DOI QR코드

DOI QR Code

Phytosociological Community Type Classification and Stand Structure in the Forest Vegetation of Hongdo Island, Jeollanam-do Province

전라남도 홍도 산림식생의 식물사회학적 군락유형분류와 임분 구조

  • Kim, Ho-Jin (Department of Forest Resource, Kongju National University) ;
  • Shin, Jae-Kwon (Department of Plant Conservation Division, Korea National Arboretum) ;
  • Lee, Cheul-Ho (Department of Plant Conservation Division, Korea National Arboretum) ;
  • Yun, Chung-Weon (Department of Forest Resource, Kongju National University)
  • 김호진 (공주대학교 산림자원학과) ;
  • 신재권 (국립수목원 산림자원보존과) ;
  • 이철호 (국립수목원 산림자원보존과) ;
  • 윤충원 (공주대학교 산림자원학과)
  • Received : 2018.05.14
  • Accepted : 2018.06.19
  • Published : 2018.09.30

Abstract

The study was carried out to discover the forest vegetation structure in Hongdo Island, Jeonnam province. Vegetation data were collected by total of forty one quadrate plots using Z-M phytosociological method from June to August in 2017, and analyzed by vegetation classification, mean importance value and species diversity. As a result of vegetation type classification, Castanopsis sieboldii community group was classified at a top level of vegetation hierarchy. In the level of community, it was classified into Neolitsea sericea community and Carpinus turczaninowii community. N. sericea community was subdivided into Ficus erecta group(Vegetation unit 1) and Arisaema ringens group(VU 2). C. turczaninowii community was subdivided into Fraxinus sieboldiana group(VU 3) and C. turczaninowii typical group(VU 4). Therefore, it was classified into total of four vegetation units(one community group, three communities and four groups). As a result of mean importance value, Castanopsis sieboldii was the highest in VU 1, VU 2, VU 4, and C. turczaninowii in VU 4, respectively. In case of species diversity, VU 3 showed the highest among four units in species diversity index. In conclusion, the forest vegetation of Hongdo Island was classified into four units and seven species groups. Hongdo Island could be conclusively managed by community ecological approach for the units and groups. Also it was considered that a research for the succession to the evergreen broad-leaved forest should be more intensively proceeded near future.

본 연구는 전남 홍도를 대상으로 하여 산림식생구조를 밝힐 목적으로 2017년 6월부터 8월까지 총 41개소의 방형구를 설치하여 식생조사를 수행하였고, 식물사회학적 방법으로 식생유형을 분류하고 분류된 식생단위별 상대중요치와 종다양도를 산출하였다. 산림식생유형분류 결과 최상위수준에서 구실잣밤나무군락군으로 분류되었으며, 군락단위에서는 참식나무군락, 소사나무군락으로 분류되었다. 참식나무군락은 천선과나무군(식생단위 1), 큰천남성군(식생단위 2)으로 세분되었고, 소사나무군락은 쇠물푸레나무군(식생단위 3)과 소사나무전형군(식생단위 4)으로 세분되어, 총 4개의 식생단위가 분류되었고, 1개의 군락군, 2개의 군락, 4개의 군으로 분류되었다. 식생단위별 평균상대중요치 분석 결과 식생단위 1, 2, 4는 구실잣밤나무의 평균상대중요치가 가장 높았고 식생단위 3은 소사나무가 가장 높았다. 종다양도 분석 결과 식생단위 3이 가장 높은 종다양도를 나타내었다. 따라서 홍도 일대는 4개의 식생단위와 7개의 종군단위를 바탕으로 한 군집생태학적 접근의 관리방안이 필요하며, 또한 상록활엽수림으로 진행되어가는 천이연구가 이루어져야 할 것으로 사료되었다.

