DOI QR코드

DOI QR Code

Differences in Emergence and Growth of an Exotic Weed Quamoclit coccinea Moench under Different Environment Conditions

환경조건에 따른 외래잡초 둥근잎유홍초의 출현과 생육 차이

  • Jang, Se Ji (Department of Oriental Medicine Resources, Sunchon National University) ;
  • Lee, In-Yong (National Institute of Agricultural Sciences, RDA) ;
  • Kuk, Yong In (Department of Oriental Medicine Resources, Sunchon National University)
  • 장세지 (순천대학교 한약자원개발학과) ;
  • 이인용 (국립농업과학원) ;
  • 국용인 (순천대학교 한약자원개발학과)
  • Received : 2018.05.18
  • Accepted : 2018.06.20
  • Published : 2018.06.30

Abstract

This study was carried out to investigate the differences in germination and growth of Quamoclit coccinea Moench under various temperatures, seeding depths, and levels of shading and soil moisture for effective weed management. Seed dormancy of Q. coccinea Moench was over 1 year; best results were obtained when seeds were soaked in sulfuric acid for 15 minutes in order to break the dormancy. Germination rates of Q. coccinea Moench ranged from 69 to 73% at $25-35^{\circ}C$ and 26% at $15^{\circ}C$. The germination rates ranged from 70-84% at 2, 3, 5, 7, and 8 cm of seeding depths. In addition, the germination rates were 7% and 13% at 12 cm and 15 cm of seeding depths, respectively, and showed normal growth at the both seeding depths. Q. coccinea Moench showed a high germination rate regardless of shading levels, but shoot fresh weight varied depending on the level of shading as follows: 20%>no shading=shading 35%>shading 50%>shading 75%=shading 90%. Q. coccinea Moench did not germinate when soil had a saturation rate of either 30% or 100%. However, 60-83% of seeds germinated with optimal growth when soil had saturation rates of 60% and 80%.

본 연구는 다양한 온도, 파종심도, 차광 및 토양수분함량 조건 하에서 둥근잎유홍초의 발아와 생육에 차이를 구명하여 효과적인 관리방법을 개발하는데 필요한 기초 자료로 사용하고자 수행하였다. 둥근잎유홍초 종자휴면은 1년 이상이었고, 휴면타파를 위해서는 황산에 15분 침지하는 것 가장 좋았다. 둥근잎유홍초 종자의 발아율은 $25-35^{\circ}C$에서 69-73%, $15^{\circ}C$에서 26%를 보였다. 파종 심도별 발아율은 2, 3, 5, 7, 8 cm 파종깊이에서 70-84%이었으나 12 cm와 15 cm 파종깊이에서는 각각 7%와 13%에 불과하였다. 둥근잎유홍초 종자는 무차광과 차광 정도와 상관없이 높은 발아율을 보였으나, 지상부 생체중은 차광 20%>무차광=차광 35%>차광 50%>차광 75%=차광90% 순으로 높았다. 토양수분은 포화상태의 30%와 100%조건에서는 둥근잎유홍초 종자는 발아하지 않았고, 포화상태의 60%와 80%에서 60-83%의 발아율과 최적의 생장을 보였다.

