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Herbicidal Activity of Naturally Developed d-Limonene against Sicyos angulatus L. under the Greenhouse and Open Field Condition

온실 및 노지조건에서 천연물질 d-Limonene의 가시박에 대한 살초활성

  • Kang, Chung-Kil (Organic Agriculture Division, Department of Agro-Food Safety, National Academy of Agricultural Science, RDA) ;
  • Oh, Young-Joo (Organic Agriculture Division, Department of Agro-Food Safety, National Academy of Agricultural Science, RDA) ;
  • Lee, Sang-Beom (Organic Agriculture Division, Department of Agro-Food Safety, National Academy of Agricultural Science, RDA) ;
  • Lee, Byung-Mo (Organic Agriculture Division, Department of Agro-Food Safety, National Academy of Agricultural Science, RDA) ;
  • Nam, Hong-Shik (Organic Agriculture Division, Department of Agro-Food Safety, National Academy of Agricultural Science, RDA) ;
  • Lee, Yong-Ki (Organic Agriculture Division, Department of Agro-Food Safety, National Academy of Agricultural Science, RDA) ;
  • Jee, Hyeong-Jin (Organic Agriculture Division, Department of Agro-Food Safety, National Academy of Agricultural Science, RDA) ;
  • Hong, Moo-Ki (Organic Agriculture Division, Department of Agro-Food Safety, National Academy of Agricultural Science, RDA) ;
  • Koo, Suk-Jin (Moghu Research Center, Ltd.)
  • 강충길 (농촌진흥청 국립농업과학원 농산물안전성부 유기농업과) ;
  • 오영주 (농촌진흥청 국립농업과학원 농산물안전성부 유기농업과) ;
  • 이상범 (농촌진흥청 국립농업과학원 농산물안전성부 유기농업과) ;
  • 이병모 (농촌진흥청 국립농업과학원 농산물안전성부 유기농업과) ;
  • 남홍식 (농촌진흥청 국립농업과학원 농산물안전성부 유기농업과) ;
  • 이용기 (농촌진흥청 국립농업과학원 농산물안전성부 유기농업과) ;
  • 지형진 (농촌진흥청 국립농업과학원 농산물안전성부 유기농업과) ;
  • 홍무기 (농촌진흥청 국립농업과학원 농산물안전성부 유기농업과) ;
  • 구석진 (목우연구소)
  • Received : 2011.11.02
  • Accepted : 2011.11.29
  • Published : 2011.12.31

Abstract

This experiment was conducted to Investigate the herbicidal activity of naturally developed d-Limonene on the control of Sicyos angulatus L. which is destructive to biodiversity and ecosystem under greenhouse and open field condition. Among the tested concentrations, most efficacy of early foliar application(leaf stage with 1.5 and 3) of d-Limonene was found in $70mg\;mL^{-1}$, followed by $35mg\;mL^{-1}$, $17.5mg\;mL^{-1}$ in that order under greenhouse condition. The higher the d-Limonene concentration, the better the effect in greenhouse condition. In leaf stage with 2, 3 and 5 under open field condition, the higher the d-Limonene concentrations, the higher the weeding effect. The remarkable effect was, particularly, found in d-Limonene with $70mg\;mL^{-1}$ while little was found in the plants with d-Limonene with $35mg\;mL^{-1}$. In the case of 15 leaf stage of S. angulatus L. treated with d-Limonene under outside treatment effect was low. The treatment effect of d-Limonene under open field compared with greenhouse condition was more significant. It can be recommended that d-Limonene with $70mg\;mL^{-1}$ could control S. angulatus L. by 5 leaf stage.

생물다양성과 생태계를 파괴하는 문제잡초인 가시박을 천연물질인 d-Limonene을 이용하여 방제하고자 시험한 결과 온실에서는 본엽 1.5 엽기 및 3엽기 경엽처리시 처리농도가 높으면 높을수록 살초효과가 현저하였다. 노지에서는 본엽 2엽기, 3엽기, 5엽기까지는 처리농도가 높으면 높을수록 그 효과가 현저하였다. 특히, d-Limonene의 $70mg\;mL^{-1}$ 처리시 뚜렷한 방제효과를 보였으나 17.5, $35mg\;mL^{-1}$ 저농도에서는 효과가 다소 낮았다. 또한 노지에서의 본엽 15엽기 내외는 d-Limonene의 방제효과가 낮았다. 온실조건에 비하여 노지조건에서 d-Limonene의 처리효과가 우수하였다. 가시박 방제를 위해 d-Limonene 처리시 가시박 5엽기 까지는 $70mg\;mL^{-1}$을 처리하는 것이 방제효과가 가장 현저할 것으로 판단되었다.