Keywords

References

  1. Borbour, M.G., Buck, J.H. and Pitts, W.D. 1980. Terrestrial plant ecology. 2nd ed. The Benjamin Cummings Publishing Company. Menlo Park, California, USA, pp. 604.
  2. Braun-Blanquet, J. 1964. Pflanwensoziologie Gründzuge der vegetationskunde. 3rd ed. Springer-Verlag. Wien, New York, USA, pp. 865. (in German)
  3. Brower, J.E. and Zar, J.H. 1977. Field and Laboratory Methods for General Ecology. Wm. C. Brown Company. Iowa, USA, pp. 288.
  4. Cho, M.G., Chung, J.M. Jung, H.R., Kang, M.Y. and Moon, H.S. 2012. Vegetation structure of Taxus cuspidata communities in subalpine zone. Journal of Agriculture & Life Sciences 46(5): 1-10. (in Korean with English abstract)
  5. Choi, B.K. 2013. Syntaxonmy and Syngeography of Warm-Temperate Evergreen Broad-leaved Forests in Korea. Daegu. Keimyung National University. (in Korean with English abstract)
  6. Curtis, J.T. and McIntosh, R.P. 1951. An upland forest continuum in the prairie-forest border region of Wis-consin. Ecology 32(3): 476-496. https://doi.org/10.2307/1931725
  7. Dierssen, K. 1990. Einfuhrung in die Pflanzensoziologie. Akadmie Verlag. Berlin, Germany, pp. 241. (in German)
  8. Ellenberg, H. 1956. Aufgaben and Methoden der Vegetationskunde. Ulmer. Stuttgart, Germany, pp. 136. (in German)
  9. Hill, M.O. 1979. TWINSPAN-A FORTRAN Program for Arranging Multivariate Data in an Ordered Two-way Table by Classification of the Individuals and Attributes. N.Y. Cornell University Press. Ithaca, USA, pp. 50.
  10. Hong, S.C., Byen, S.H. and Kim, S.S. 1987. Colored Illustrations of Tree and Shrub in korea. Gyemyengsa. korea, pp. 310. (in Korean)
  11. Kim, H.J., Shin, J.K., Lee, C.H. and Yun, C.W. 2017. Community structure of forest vegetation in Mt. Geumsusan belong to Woraksan National Park. Korean Journal of Environment and Ecology 31(2): 202-219. (in Korean with English abstract) https://doi.org/10.13047/KJEE.2017.31.2.202
  12. Kim, H.S., Cho, Y.J., Myeong, H.H. and Oh, J.G. 2016a. A community distribution on forest vegetation of Daehuksan Island in the Dadohaehaesang National Park. Journal of Korean island 28(2): 203-219. (in Korean with English abstract)
  13. Kim, H.Y. and Cho, H.J. 2017. Vegetation composition and structure of Sogwang-ri forest genetic resources reserve in Uljin-gun, Korea. Korean Journal of Environment and Ecology 31(2): 188-201. (in Korean with English abstract) https://doi.org/10.13047/KJEE.2017.31.2.188
  14. Kim, C.S. 1986. Studies on the Flora and Vegetation of Hongdo Island. Bulletin of Institute of Littoral Biota. Mokpo National College 3: 1-36. (in Korean with English abstract)
  15. Kim, C.S. 1987. Studies on the Flora and Vegetation of Hongdo Island. Report of the academic survey of Hongdo Nature Reserve. Sinan-gun, Korea, pp. 88-175. (in Korean)
  16. Kim, J.S., Jeon, C.H., Jung, S.C., Kim, C.S. Won, H.G., Cho, J.H. and Cho, H.J. 2016b A Comparison of species composition and stand structure of the forest vegetation between inhabited and uninhabited Island in the South Sea, Korea. Korean Journal of Environment and Ecology 30(4): 771-782. (in Korean with English abstract) https://doi.org/10.13047/KJEE.2016.30.4.771
  17. Kim, J.W. 1996. Floristic characterization of the temperate oak forest in the Korean Peninsula using high-rank taxa. Journal of Plant Biology 39(2): 149-153. (in Korean)
  18. Kim, J.W. 2004. The Forest Vegetation. World Science. Seoul, Korea, pp. 308. (in Korean)
  19. Kim, J.W. and Lee, Y. K. 2006. Classification and Assessment of Plant Communities. World Science. Seoul, Korea, pp. 240. (in Korean)
  20. Korea Forest Service (KFS). 2014a. Korea Biodiversity Information System. http://www.nature.go.kr. (in Korean)
  21. Korea Forest Servic (KFS). 2014b. Korea Plant Names Index Committee. http://www.nature.go.kr. (in Korean)
  22. Korea Forest Service (KFS). 2017. Forest Genetic Resources Reserve Designated Status. http://www.forest.go.kr. (in Korean)
  23. Korea Meteorological Administration (KMA). 2017. http://www.kma.go.kr. (in Korean)
  24. Kwag, K.H., Kim, E.I., Kim, C.Y. and An, K.W. 2016. The stand management of forest genetic resource reserve in the South-Western region of Korea - Focused on Mt. Cheongwan forest genetic resource reserve -. Journal of Korean island 28(4): 173-191. (in Korean with English abstract)
  25. Lee, J.H. 2014. A Study of the Characteristics of the Vegetation of the Hongdo Natural Preserve - Species and Vegetation Composition of Natural Heritage No.170-. (Ph.D. Dissertation). Daejeon. Chungnam National University. (in Korean with English abstract)
