울릉도 미역고사리(Polypodium vulgare L.) 자생지의 입지환경특성

Habitats Environmental Characteristics of Polypodium vulgare L. in Ulleung-do

  • 투고 : 2011.07.13
  • 심사 : 2012.01.26
  • 발행 : 2012.02.28

초록

본 연구는 희귀식물로 지정되어 있는 울릉도 미역고사리의 자생지 환경을 조사하여 보전 및 복원 시 기초자료를 제공하고자 하였다. 조사결과 미역고사리의 자생지는 해발고도 410~748m 범위와 경사 $12{\sim}80^{\circ}$의 암석지에 주로 생육하는 것으로 조사되었다. 식생분석결과 4개 지역의 10개 방형구내에서 조사된 관속식물은 총 66분류군이었다. 자생지 상층수목 중 교목층의 중요치는 고로쇠나무(49.52%)가 아교목층은 당마가목(28.99%)이 가장 높았으며, 관목층은 바위수국(51.99%), 섬쥐똥나무(8.82%), 너도밤나무(7.25%)가 높은 값을 보였다. 초본층은 미역고사리가 23.23%로 가장 높았으며, 다음으로는 큰두루미꽃(9.65%), 파리풀(9.23%), 관중(8.40%), 산꼬리사초(6.75%), 섬바디(5.42%) 등이 높은 값을 보여 이 종류들이 친화도가 높은 것으로 판단된다. 종다양도는 1.18로 산출되었으며, 우점도와 균등도는 각각 0.11와 0.84로 확인되었다. 토양분석 결과 토성은 사양토로 나타났으며, 포장용수량은 30.42%, 유기물함량은 17.95%, pH는 4.70으로 측정되었다. 환경특성과 식생 및 토양분석 결과에 기초한 상관분석에서는 종다양도와 종풍부도는 정의 상관관계를 보였고, 종다양도와 우점도 그리고 미역고사리의 피도와 종풍부도는 부의상관관계를 형성하였다.

The habitats characteristics of Polypodium vulgare L. in Ulleung-do were investigated to compile basic data for conservation and restoration. Natural habitats were located at altitudes of 410~748m with inclinations of $12{\sim}80^{\circ}$. Sixty six vascular plants were identified from 10 quadrats in 4 habitats. Dominant species among the woody plants, based on importance value, were Acer pictum subsp. mono(49.52%) in the tree (T1) layer, Sorbus amurensis(28.99%) in the subtree (T2) and Schizophragma hydrangeoides(51.99%), Ligustrum foliosum(8.82%), Fagus engleriana(7.25%) in the shrub (S) layer. Importance value for members of the herb (H) layer were as follows: Polypodium vulgare 23.23%; Maianthemum dilatatum 9.65%; Phryma leptostachya var. asiatica 9.23%; Dryopteris crassirhizoma 8.40%; Carex shimidzensis 6.75% and Dystaenia takesimana 5.42%. The importance value of the last five species were high, so they were at affinity with Polypodium vulgare in their habitats. Species diversity was 1.18, and dominance and evenness were found to be 0.11 and 0.84, respectively. The soil types were sandy loam. Average field capacity was 30.42%, and the organic matter and pH were 17.95%, and 4.70. Correlation coefficients based on environmental factors, vegetation and soil analysis were showed that positive correlations between species diversity and species richness, whereas between species diversity and dominance, coverage of Polypodium vulgare and species richness were showed negative correlations.

