  6. Goss, R. W. and Afanasiev, M. M. 1938. Influence of rotations under irrigation on potato scab, Rhizoctonia and Fusarium wilt. Neb. Agr. Expt. Sta. Bull. 317: 181.
  7. Han, J. S., Cheng, J. H., Yoon, T. M., Song, J., Rajkarnikar, A., Kim, W. G., Yoo, I. D., Yang, Y. Y. and Suh, J. W. 2005. Biological control agent of common scab disease by antagonistic strain Bacillus sp. sunhua. J. Appl. Microbiol. 99: 213-221. https://doi.org/10.1111/j.1365-2672.2005.02614.x
  8. Hong, S. Y. 2001. Developmental characteristics and control of potato common scab in Jeju Island. Ph.D. thesis. Jeju National University. Jeju, Korea. (In Korean)
  9. Hong, S. Y., Kang, Y. K. and Hahm, Y. I. 2003. Developmental characteristics of potato common scab in Jeju Island. Res. Plant Dis. 9: 137-144. (In Korean) https://doi.org/10.5423/RPD.2003.9.3.137
  10. Hooker, W. J. 1956. Survival of Streptomyces scabies in peat soil planted with various crops. Phytopathology 46: 677-681.
  11. Hooker, W. J. 2001. Compendium of potato diseases. 2nd Edition. APS Press, St. Paul, MN, USA. pp. 14-15.
  12. Kim, J. H. and Lee, W. H. 1996. Characteristics of potato common scab pathogens from continuous cropping fields in Korea. Korean J. Plant Pathol. 12: 109-115. (In Korean)
  13. Kim, J. S., Park, D. H., Choi, Y. C., Lim, C. K., Hong, S. Y., Lee, S. D., Hahm, Y. I. and Cho, W. D. 1998b. Potato scab caused by Streptomyces acidiscabies. Korean J. Plant Pathol. 14: 689-691. (In Korean)
  14. Kim, J. S., Park, D. H., Lim, C. K., Choi, Y. C., Hahm, Y. I. and Cho, W. D. 1998a. Potato common scab by Streptomyces turgidiscabies. Korean J. Plant Pathol. 14: 551-554. (In Korean)
  15. Kritzman, G., and Grinstein, A. 1991. Formalin application against soil-borne Streptomyces. Phytoparasitica 19: 248(Abstract)
  16. Lacey, M. J. 2000. Studies on common scab of potato. PhD thesis. University of Tasmania, Australia. 203 pp.
  17. Lambert, D. H. and Loria, R. 1989a. Streptomyces scabies sp. nov. Int. J. Syst. Bacteriol. 39: 387-392. https://doi.org/10.1099/00207713-39-4-387
  18. Lambert, D. H. and Loria, R. 1989b. Streptomyces acidiscabies sp. nov. Int. J. Syst. Bacteriol. 39: 393-396. https://doi.org/10.1099/00207713-39-4-393
  19. Lambert, D. H. and Manzer, F. E. 1991. Relationship of calcium to potato scab. Phytopathology 81: 632-636. https://doi.org/10.1094/Phyto-81-632
  20. Lapwood, D. H. and Hering, T. F. 1970. Soil moisture and the infection of young potato tubers by Streptomyces scabies (common scab). Potato Res. 13: 296-304. https://doi.org/10.1007/BF02358275
  21. Lapwood, D. H., Wellings, L. W. and Hawkins, J. H. 1973. Irrigation as a practical means to control potato common scab (Streptomyces scabies). Plant Pathol. 22: 35-41. https://doi.org/10.1111/j.1365-3059.1973.tb01766.x
  22. Lee, S. D. 1999. Occurrence and characterization of major plant bacterial diseases in Korea. Ph.D. thesis. Seoul National University, Seoul, Korea. (In Korean)
  23. Liu, D., Anderson, N. A. and Kinkel, L. L. 1995. Biological control of potato scab in the field with antagonistic Streptomyces scabies. Phytopathology 85: 827-831. https://doi.org/10.1094/Phyto-85-827
  24. McGuire, R. G. and Kelman, A. 1984. Reduced severity of Erwinia soft rot potato tubers with increased calcium content. Phytopathology 74: 1250-1256. https://doi.org/10.1094/Phyto-74-1250
  25. McGuire, R. G. and Kelman, A. 1986. Calcium in potato tuber cell walls in relation to tissue maceration by Erwinia carotovora pv. atroseptica. Phytopathology 76: 401-403. https://doi.org/10.1094/Phyto-76-401
  26. Menzies, J. D. 1959. Occurrence and transfer of a biological factor in soil that suppresses potato scab. Phytopathology 49: 648-652.
