DOI QR코드

DOI QR Code

식물군락구조와 사회연결망분석을 통한 식물사회네트워크 분석 - 무등산국립공원을 대상으로 -

The Plants Social Network through the Analysis of the Plant Community Structure and the Social Network - Conducted in Mudeungsan National Park -

  • 장정은 (부산대학교 대학원 조경학과) ;
  • 이상철 (부산대학교 응용생태연구실) ;
  • 강현미 (목포대학교 조경학과) ;
  • 유승봉 (국립수목원 DMZ자생식물연구과) ;
  • 신해선 (부산대학교 대학원 조경학과) ;
  • 최송현 (부산대학교 조경학과)
  • 투고 : 2020.12.24
  • 심사 : 2021.04.08
  • 발행 : 2021.04.28

초록

환경과 식물, 식물과 식물 간의 관계에 초점을 맞추어 식물사회를 이해하기 위해 식물사회학적 방법과 사회연결망 분석을 결합한 식물사회네트워크 분석이 연구되고 있다. 식물사회네트워크는 다양한 환경에서의 식물사회 분석과 기존의 종간결합분석 방법과 비교가 필요하다. 본 연구는 무등산국립공원을 대상으로 식생구조분석을 실시하고 기존의 종간결합분석과 식물사회네트워크를 비교 하였다. 식생조사를 위해 옛길 2구간을 대상으로 60개 조사구를 설치하여 매목조사를 실시하였다. TWINSPAN과 DCA 분석결과 60개 조사구는 해발고 800m를 기준으로 졸참나무-소나무군락(군락 I), 신갈나무군락(군락 II)으로 나누어졌다. 출현빈도 30%이상인 수종 간 상관관계분석과 DCA분석을 실시한 후 각 군락별 주요수종을 중심으로 결과를 비교하였는데, 졸참나무와 소나무, 신갈나무는 각각 -0.450**, -0.375**로 높은 부(-)의 상관관계를 가지고 있었으며, DCA에서도 1축을 따라 졸참나무와 소나무는 가까이, 신갈나무와는 멀리 배치된 것을 확인할 수 있었다. 식물사회네트워크분석을 위해 40개 조사구를 추가하여 100개 조사구에 출현수종을 조사하였다. 네트워크 구조 분석결과, 378개의 연결선이 나타났고, 한 수종 당 평균 6종과 결합을 가졌다. 밀도는 0.097, 지름은 7, 평균 경로거리는 2.788로 나타났다. 식물사회네트워크 분석은 기존 종간결합분석과 비교하였을 때 결과가 유사하게 나타났으며, 기존의 분석법보다 많은 양의 데이터 분석이 가능하고 식물사회 구조 관찰에 용이했다.

Plants Social Network(PSN) analysis combines the plant sociological method and the social network analysis to understand plant society focusing on environmental-to-plant and plant-to-plant relationships. PSN is at an early stage of research and require comparing plant society analyses in various environments and existing interspecies binding analysis. This study conducted a vegetation structural analysis of Mudeungsan National Park and compared the existing interspecies connection analysis with the PSN. A total of 60 plots were established for a survey on the Old Trail. The TWINSPAN and DCA analysis showed that the 60 survey plots were divided into the Quercus serrata-Pinus densiflora community (Community I) and the Quercus mongolica community (Community II) based on an altitude of 800 meters. We performed the interspecies correlation with more than 30% emergence frequency and the DCA analysis and compared the results with a focus on the major species in each colony. The results showed that Quercus serrata had a correlation of -0.450** and -0.375** with Pinus densiflora and Quercus mongolica, respectively. The DCA analysis also confirmed that Quercus serrata was located close to Pinus densiflora and far from Quercus mongolica along one axis. For the PSN analysis of PSN, 40 survey plots were added to investigate the species appearing in a total of 100 survey plots. The network structural analysis showed 378 links and a species having an average of 6 interspecies bindings. The density was 0.097, the diameter was 7, and the average path distance was 2.788, similar to the PSN analysis results of the Busan Metropolitan City. The plant social network analysis showed similar results to the existing interspecies combination analysis, enabling analyzing more data than the existing methods and observing the structure of plant society.