키워드

참고문헌

  1. Ahn, J.K., H.C. Lee, C.H. Kim, D.O. Lim and B.Y. Sun(2008) Phylogeny and conservation of the genus Bupleurum in Northeast Asia with special reference to B. latissimum, endemic to Ulleung island in Korea. Kor. J. Env. Eco. 22(1): 18-34. (in Korean with English abstract)
  2. Allen, S.E.(1989) Chemical analysis of ecology materials(2nd ed.). Blackwell Scientific Publications, Oxford.
  3. Barbour, M.G., J.H. Burk and W.D. Pitts(1987) Terrestrial plant ecology(2nd ed.). The Benjamin Publishing Company Inc., California.
  4. Brower, J.R. and J.H. Zar(1977) Field and laboratory method for general ecology. Wm. C. Brown Co. Publ., Iowa.
  5. Buurman, P., van Langen and E.J. Velthorst(1996) Manual for soil and water analysis. Backhuys Publishers, Leidin, pp. 58-61.
  6. Choi, S.H., K.J. Lee and J.Y. Kim(1998) Altitudinal vegetation structure of Sunginbong in Ullungdo(Island). Kor. J. Env. Eco. 12(3): 290-296. (in Korean with English abstract)
  7. Curtis, J.T. and R.P. MaIntoshi(1951) An upland forest optimum in the prairie forest bolder region Wisconsin. Ecology 9: 161-166.
  8. Ellenberg, H.(1956) Grundlagen der vegetationsgliederung. T. I. Aufgaben und Methoden der Vegetationskunde. In Walter. H.(Hrsg.) Einfubrung in die Phytologie IV. Stuttgart, 136pp.
  9. Feodoroff, A. and R. Betriemieux(1964) Une methods de laboratorire pour la determination de la capacite au champ. Science du sol, 109pp.
  10. Frankham, R.(1996) Do island populations have less genetic variation than mainland population? Heredity 78: 311-327.
  11. Han, K.S., M.Y. Kim, G.U. Suh, H.J. Kwon and H.K. Song(2010) Vegetation and soil properties of Scrophularia takesimensis population in Ulleung island. J. Korean Env. Res. Tech. 13(1): 24-31. (in Korean with English abstract)
  12. Hughes, L.(2000) Biological consequences of global warming: is the signal already apparent. Trends Ecol. Evol. 15: 56-61.
  13. IPPC(2001) Working Group 1, Intergovernmental panel on climate change. In Third assessment report. IPPC, Geneva.
  14. Jeong, J.H., K.S. Koo, C.H. Lee and C.S. Kim(2002) Physicochemical properties of Korean forest soils by regions. Jour. Korean. For. Soc. 91(6): 694-700. (in Korean with English abstract)
  15. Ju, J.H. and K.J. Bang(2005) Effects of irrigation times and soil media on the growth and physiological characteristics of native fern Asplenium scolopendrium. Journal of the Korean Institute of Landscape Architecture 32(6): 109-116. (in Korean with English abstract)
  16. Kalra, Y.P. and D.G. Maynard(1991) Methods manual for forest soil and plant analysis. Forestry Canada, Northwest Region, Northern Forestry Centre, Edmonton, CA.
  17. Kim, J.H., K.H. Suh, Y.S. Choung, K.S. Lee, S.D. Koh, J.S. Lee, B.S. Ihm, H.T. Mun, K.H. Cho, H.S. Lee, Y.H. You, B.M. Min, C.S. Lee, E.J. Lee and K.H. Oh(2007) Current Ecology. Kyomunsa, Seoul. (in Korean)
  18. Kim, M.Y., S.K. So, H.R. Park, E.K. Seo, H.J. Kwon and H.K. Song(2006) Ecology of Bupleurum latissimum population. J. Korean Env. Res. & Reveg. Tech. 9(6): 78-85. (in Korean with English abstract)
  19. Korea Forest Research Institute(1997) Illustrated rare and endangered species in Korea. Korea Forest Research Institute, Daejeon. (in Korean)
  20. Korea National Arboretum and The Korean Society of Plant Taxonomists(2007) A synonymic list of vascular plants in Korea. Korea National Arboretum, Pocheon. (in Korean)
  21. Korea National Arboretum(2008a) Illustrated Pteridophytes of Korea. Korea National Arboretum, Pocheon. (in Korean)
