Rapid diagnosis and control of sulfonylurea resistant Monochoria korsakowii

Sulfonylurea계 제초제 저항성 물옥잠의 조기진단과 방제

  • Park, Tae-Seon (Department of Agricultural Biology, National Institute of Agricultural Science and Technology, RDA) ;
  • Moon, Byeong-Chul (Department of Agricultural Biology, National Institute of Agricultural Science and Technology, RDA) ;
  • Cho, Jeong-Rae (Department of Agricultural Biology, National Institute of Agricultural Science and Technology, RDA) ;
  • Kim, Chang-Suk (Department of Agricultural Biology, National Institute of Agricultural Science and Technology, RDA) ;
  • Kim, Moo-Sung (College of Life Science & Center for Oriental Medicinal Materials and Processing, Kyunghee University) ;
  • Kim, Kil-Ung (Dept. of Agronomy, College of Agriculture, Kyungpook National University)
  • 박태선 (농업과학기술원 농업생물부) ;
  • 문병철 (농업과학기술원 농업생물부) ;
  • 조정래 (농업과학기술원 농업생물부) ;
  • 김창석 (농업과학기술원 농업생물부) ;
  • 김무성 (경희대학교 생명과학대학) ;
  • 김길웅 (경북대학교 농업생명과학대학)
  • Published : 2004.03.30

Abstract

Sulfonylurea(SU)-resistant Monochoria korsakowii has resently been found in rice fields in Korea. A quick, practical and accurate test of confirming herbicide resistance is necessary to take timely management decision. This article describes a rapid reliable assay to detect SU-resistant biotype of Monochoria korsakowii. Up to now, the resistance to SU has been usually checked by application seedlings with herbicide. This application technique is time consuming and not practical. Therefore, we have developed efficient, rapid and practical diagnosis which allow easy detection of the SU-resistant Monochoria korsakowii by survival rate and regenerated plant length to herbicide application after cutting plants $0.5\sim1cm$ from the planted surface. This new rapid diagnosis can determine the SU resistance of the Monochoria korsakowii within 7 days at least. If the resistance of Monochoria korsakowii is identified by the rapid diagnosis, the selection of herbicide according to the stages of plants for the effective control is very important. The resistant biotype which treated with SU herbicide-based mixtures survived from the fields could effectively be controlled by soil application of butachlor+pyrazolate GR or by foliar application of the mixtures of bentazone SL and 2,4-D SL.

Sulfonylurea(SU)계 제초제에 대한 저항성 물옥잠이 최근 한국에서 발생되고 있는데, 저항성 물옥잠 을 시기적절하게 효과적으로 방제하기 위해서는 신속 정확하고 실용적인 조기진단법 개발이 매우 중요하다. 지금까지 제초제 저항성 검증은 종자를 파종하여 어린식물에 제초제를 살포하는 방법을 사용하였으나 이러한 방법은 많은 시간이 소요될 뿐만 아니라 비실용적이다. 그러나 본 연구는 지표로부터 $1\sim2cm$에서 식물체를 절단한 다음 제초제를 처리하여 식물체의 생존율과 재생된 초장에 의하여 저항성을 검증하는 신속 정확한 새로운 방법이다. 이 새로운 조기진단법에 의하여 SU계 제초제 저항성 물옥잠은 적어도 7일 이내 저항성 검증이 가능하였다. 제초제 저항성이 진단되면 잡초를 효과적으로 방제하기 위해서는 식물 생육 단계에 맞는 제초제를 선발하는 것이 매우 중요하다. SU계 혼합 제초제 처리 후 생존한 저항성 물옥잠은 butachlor+pyrazolate 입제나 bentazone 액제와 2,4-D 액제를 혼용하여 처리하는 것이 효과적이었다.

