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시판 토마토품종의 고구마 뿌리혹선충과 땅콩 뿌리혹선충에 대한 저항성

Resistance of Commercial Tomato Cultivars to Meloidogyne arenaria and M. incognita

  • Kim, Donggeun (Organic Agriculture Research Institute) ;
  • Ryu, Younghyun (Organic Agriculture Research Institute) ;
  • Park, Hyunro (Gumi Floricultural Experiment Station) ;
  • Huh, Changseok (Organic Agriculture Research Institute) ;
  • Bae, Changhwan (Wild Life Genetic Resource Center, National Institute of Biological Resources, Environment Research Complex)
  • 투고 : 2012.12.06
  • 심사 : 2013.03.20
  • 발행 : 2013.03.31

초록

국내에서 시판되고 있는 토마토 36품종을 이용하여 국내 시설재배지에서 가장 많이 분포하고 있는 두 종의 뿌리혹선충, Meloidogyne arenaria와 M. incognita에 대한 저항성을 검정하였다. 방울토마토 중에서는 '텐텐', '캐딜락', '큐티', '스위트', '뽀또', '리코핀-9' 등 6품종, 완숙토마토 중에서 '러브리240', '도테랑다이아', '큐피랑', '도테랑마스터', '슈퍼도태랑', '도태랑시즌', '마이로꾸', '호용' 등 8품종, 대목은 '스페셜', '파이팅', '마그네트' 등 3품종이 두 종류의 뿌리혹선충에 모두 강한 저항성이었다.

Root-knot nematodes (Meloidogyne spp.) are among the main pathogens of greenhouse crops worldwide. Plant resistance is currently the method of choice for controlling these pests. To select resistant tomato against two common species of root-knot nematodes, M. incognita and M. arenaria, 36 commercial tomato (Lycopersicon esculentum Mill.) cultivars were screened. Seventeen tomato cultivars were resistant to both root-knot nematodes: six in cherry tomato, 'Tenten', 'Cadillac', 'Cutti', 'Sweet', 'Ppotto', 'Lycopin-9', eight in globe tomato, 'Lovely 240', 'Dotaerang Dia', 'Cupirang', 'Dotaerang Master', 'Super Dotaerang', 'Dotaerang Season', 'Miroku', 'Hoyong', and three in root stock, 'Special', 'Fighting', and 'Magnet'.

키워드

참고문헌

  1. Bailey, D. M. 1941. The seedling test method for root-knot nematode resistance. Proc. Amer. Soc. Hort. Sci. 38: 573-575.
  2. Barham, W. S. and Winstead, N. N. 1957. Inheritance of resistance to root-knot nematodes in tomatoes. Proc. Amer. Soc. Hort. Sci. 69: 372-377.
  3. Barker, K. R., Carter, C. C. and Sasser, J. N. 1985. Methodology of an advanced treatise on Meloidogyne. North Carolina State University Graphics.
  4. Berthou, F., Ba-Diallo, A., Maeyer, L. de, and Guiran, G. de. 1989. Characterization of virulent (Mi gene resistance breaking) biotypes of root-knot nematodes Meloidogyne Goeldi (Tylenchida) in two vegetable growing areas of Senegal. J. Agronomie. 9: 877-884. https://doi.org/10.1051/agro:19890905
  5. Gilbert, J. C. and McGuire, D. C. 1956. Inheritance of resistance to severe root-knot from Meloidogyne incognita in commercial type tomatoes. Proc. Amer. Soc. Hort. Sci. 68: 437-442.
  6. Goggin, F. L., Williamson, V. M. and Ullman, D. E. 2001. Variability in the response of Macrosiphum euphorbiae and Myzus persicae (Hemiptera: Aphididae) to the tomato resistance gene Mi. Environ. Entomol. 30: 101-106. https://doi.org/10.1603/0046-225X-30.1.101
  7. Jacquet, M., Bongiovanni, M., Martinez, M., Verschave, P., Wajnberg, E. and Castagnone-Sereno, P. 2005. Variation in resistance to the root-knot nematode Meloidogyne incognita in tomato genotypes bearing the Mi gene. Plant Pathol. 54: 93-99. https://doi.org/10.1111/j.1365-3059.2005.01143.x
  8. Kim, D. G. 2001. Occurrence of root-knot nematodes on fruit vegetables under greenhouse conditions in Korea. Res. Plant Dis. 7: 69-79. (In Korean)
  9. Kim, D. G., Choi, D. R. and Lee, S. B. 2001a. Effects of control methods on yields of oriental melon in fields infested with Meloidogyne arenaria. Res. Plant Dis. 7: 42-48. (In Korean)
  10. Kim, D. G., Lee, Y. G. and Park, B. Y. 2001b. Root-knot nematode species distributing in greenhouses and their simple identification. Res. Plant Dis. 7: 49-55. (In Korean)
  11. Kim, H. H., Cho, M. R., Kang, T. J., Jung, J. A. and Han, Y. K. 2010. Screening of tomato cultivars resistant to root-knot nematode. Meloidogyne incognita. Res. Plant Dis. 16: 294-298. (In Korean) https://doi.org/10.5423/RPD.2010.16.3.294
  12. Ministry of Food, Agriculture, Forestry, and Fisheries. 2013. http:// library.mifaff.go.kr/skyblueimage/7204.pdf
  13. Park, S. D., Kwon, T. Y., Jun, H. S. and Choi, B. S. 1995. The occurrence and severity of damage by root-knot nematode (Meloidogyne incognita) in controlled fruit vegetable field. RDA J. Agric. Sci. 37: 318-323. (In Korean)
  14. Rhoades, H. L. 1976. Effects of Indigofera hirsuta on Belonolaimus longicaudatus, Meloidogyne incognita, and M. javanica and subsequent crop yield. Plant Dis. Reptr. 60: 384-386.
  15. Roberts, P. A., Dalmasso, A., Cap, G. B. and Castagnone-Sereno, P. 1990. Resistance in Lycopersicon peruvianum to isolates of Mi gene-compatible Meloidogyne populations. J. Nematol. 22: 585-589.
  16. Rossi, M., Goggin, F. L., Milligan, S. B., Kaloshian, I., Ullman, D. E. and Williamson, V. M. 1998. The nematode resistance gene Mi of tomato confers resistance against the potato aphid. Proc. Natl. Acad. Sci. 95: 9750-9754. https://doi.org/10.1073/pnas.95.17.9750
  17. Southey, J. F. 1986. Laboratory methods for work with plant and soil nematodes. London: Her Majesty's Stationery Office.
  18. Taylor, A. L. and Sasser, J. N. 1978. Biology, identification and control of root-knot nematodes (Meloidogyne species). North Carolina State Univ. Raleigh. 111 pp.
  19. Tisserat, N. 2006. Root knot nematode of tomato. Fact sheets tomato. Extension plant pathology -Kansas State University, Manhattan. http://www.plantpath.ksu.edu/pages/extention.
  20. Williamson, V. M. and Hussey, R. S. 1996. Nematode pathogenesis and resistance in plants. Plant Cell 8: 1735-1745. https://doi.org/10.1105/tpc.8.10.1735

피인용 문헌

  1. Role of Lytic Enzymes Secreted by Lysobacter capsici YS1215 in the Control of Root-Knot Nematode of Tomato Plants vol.55, pp.1, 2015, https://doi.org/10.1007/s12088-014-0499-z
  2. Biological Control of Meloidogyne hapla Using an Antagonistic Bacterium vol.30, pp.3, 2014, https://doi.org/10.5423/PPJ.OA.02.2014.0013