  22. Korea National Arboretum(2008b) Rare plants data book in Korea. Korea National Arboretum, Pocheon. (in Korean)
  23. Lee, H.N.(1980) A study of the plant communities analysis of the Mt. Hanla based on the species diversity index. Master thesis, Ewha Womans Univ., Seoul. (in Korean with English abstract)
  24. Lee, M.J., H.K. Song and S. Lee(2000) Study on classification of forest vegetation of Songinbong and Taeharyong in Ullungdo -With a special reference to TWINSPAN and phytosociological Method-. Kor. J. Env. Eco. 14(1): 57-66. (in Korean with English abstract)
  25. Lee, T.B.(2003) Coloured flora of Korea. Hyangmunsa, Seoul. (in Korean)
  26. Lee, W.T.(1996a) Lineamenta Flarae Koreae. Academy Publishing Co., Seoul. (in Korean)
  27. Lee, W.T.(1996b) Standard illustrations of Korean plants. Academy Publishing Co., Seoul. (in Korean)
  28. Lee, Y.N.(2006) New flora of Korea. Kyohaksa, Seoul. (in Korean)
  29. Lim, J.A.(2004) A systematic study of Korean Polypodiaceae. Master thesis, Chonbuk National Univ., Jeonju. (in Korean with English abstract)
  30. Lim, J.A., C.H. Kim, M.J. Kwak and B.Y. Sun(2006) Spore morphology of Korean Polypodiaceae. Korean J. Pl. Taxon. 36: 1-19. (in Korean with English abstract)
  31. MacArthur, J.W. and E.O. Wilson(1967) The theory of island biogeography. Princeton University Press, Princeton.
  32. Ministry of Environment(2006) The investigation guide for specially designed species by floristic region(3rd ed.). National Natural Environment Survey, Incheon. (in Korean)
  33. National Academy of Agricultural Science(2011) http://soil.rda.go.kr/ (Accessed 1 June 2011).
  34. Oh, B.U., D.G. Jo, K.S. Kim and C.G. Jang(2005) Endemic vascular plants in the Korean peninsula. Korea National Arboretum, Pocheon. (in Korean)
  35. Park, S.H.(2009) New illustrations and photographs of naturalized plants of Korea. Ilchokak, Seoul. (in Korean)
  36. Park, S.J., G.J. Hwang, S.J. Park and S.W. Son(2007) The study of naturalized plants in Ulleungdo. Kor. J. Env. Eco. 21(1): 1-12. (in Korean with English abstract)
  37. Pearson, K.(1895) Mathematical contributions to the theory of evolution, On homotyposis in homologous but differentiated organs. Proceedings of the Royal Society of London 71: 288-313.
  38. Pielou, E.C.(1975) Mathematical ecology. John Wiley & Sons, New York, 385pp.
  39. Schollenberger, C.J.(1927) A rapid approximate method for determining soil organic matter. Soil Sci. 24: 65-68.
  40. Shannon, C.E. and W. Weaver(1963) The mathematical theory of communication. Univ. Illinois Press, Urbana.
  41. Shin, H.C., N.C. Park and K.O. Choi(2010) Light responses and introduction plan of the native evergreen 'Filicales plant' into the interior landscape space. J. Kor. Soc. People Plants Environ. 13(6): 109-116. (in Korean with English abstract)
  42. Simpson, E.H.(1949) Measurement of diversity. Nature 163: 688.
  43. Systat Software Inc.(2004) SYSTAT 11. Systat Software Inc., Chicago.
  44. Terborgh, J.(1999) Requiem for Nature. Island Press, Washington, D. C.
  45. Townsend, C.R., M. Begon and J.L. Harper(2008) Essentials of ecology(3rd ed.). Blackwell Publishing, Oxford.
  46. Whittaker, R.H.(1965) Dominance and diversity in land plant communities. Science 147: 250-260.
  47. Wilcove, D.S., D. Rothstein, J. Dubow, A. Phillips and E. Losos(1998) Quantifying threats to imperiled species in the United States. BioScience 48: 607-615.