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가시오갈피(Eleutherococcus senticosus)개체군의 식생구조와 생태특성

Vegetation Structure and Ecological Properties of Eleutherococcus senticosus Population

  • 정지영 (충남대학교 산림환경자원학과) ;
  • 권재환 (국립공원관리공단) ;
  • 송호경 (충남대학교 산림환경자원학과)
  • Jung, Jiyoung (Dept. of Environment and Forestry Resources, Chungnam National University) ;
  • Gwon, Jaehwan (Korean National Park Service) ;
  • Song, Hokyung (Dept. of Environment and Forestry Resources, Chungnam National University)
  • 투고 : 2013.06.28
  • 심사 : 2013.08.21
  • 발행 : 2013.10.31

초록

This study was conducted to analyze the correlation between vegetation, environmental factors, and soil characteristic of an endangered species, Eleutherococcus senticosus. Eighteen quadrats in population zones of Seoraksan, Odaesan, Chiaksna, Duckhangsan, Sobaeksan, Juwangsan, and, Jirisan were set up and ordination was analyzed. In the study sites, soil pH, available phosphorous, organic matter and nitrogen were ranged from 5.06~5.43, 24.63~57.77mg/kg, 14.01~18.37%, and 0.63~0.75%, respectively. Eleutherococcus senticosus is classified into Morus bombycis dominant population, Cornus controversa dominant population, and Eleutherococcus senticosus typical population. The importance value of Acer pictum subsp. mono, Morus bombycis, Magnolia sieboldii, Cornus controversa, Tilia taquetii, and Ulmus laciniata in Eleutherococcus senticosus population were 23.76%, 23.61%, 18.06%, 17.82, 15.31%, and 13.57%, respectively. The correlation between vegetation and environmental factors of Eleutherococcus senticosus vegetation distribution were shown to be affected by altitude, slope, and direction.