Keywords

References

  1. Bainard, L. D., and M. B. Isman. 2006. Phytotoxicity of clove oil and its primary constituent eugenol and the role of leaf epicuticular wax in the susceptibility to these essential oils. Weed Science 54:833-837. https://doi.org/10.1614/WS-06-039R.1
  2. Bayer, E., K. H. Gugel, K. Hagele, H. Hagenmaier, S. Jessipow, W. A. Konig and H. Zahner. 1972. Stoffwechselproduct von Mikroorganismen 98. Mitteilung (1) Phosphinothricin und phosphinothrithylalanylalanin. Helvetica Chimica Acta. 55:224-239. https://doi.org/10.1002/hlca.19720550126
  3. Copping, L., and S. O. Duke. 2007. Review:Natural products that have been used commercially as crop protection agents. Pest Management Sci. 63:524-554. https://doi.org/10.1002/ps.1378
  4. Duke, S. O., H. K. Abbas, T. Amagasa and T. Tanaka. 1996. Phytotoxins of microbial origin with potential for use as herbicides, in Copping LG (ed.), Crop Protection Agents from Nature:Natural Production and Analogues, Critical Reviews on Applied Chemistry, Vol. 35. Society for Chemical Industries, Cambridge, UK, pp. 82-113.
  5. Esbenshade, W. R., W. S. Curran, G. W. Roth and M. D. Orzolk. 2001a. Effect of establishment date and crop competition on burcumber fecundity. Weed Science 49:524-527. https://doi.org/10.1614/0043-1745(2001)049[0524:EOEDAC]2.0.CO
  6. Esbenshade, W. R., W. S. Curran, G. W. Roth, N. L. Hartwig and M. D. Orzolek. 2001b. Effect of tillage, row spacing, herbicide on the emergence and control of burcumber (Sicyos angulatus) in soybean (Glycine max). Weed Technology 15:229-235. https://doi.org/10.1614/0890-037X(2001)015[0229:EOTRSA]2.0.CO
  7. Esbenshade, W. R., W. S. Curran, G. W. Roth, N. L. Hartwig and M. D. Orzollek. 2001c. Effect of row spacing and herbicides on burcumber (Sicyos angulatus) control in herbicide-resistant corn (Zea mays). Weed Technology 15:348-354. https://doi.org/10.1614/0890-037X(2001)015[0348:EORSAH]2.0.CO
  8. Fukuda, M., Y. Tsujino, T. Fujimori, K. Wakabayashi and P. Böger. 2004. Phytotoxicity activity of middlechain fatty acids I:effect on cell constituents. Pesticide Biochemistry and Physiol. 80:143-150. https://doi.org/10.1016/j.pestbp.2004.06.011
  9. Gibson, K. D., W. G. Johnson and D. E. Hillger. 2005. Famer preception of problematic corn and soybean weeds in Indiana. Weed Technology 19:1065-1070. https://doi.org/10.1614/WT-04-309R.1
  10. Kang. 2009. Sicyos angulatus and ecological disturbing plants. Korean J. of Weed Science 29 (Supplement 2):3-10.
  11. Kang, C. K., H. S. Nam, S. B. Lee, B. M. Lee, Y. J. Oh, K. J. Choi, M. K. Hong and S. J. Koo. 2010a. Development of naturally d-Limonene with different concentrations and application timing for control of Sicyos angulatus L. Korean J. of Weed Science 30 (Supplement 1):97-98.
  12. Kang, C. K., H. S. Nam, S. B. Lee, B. M. Lee, Y. J. Oh, K. J. Choi, M. K. Hong and J. S. Choi. 2010b. Development of naturally Chrysophanic acid with different concentrations and application timing for control of Sicyos angulatus L. Korean J. of Weed Science 30 (Supplement 1):99-100.