키워드

참고문헌

  1. Braun-Blanquet, J.(1965) Plant Sociology: The Study of Plant Communities(1st ed.). G.D. Fuller and H.S. Conard trans., Hafner, New York, 493pp.
  2. Byeon, S.Y. and C.W. Yun(2017) Classification of Community Type by Physiognomy Dominant Species, Floristic Composition and Interspecific Association of Forest Vegetation in Mt. Oseosan. Journal of Korean Forest Society 106(2): 169-185. https://doi.org/10.14578/JKFS.2017.106.2.169
  3. Cha, Y.J. and S.H. Chun(2002) Vegetational structure of dwarf bamboo and its effects on the developmental stages of deciduous forests in clearcutting sites. Kor. J. Env. Eco. 16(2): 149-159. (in Korean with English abstract)
  4. Cho, H.J., J.H. Cho and C.S. Lee(2000) Classification of vegetation units and its detailed mapping for urban forest management. Journal of Korean Forest Society 89(4): 470-479.
  5. Cho, H.J., Y.W. Lee, D.S. Lee and S.C. Hong(1991) Forest Vegetation of Mt. Baek-Hwa-A Phytosociological Study-. Journal of Korea Forest Society 80(1): 42-53. (in Korean with English abstract)
  6. Cho, H.S. and S.H. Choi(2002) Plant Community Structure of the Baekcheon Valley in Taebaeksan Area, the Baekdudaegan. Kor. J. Env. Eco. 15(4): 368-378. (in Korean with English abstract)
  7. Choi, S.H. and H.M. Kang(2006) Vegetation Structure of the Kumsaenggol in the Wolchulsan National Park. Kor. J. Env. Eco. 20(4): 464-472. (in Korean with English abstract)
  8. Choi, S.H., J.O. Kwon and K.J. Lee(1997) Plant Community Strucutre in the Sinhungsa-Wasondae Area, Soraksan National Park. Korean Journal of Environment and Ecology 10(2): 270-282. (in Korean with English abstract)
  9. Freeman, L.C.(1978) Centrality in social networks conceptual clarification. Social Networks 1(3): 215-239. (in English) https://doi.org/10.1016/0378-8733(78)90021-7
  10. Hill, M.O.(1979a) DECORANA-a FORTRAN program for detrended correspendence analysis and reciprocal averaging. Ecology and Sysmematics, Cornel Univ., Ithaca, New York, 520pp.
  11. Hill, M.O.(1979b) TWINSPAN-a FORTRAN program for arranging multivariate data in an ordered two-way table by classification of the individuals and attributes. Ecology and Systematics, Cornel Univ., Ithaca, New York, 990pp.
  12. Jeong, B.K. and C.H. Oh(2013) Analysis on the Community Structure of Quercus mongolica Fisch. ex Ledeb. in the Baekdudaegan Mountains by Elevation-Between Hyangnobong and Gitdaebaggybong-. Kor. J. Env. Eco. 27(4): 449-461. (in Korean with English abstract)
  13. Kikuzawa, K.(2005) Ecology of Leaf Longevity-from Individual Leaves to Ecosystems-. Kyoritsu Pub., 212pp. (in Japanese)
  14. Kim, C.S. and J.G. Oh(1993) Phytosociological Study on the Vegetation of Mt. Mudeung. Korean Journal of the Ecological Society 16(1): 93-114. (in Korean with English abstract)
  15. Kim, H.J. and C.W. Yun(2009) A Study on the Forest Vegetation Classification and Analysis of Interspecific Association in Mt. Munsu and Mt. Okseok. Journal of Korean Forest Society 98(4): 379-391.
  16. Kim, H.J. and G.T. Kim(2016) Flowering, Fruiting, Seed Fall and Seed Viability of Acer pseudosieboldianum in Mt. Jungwang, Gangwondo. Journal of Korea Forest Society 105(1): 42-47. (in Korean with English abstract) https://doi.org/10.14578/JKFS.2016.105.1.42
  17. Kim, J.W. and Y.K. Lee(2006) Classification and Assessment of Plant Communities. World Science Press, Seoul, 240pp.