키워드

참고문헌

  1. Black, C. A.․Evans, D. D.․Ensminger, L. E.․ White, J. L. and Clark, F. E. 1965. Methods of Soil Analysis. Part I : Physical and Mineralogical Properties, Including Statistics of Measurement and Sampling. Am. Soc. Agr., Madison, Wl. pp.770.
  2. Braun-Blanquet, J. 1964. Pflanzensoziologie. 3. Auflage. Wien, New York. pp.865.
  3. Brekhman, I. I. 1960. A new medicinal plant of the family Araliaceae the spiny Eleutherococcus. lzvsibrs Opdel. Akad Nauk, U. S. S. R. 9 : 113-120.
  4. Bicklhaupt, D. H. and White, E. H. 1982. Laboratory manual for soil and plant tissue analysis. SUNY Coll. Envir. Sei. and For. Syracuse, N.Y. pp.67.
  5. Cheon, K. S.․Jang, S. K.․Lee, W. T. and Yoo, K. O. 2009. The natural habitat and distribution of Echinosophora koreensis(Nakai) Nakai in Korea. Korean journal of plant taxonomy 39(4):254-263.
  6. Cheon, K. S.․Han, J. S.․Jang, S. K. and Yoo, K. O. 2010. Environmental Characteristics of Habitats of Acanthopanax senticosus. Journal of the Environment 7 : 47-54.
  7. Curtis, J. T. and McIntosh, R. P. 1951. Anj Upland Forest Continuum in the Prairie Forest Border Region of Wisconsin. J. Ecology 32 : 476-496. https://doi.org/10.2307/1931725
  8. Dierssen, K. 1990. Einfugrung in die Pflanzensoziologie. Akademie-Verlag.
  9. Gwon, J, H.․Kwon, H, J. and Song, H. K. 2010. A Study on Vegetation Structure and Soil condition of Leontice microrhyncha Population. Journal of Korea Society of Environmental Restoration Technology 13(3) : 84-93.
  10. Hill, M. O. 1979. DECORANA A FORTRAN program for Dtrended Correspondence Analysis and Peciprocal Averaging. Ithaca, N. Y. Cornell Univ. Press.
  11. Hong, M. P. 2004. Ecological Studies on the Forest Vegetation of Mt. Seorak. KonKuk University graduate school doctor thesis.
  12. Hur, S. D.․Park, Y. H․Lee, K. Y.․Lee, S. K․ Kim, K. C.․Lww, J. J. and Lee, W. Y. 2003. Growth Characteristics at Natural Distribution Areas and Provenance Trials in Acanthopanax senticosus. Proceeding of the Korean Forest Society (Feb) : 221-273.
  13. Jang, H. H. 2001. Eleutherococcus senticosus present production state of fuctional. The Plant Resources Society of Korea 14(1) : 1-9.
  14. Jang, S. K.․Cheon, K. S.․Jeong, J. H.․Kim, Z. S. and You, K. O. 2009. Environmental Characteristics and Vegetation of Megaleranthis saniculifolia Ohwi Habitats. Journal of Korean Society of Environmental Biology 27(3):314-320.
  15. Jung, H. N. 2006. Physiology of Seed Fruiting and Afer-ripening of Native Acanthopanax senticosus. University of Seoul garduate school master thesis.
  16. Jung, J. H.․Koo, K. S. and Kim, C. S. 2002. Physico-chemical Properties of Korean Forest Soils by Regions. Journal of Korean Forest Society 91(6):694-700.
  17. Kim, H. S.․Lee, S. M.․Chung, H. L. and Song, H. K. 2009. A Study of the Vegetation in the Deogyusan National Park - Focused on the deciduous forest at Namdeogyu area. Journal of Korean Society of Environment and Ecology. 23(5):471-484.
  18. Kim, T. H.․Jung, J. H․Lee, C. H․Lee, W. K․ Kang, I. A. and Kim, S. I. 1991. Studies on the Growth of Major Tree Species by Forest Soil Types. The research reports of the forestry research institute 42:91-106.
  19. Korea Forest Service. 2008. Rare plants data book in Korea. pp.291-292.
  20. Lee, J. H. and Song, H. K. 2008. Vegetation Structures and Soil Properties of Osmanthus insularis Community. Journal of Korea Society of Environmental Restoration Technology 11(6) : 61-72.
  21. Lee, S. H.․Choi, J. Y and Lee, Y. M. 2011 Projection of climate change effects on the potential distribution of Abeliophyllum distichum in Korea. Journal of Agricultural Science 38(2) 219-225.
  22. Lee, W. C. 1979. Distribution of Acanthopanax Plants in Korea. Korean Journal of Pharmacognosy 10(3) : 103-107.
  23. Lee, W. C. 1996. Coloured standard illustrations of Korean plants. Academy book.
  24. Miller, H. G. and Donahue, R. L. 1990. Soil. An introduction to soils and plant growth. Prentice-Hall. N. J. pp.768.
  25. Ministry of Environment. 2009. Climeate change and conservation of endangered wild animals and plants. pp.29-40.
  26. Mueller-Dombois, D. and Ellenberg, H. 1974, Aims and methods of vegetation ecology. John Wiley and Sons. pp.54.
  27. Park, K. S. and Lee, S. O. 1990. The Influence of organic Matter on Soil Aggregation in Forest Soils. Journal of Korean Forest Society 79(4) : 367-375.
  28. Park, M. S.․Kim, Y. J․Park, H. K․Jang, Y. S. and Lee, J. H. 1995. Using Air Temperature and Sunshine Duration Data to Select Seed Production Site for Eleutherococcus senticosos Max. Journal of crop science and biotechnology 40(4) : 444-450.
  29. Park, M. S.․Kim, Y. J.․Park, H. K.․Kim, S.․ Kim, G. S and Chang, Y. S. 1996. Habitat Environment of Eleutherococcus senticosus Max. at Mt. Deokyu. Journal of crop science and biotechnology 41(6) : 710-717.
  30. Park, S. Y.․An, Y. H.․Lee, S. C. and Choi, C. H. 2008. Ecological Characteristics and Distributions of Korean Native Magnolia sieboldii at Habitats. Proceeding of the Korean Environmental Science Society Conference (Nov) : 20-22.
  31. Rural Development Administration. 2000. Analysis Method of Soil and Plants.
  32. Rural Development Administration. 2009. Development of technology for production and postharvest management system of eleuthero for improving quality. pp.7-9.
  33. Shim, K. K. and Seo, B. K. 1995. Korean Native Shrubs and Vines in North America Landscape. Korea Association for Flower Industry Development 4(2) : 37-62.
  34. Song, H. K. and Jang, K. K. 1997. Study on the DBH Analysis and Forest Succession of Pinus densiflora and Quercus mongolica Forests. Journal of Korean Forest Society 86(2) : 223-232.
  35. Ter Braak, C. J. F. and Smilauer, P. 1998. CANOCO-Reference Manual and User's Guide to Canoco for Windows. Microcomputer Power, Ithaca, USA pp.352.
  36. Yi, S. 2000. A Study on Characteristic of Forest Vegetation and Site in Mt. Odae. Journal of Korean Forest Society 89(2) : 173-184.