Keywords

References

  1. Carol, A., M. Smith, D. C. Thrill , M. I. Dial, and R. S Zemetra (1990) Inheritance of sulfonylurea herbicide resistance in Lactua spp. Weed Tech. 4:787-790
  2. Cavan, G. and S. Moss R. (1997) Herbicide resistance and gene flow in black- grass (Alopecurus myosuroides) and wild-oats avena spp.). 1997 Brighton crop protection conference: weeds. Proceedings of an international conference, Brighton, UK, 17-20 November 1997. 1:305-310
  3. Christoffoleti, P. J. and P. Westra (1994) Competition effects with mixed stands of wh않t and kochia(Kochia scoparia) biotypes resistant and susceptible to acetolactase synthase synthase inhibitor herbicides. Scientia Agricola. 51:245-251
  4. Donald, L. W. (1992) Future impact of crops with modified herbicide resistance. Weed Tech. 6:665-668
  5. Dyer, W. E., P. W. Chee, and P. K. Fay (1993) Rapid germination of sulfonylurea -resistant Kochia scoparia L. accessions is associated with elevated seed levels of branched chain amino acids. Weed Sci. 41:18-22
  6. Genetic analysis of mutants of Saccharomyces cerevisiae resiatsnt to the herbicide sulfometurn-methyl. Genetics. 109:21-35
  7. Gerwick, B. C., L. C. Mireles, and R. J. Eilers (1993) Rapid diagnosis of ALS/AHAS-resistant weeds. Weed Tech. 7:519-524
  8. Gressel, J. and L. A. Segel (1990) Modelling for the effectiveness of herbicide rotations and mixtures as strategies to delay or preclude resistance. Weed Tech. 4:186-198
  9. Hall, J. C. and M. L. Romano (1995) Morphological and physiological differences between the auxinic herbicide-susceptible (S) and resistant and Physiol. 52:149-155.(R) wild mustard (Sinapis arvensis L.) biotypes. Pesticide Biochem
  10. Heap, I. (1997) The occurrence of herbicide-resistant weeds worldwide. Pestic. Sci. 51:235- 243
  11. Heap, I. (2003) International Survey of Herbicide Resistant Weeds. Heap, I. 2002. International Survey of Herbicide Resistant. Weeds. http://www.weedscience. org/in.asp
  12. Hensley, J. R. (1981) A method for identification of triazine resistant and susceptible biotypes of several weeds. Weed Sci. 29:70-73
  13. Itoh, K. and K. Ito (1994) Weed ecology and its control in south-east tropical countries. Japanese Journal of Tropical Agriculture. 38:369-373
  14. Itoh, K., G. X. Wang, H. Shibaike, and K. Matsuo (1999) Habitat management and inhertance of sulfonylurea resistance in Lindernia micratha, an annual paddy weed in Japan. Proc. 17th APWSS Com. pp.537- 543, Bangkok
  15. Koarai, A., (2000) Dianosis of susceptibility of sulfonylurea herbicides on Monochoria vaginalis, an annual paddy weed in Japan. J. Weed Sci. & Tech. 45 suppl.(1):40-41
  16. Kohara, H., K. Konno and M. Takekawa (1999) Occurrence of sulfonylurea -resistant biotypes of Scripus juncodies Roxb. var. ohwianus T. Koyama in paddy fields of Hokkaido perfecture, Japan. J. Weed Sci. &. Tech. 4(3):228-235
  17. Leckie, D., A. Smithson, and I. R. Crut. (1993) Gene movement from oilseed rape to weedy populations a component of risk assessment for transgenic cultivars. Aspects of Applied Biology. 35:61-66
  18. Malik, R. K., H. Brown, G. W. Cussans, M. D. Devine,S. O. Duken, C. F. Quintanilla, A. Helweg, R. E. Labrada, M. Landes, P. Kudsk, and J.C. Streibig (1996) Herbicide resistant weed problems in developing world and methods to overcome them. Proceedings of the second international weed control congress, Copenhagen, Denmark, 25- 28 June 1996. 1-4:665-673
  19. Park, T. S., C. S. Kim, J. P. Park, Y. K. Oh, and K. U. Kim (1999) Resistant biotype of Monochoria korsakowii against sulfonylurea herbicides in the reclainled paddy fields in Korea. proc. 17th APWSS Conf. pp.251-254, Bangkok
  20. Van. O., and P. H. Van Leeuwen (1992) Use of fluorescence induction to diagnose resistance of Alopecurus myosuroides Huds.(black-grass) to chlortoluron. Weed Res. 1:19-31
  21. Wang, G. X., H. Kohara and K. Itoh (1997) Sulfonylurea resistance in a biotype of Monochoria korsakowii, an annual paddy weed in Japan. Brighton Crop Protection Conference - Weeds 1:311-318
  22. Yoshida, S., K. Onodera, T. Soeda, Y. Takeda, S. Sasaki and H. Watanabe (1999) Occurrence of Scirps juncodies subsp. ohwianus, resistant to sulfonylurea herbicides in Miyagi Prefecture . J. Weed Sci. & Tech. 44 suppl., pp.70-71
  23. 박태선, 권오도, 김창석, 박재읍, 김길웅 (1999) 한국 수도답에서 sulfonylurea 제초제에 대한 저항성 물달개비 출현. 한국잡초학회지(별) 19(2):71-73
  24. 박태선, 김창석, 문병철, 이인용, 임순택, 박재읍, 김길웅 (2001) 한국 남부지방 논에서 sulfonylurea 계 제초제에 대한 저항성 미국외풀 (Lindernia dubia(L.) Pennell var. dubia) 발생과 방제. 한국잡초학회지 21(1):33-41
  25. 박태선, 권오도, 이도진, 변종영 (2001) Sulfonylurea 계 제초제 저항성잡초 연구 현황과 전망. 한국잡초학회지 21(2):99-109
  26. 박태선, 이인용, 박재읍. (2003) 한국에서 제초제 저항성 잡초 발생현황과 대책. 한국잡초학회지 23(1):1-10