  27. Mitchell, C. C. 2000. Soil acidity and liming - Part 2. Lowering soil pH. Extension Service, Clemson University. (http://hubcap.clemson.edu/-blpprt/acidity2.html)
  28. Miyajima, K., Tanaka, F. and Kuninaga, F. 1998. Streptomyces turgidiscabies sp. nov. Int. J. Syst. Bacteriol. 48: 495-502. https://doi.org/10.1099/00207713-48-2-495
  29. Muncie, J. H., Moore, H. C., Tyson, J. and Wheeler, E. J. 1944. The effect of sulphur and acid fertilizer on incidence of potato scab. Am. Potato J. 21: 293-304. https://doi.org/10.1007/BF02854942
  30. National Institute of Agricultural Science and Technology. 2000. Methods of soil chemical analysis. Suwon, Korea. pp. 122-123. (In Korean)
  31. Poovaiah, B. W. 1986. Role of calcium in prolonging storage life of fruits and vegetables. Food Technol. 40: 86-89.
  32. Poovaiah, B. W. 1988. Molecular and cellular aspects of calcium action in plants. HortScience 23: 267-271.
  33. Potter, H. S., Hooker, W. J., Cargo, W. and Stachwick, G. T. 1958. Pentachloro nitrobenzene and urea-formaldehyde for potato scab control in Michigan. Plant Dis. Rep. 43: 633-637.
  34. Rich, A. E. 1983. Potato diseases. Academic Press, Inc., New York, NY, USA. 238 pp.
  35. Rural Development Administration. 2003. Standard farming textbook 31. 'Potato Cultivation'. Suwon, Korea. (In Korean)
  36. Tzeng, K. C., Kelman, A., Simmons, K. E. and Kelling, K. A. 1986. Relationship of calcium nutrition to internal brown spot of potato tubers and sub-apical necrosis of sprouts. Am. J. Potato Res. 63: 87-97. https://doi.org/10.1007/BF02853687
  37. Vlitos, A. J. and Hooker, W. J. 1951. The influence of sulfur on populations of Streptomyces scabies and other Streptomycetes in peat soil. Am. Potato J. 38: 678-683.
  38. Waksman, S. A. 1921. The influence of soil reaction upon the growth of Actinomycetes causing potato scab. Rutgers College Studies 1: 61-79.
  39. Weinhold, A. R., Oswald J. W., Bowman, T., Bishop, J. and Wright, D. 1964. Influence of green manures and crop rotation on common scab of potato. Am. Potato J. 41: 265-273. https://doi.org/10.1007/BF02854863
  40. Werner, H. O., Kiesselbach, T. A. and Goss, R. W. 1944. Dry-land crop rotation experiments with potatoes in northwestern Nebraska. Neb. Agr. Expt. Sta. Bull. 363: 43.
  41. Wheeler, E. J. 1946. The residual effect of crop rotations on potato yield and the presence of potato scab. Mich. Agr. Expt. Sta. Quart. Bull. 28: 1-7.
  42. Yiem, M. S., Kim, S. Y., Kim, J. G. and Choi, Y. H. 1990. Research on ecology and control of potato common scab. In: Research Report. National Horticultural Experiment Station, RDA, Suwon, Korea. pp. 324-339. (In Korean)

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