  13. Kang, C. K., S. B. Lee, B. M. Lee, H. S. Nam, Y. K. Lee, H. J. Jee, M. K. Hong, Y. D. Rho and J. S. Choi. 2011. Herbicidal activity of natural compound Chrysophanic acid under the green condition. Korean J. of Weed Science 31(1):112-117. https://doi.org/10.5660/KJWS.2011.31.1.112
  14. Kang, C. K., Y. J. Oh, S. B. Lee, B. M. Lee, H. S. Nam, Y. K. Lee, H. J. Jee, M. K. Hong and S. J. Koo. 2010c. Herbicidal activity of Sicyos angulatus as influenced by foliar treatment of naturally d-Limonene with different application timing and concentrations. Korean J. of Weed Science 30 (Supplement 2):90.
  15. Kim D. S., and S. H. Park. 2009. Weeds of Korea(I). pp. 628-629.
  16. Kim S. M., H. Y. Kim, K. H. Hwang and I. J. Chun. 2008. Herbicidal Activity of Essential Oil from Glechoma hederacea. Korean J. Weed Science 28(2):152-160.
  17. Lee, I. Y., S. M. Oh, B. C. Moon, O. Kwon, C. S. Kim, J. S. Soh, J. E. Park and J. B. Oh. 2006. Weeding effect of Sicyos angulatus and Amaranthus spinosis by several herbicides.. Korean J. of Weed Science 26 (Supplement 2):27-29.
  18. Lederer, B., T. Fujimori, Y. Tsujino, K. Wakabayashi and P. Böger. 2004. Phytotoxicity activity of middlechain fatty acids II:peroxidation and membrane effects. Pesticide Biochemistry and Physiol. 80: 151-156. https://doi.org/10.1016/j.pestbp.2004.06.010
  19. Liu, D. L., and L. E. Christians. 1994. Isolation and identification of root-inhibiting compounds from corn gluten hydroysate on Lolium perenne. Hore. Sci. 32:243-245.
  20. Malkomes, H. P. 2006. Microbiological-ecotoxicological soil investigations of two herbicidal fatty acid preparation used with high dosages in weed control. Umwelwissenschaften Schadstoff-Forschung. 18:13-20. https://doi.org/10.1065/uwsf2005.10.107
  21. Miller, T. W. 2003. Field testing of natural herbicides in the Pacific Northwest. Abstracts of Papers, 225th ACS National Meeting, New Orleans, LA, 2003 AGRO-064. American Chemical Society, Washington DC.
  22. Moon B. C., T. S. Park, J. R. Cho, S. M. Oh and J. E. Park. 2005. Biology and distribution of bircucumber (Sicyos angulatus). Korean J. of Weed Science 25 (Supplement 2):128-131.
  23. Moon B. C., T. S. Park, J. R. Cho, S. M. Oh, C. K. Kang and J. E. Park. 2006. Emergence ecology of bircucumber (Sicyos angulatus) and weeds distribution in its community. Korean J. of Weed Science 26 (Supplement 2):64-68.
  24. Quarles, W. 1999. Non-toxic weed control in the lawn and garden. Common Sense Pest Cont.
  25. Satoh, A., T. Murakami, H. Takebe, S. Imai and H Seto. 1993. Industrial development of bialaphos, a herbicide from the metabolites of Streptomyces hygropicus SF 1293. Actinomycetologica 7:128-132. https://doi.org/10.3209/saj.7_128
  26. Smeda, R. J., and S. C. Weller. 2001. Biology and control of burcumber. Weed Science 49:99-105. https://doi.org/10.1614/0043-1745(2001)049[0099:BACOB]2.0.CO
  27. Webber, C., M. Harris, J. Sherefler, M. Durnova and C. Christopher. 2005. Vinegar as a burndown herbicide. Proc. 24th Ann. Hortic. Indust. Show, Stillwater, Oklahoma, USA. pp. 168-172.
  28. Young, S. L. 2004. Natural product herbicides for control of annual vegetation along roadsides. Weed Technology 18:580-587. https://doi.org/10.1614/WT-03-094R3

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