  26. Lee, J.H. and Choi, B.H. 2010. Distribution and Northernmost limit on the korean peninsula of three evergreen trees. Korean Journal of Plant Taxonomy 40(4): 267-273. (in Korean with English abstract) https://doi.org/10.11110/kjpt.2010.40.4.267
  27. Lee, J.H., Do, M.S. and Song, H.K. 2013. Vegetation structure of Hongdo Island. Korean Korean Journal of Environment and Ecology 27(5): 592-613. (in Korean with English abstract) https://doi.org/10.13047/KJEE.2013.27.5.592
  28. Lee, J.H., Kwon, H.J. Hwang, Y, Kim, M.Y., Lee, C.H. and Song, H.K. 2010a. Vegetation structure of warm temperate evergreen broad-leaved forest in Gageodo, Korea. Journal of Korean Environmental Restoration Technology 13(6): 75-86. (in Korean with English abstract)
  29. Lee, J.H., So, S.K., Suh, G.U., Kim, M.Y. and Song, H.K. 2010b. Vegetation and soil properties of warm temperate evergreen broad-leaved forest in Hongdo, Korea. Korean Korean Journal of Environment and Ecology 24(1): 54-61. (in Korean with English abstract)
  30. Lee, J.Y., Myeong, H.H., Lee, S.M., Kim, H.S. and Oh, J.G. 2015. A study on the current distribution of vegetation of Gageodo, Jeollanamdo. Journal of Korean island 27(1): 195-210. (in Korean with English abstract)
  31. Lee, T.B. 2003. Coloured Flora of Korea. Hyangmunsa. Seoul, Korea, pp. 999. (in Korean)
  32. Lee, T.B. and Kim, T.W. 1968. Report of the Academic Survey of Mt. Hanlasan and Hongdo Natural Conservatory Area : Natural Monument No. 182 and 170. Culture and Public Information, Seoul, Korea, pp. 308-359. (in Korean)
  33. Lee, W.C. and Yim, Y.J. 1978. Studies on the distribution of vascular plants in the Korean peninsula. Korean Journal of Plant Taxonomy 8: 1-32. (in Korean with English abstract) https://doi.org/10.11110/kjpt.1978.8.1.001
  34. Müller-Dombois, D. and Ellenberg, H. 1974. Aims and Method of Vegetation Ecology. John Wiley & Sons. New Jersey, USA, pp. 547.
  35. Oh, K.K. and Cho, W. 1994. Plant community structrue of warm temperate evergreen broad-leaved forest in Hongdo, Korea. Korean Journal of Environment and Ecology 8(1): 27-42. (in Korean with English abstract)
  36. Oh, K.K. and Choi, S.H. 1993. Vegetation structure and successional sere of warm temperate evergreen forest region, Korea. Journal of Ecology and Environmental 16(4): 459-476. (in Korean with English abstract)
  37. Oh, K.K. and Kim, Y.S. 1996. Restoration model of evergreen broad-leaved forest in warm temperature region(1)- vegetational structure- Korean Journal of Environment and Ecology 10(1): 87-102. (in Korean with English abstract)
  38. Shannon, C.E. and Weaver, W. 1949. The mathematical theory of communication. University of Illinois. Illinois, USA, pp. 144.
  39. Shin, H.S. and Yun, C.W. 2014. Characteristics of species composition community structure for the forest vegetation of Mt. Ohseo in Chungnam province. Jounal of Korean Environmental Restoration Technology 17(3): 35-51. (in Korean with English abstract) https://doi.org/10.13087/kosert.2014.17.3.35
  40. Shin, J.H. and Kim, C.M. 1996. Ecosystem classification in Korea (I). FRI Journal of Forest. Science 54: 188-199. (in Korean with English abstract)
  41. Son, H.J., Kim, Y.S., Ahn, C.H. and Park, W.G. 2016. Analysis of the flora and vegetation community in forest genetic resources reserves(Mt. Daeseng, Juparyeong), near the DMZ. Journal of Korean Society of Forest Science 105(1): 19-41. (in Korean with English abstract) https://doi.org/10.14578/jkfs.2016.105.1.19
  42. Walter, H. 1979. Vegetation of the Earth and Ecological Systems of the Geo-biosphere. 2nd ed. Springer-verlag. New York, USA, pp. 274.
  43. Whittaker, R.H. 1965. Dominance and diversity in land plant communities. Science. 147: 250-260. https://doi.org/10.1126/science.147.3655.250
  44. Yim, K.B. and Kim, C.S. 1974. Pinus densiflora S. et Z. Population in Hong-do Island in Korea. Journal of Korean Society of Forest Science 24: 53-61. (in Korean with English abstract)
  45. Yun, C.W. 2016. Field Guide to Trees and Shrubs. Geobook. Seoul, Korea, pp. 703. (in Korean)

Cited by

  1. 거제도 천장산 일대 상록활엽수림의 식물군집구조 특성 vol.33, pp.6, 2018, https://doi.org/10.13047/kjee.2019.33.6.708
  2. 공주대학교 학술림(석장리동 일대)의 산림식생구조 vol.34, pp.6, 2018, https://doi.org/10.13047/kjee.2020.34.6.573
  3. 인천 및 경기도 도서지역 소사나무림 군집구조분석 연구 - 석모도, 영종도, 영흥도 및 대부도를 대상으로 - vol.35, pp.1, 2018, https://doi.org/10.13047/kjee.2021.35.1.68
  4. 봉화 선달산 산림유전자원보호구역의 산림식생 유형 vol.110, pp.1, 2018, https://doi.org/10.14578/jkfs.2021.110.1.1