Keywords

References

  1. Aldrich, R.J. and Kremer, R.J. 1997. Principles in weed management. Iowa state university press, Iowa, USA. pp. 105-132.
  2. Andow, D.A. 2003. Proceeding of international seminar on biological invasions environmental impacts and the developmental impacts and the development of a database for the Asian-pacific region. pp. 1-28. Tsukuba, Japan.
  3. Buhler, D.D. and Hoffman, M. L. 1999. Anderson's guide to practical methods of propagating weeds & other plants. p. 37. Weed Science Society of America. Kansas, USA.
  4. CBD (Convention on Biological Diversity). 2009. Invasive alien species. pp. 6-9. Convention on Biological Diversity, Montreal, Canada.
  5. Hong, D.O., Lee, C.W., Kim, H.Y., Kang, J.H., Ryu, Y.S., et al. 2006. Shading effect on growth and flowering of Orostachys japonicus A. Berger. Kor. J. Med. Crop Sci. 14:239-243. (In Korean)
  6. Kil, J.H., Hwang, S.M., Lee, D.H., Kim, D.E., Kim, Y.H., et al. 2012. Alien species in Korea. pp. 250-257. Geobook, Seoul, Korea. (In Korean)
  7. Kim, C.S., Chung, Y.J., Lee, I.Y., Lee, J.R., Song, H.G., et al. 2015a. Distribution of exotic weeds on crop fields in Jeju-do. Weed Turf. Sci. 4(3):236-242. (In Korean) https://doi.org/10.5660/WTS.2015.4.3.236
  8. Kim, C.S., Lee, I.Y., Lee, J.R. and Oh, Y.J. 2015b. Illustrated ochard weed book. p. 236. National Academy of Agricultural Science, Jeonju, Korea. (In Korean)
  9. Kim, J.W., Lee, I.Y. and Lee, J.R. 2017. Distribution of invasive alien species in Korean croplands. Kor. J. Weed Turf. Sci. 6(2):117-123. (In Korean) https://doi.org/10.5660/WTS.2017.6.2.117
  10. Kim, M.T., Lee, Y.H., Jeon, W.T., Kim, J.S., Yun, D.H., et al. 2013. Effects of water-soaking and mechanical and chemical scarifications on seed germination of hairy vetch (Vicia villosa Roth). Kor. J. Soil Sci. Fert. 46(1):49-52. (In Korean) https://doi.org/10.7745/KJSSF.2013.46.1.049
  11. Kim, S.K. 2001. Effect of shading and growing medium on growth characteristic and leaf color of several Orostachys species native to Korea. MS Thesis. Chungbuk Univ., Cheongju, Korea. (In Korean)
  12. Lee, I.Y., Oh, Y.J., Hong, S.H., Choi, J.K., Heo, S.J., et al. 2015. Weed flora diversity and composition on upland field of Korea. Kor. J. Weed Turf. Sci. 4(3):159-175. (In Korean) https://doi.org/10.5660/WTS.2015.4.3.159
  13. Mayer, A.M. and Shin, Y. 1974. Control of seed germination. Ann. Rev. Plant Physiol. 25:167-171. https://doi.org/10.1146/annurev.pp.25.060174.001123
  14. Moon, W. and Pyo, H.K. 1981. Effects of various levels of shade on the growth of some cool season vegetables. Hort. Environ. Biotech. 22:153-159. (In Korean)
  15. Oh, D.G., Shim, D.B., Song, S.H., Oh, J.H., Hong, S.H., et al. 2015. Effects of soil moisture condition and shading on growth of invasive plant bur cucumber (Sicyos angulatus L.). Kor. J. Weed Turf. Sci. 4(4):315-320. (In Korean) https://doi.org/10.5660/WTS.2015.4.4.315
  16. Oh, S.M., Kim, C.S., Moon, B.C. and Lee, I.Y. 2002. Inflow information and habitat current status of exotic weeds in Korea. Kor. J. Weed Sci. 22(3):280-295. (In Korean)
  17. Raju, M.V.S. and Steeves, T.A. 1998. Growth, anatomy, and morphology of the mesocotyl and the growth of appendages of the wild oat (Avena fatua L.) seedling. J. Plant Research. 111(1):73-85. https://doi.org/10.1007/BF02507152
  18. SAS (Statistical Analysis System). 2000. SAS/STAT Users Guide, Version 7. Statistical Analysis System Institute, Cary, NC, USA.
  19. Schafer, D.E. and Chilcote, D.O. 1970. Factors influencing persistence and depletion in buried seed populations. II. The effect of soil temperatures sand moisture. Crop Sci. 10:342-345. https://doi.org/10.2135/cropsci1970.0011183X001000040007x
  20. Seo, S.W. 2010. Emergence of morning glory spp. in soy bean field in Aichi prefecture, Japan. J. Weed Sci. Tech. 55:157-165. (In Japanese)
  21. Wesson, G. and Wareing, P.F. 1969. The role of light in the germination of naturally occurring populations of buried weeds. J. Expt. Bot. 20:402-413. https://doi.org/10.1093/jxb/20.2.402
  22. Yang, H.S., Kim, D.S., Park, S.H. 2004. Weeds of Korea: Morphology ․ Physiology ․ Ecology. pp. 108-111. Ijeonnong-eobjawondoseo, Seoul, Korea. (In Korean)