  18. Kim, S.H. and R.S. Chang(2010) The Study on the Research Trend of Social Network Analysis and the its Applicability to Information Science. Journal of the Korean Society for Information Management 27(4): 71-87. https://doi.org/10.3743/KOSIM.2010.27.4.071
  19. Kim, T.Y. and J.S. Kim(2018) Woody plants of Korean Peninsula. Dolbegae Publications, Paju, 716pp. (in Korean)
  20. Kim, Y.S. and S.Y. Shim(2019) Evaluation of vegetation recovery after restoration works at the Jungbong and Nuebong Area, Mdeungsan National Park. Korea Journal of Environment and Ecology 33(1): 64-74. (in Korean with English abstract)
  21. Korea National Park Service(2015) Strategic Planning for Restoring the Degraded Ecosystems of Mudeungsan National Park. 324pp.
  22. Lee, D.C., K.K. Shim, S.H. Choi and K.J. Lee(1994) Plants Community Structure Analysis of Lindera erythrocarpa Native Forest in the Central Korea(I). Journal of Korean Institute of Landscape Architecture 22(2): 133-157. (in Korean with English abstract)
  23. Lee, H.J., D.W. Byun and C.H. Kim(1998) Analysis of Interspecific Association and Ordination on the Forest Vegetation of Mt. Odae. Korean Journal of Environment and Ecology 21(3): 291-300. (in Korean with English abstract)
  24. Lee, K.J., B.H. Han, H.G. Lee and T.H. Noh(2012) Management planning and change for nineteen years (1993-2011) of plant community of the Pinus densiflora S. et Z. Forest in Namhan Mountain Fortress, Korea. Kor. J. Env. Eco. 26(4): 559-575. (in Korean with English abstract)
  25. Lee, K.J., S.H. Choi, H.S. Cho and Y.W. Lee(1994) The Analysis of the Forest Community Structure of Tokyusan National Park-Case Study of Paekryunsa-Kumpotan-. Korean Journal of Environment and Ecology 7(2): 135-154. (in Korean with English abstract)
  26. Lee, K.W. and K.K. Oh(1995) Actual vegetation and plant community structure of urban forest in Kwangju metropolitan city. Journal of the Korean Institute of Landscape Architecture 23(2): 148-156. (in Korean with English abstract)
  27. Lee, S.C., H.M. Kang, S.H. Choi, S.G. Park and C.Y. Yu(2016) The Change of Vegetation Structure by Slope and Altitude in Taebaeksan Provincial Park. Korean Journal of Environment and Ecology 30(3): 376-385. (in Korean with English abstract) https://doi.org/10.13047/KJEE.2016.30.3.376
  28. Lee, S.C., S.H. Choi and W. Cho(2020) A Study of Visualization and Analysis Method about Plants Social Network Used for Planting Design. Korean Journal of Environment and Ecology 34(3): 259-270. (in Korean with English abstract) https://doi.org/10.13047/KJEE.2020.34.3.259
  29. Lee, S.C., S.H. Choi, H.M. Kang, H.S. Cho and J.W. Cho(2010) The change and structure of altitudinal vegetation on the east side of Hallasan National Park. Korean Journal of Environment and Ecology 24(1): 26-36. (in Korean with English abstract)
  30. Lim, D.O., D.H. Choi and H.G. Yun(2015) Distribution Characteristics and Dynamics of the Lindera sericea Population at Mt. Mudeung, Mt. Cheonbong and Mt. Chogye. Korea Journal of Environment and Ecology 29(4): 570-579. (in Korean with English abstract) https://doi.org/10.13047/KJEE.2015.29.4.570
  31. Makita, A.(1992) Survivorship of a monocarpic bamboo grass, Sasa kurilensis, during the early regeneration process after mass flowering. Ecological Research 7: 245-254. https://doi.org/10.1007/BF02347093
  32. Manhas, R.K., M.K. Gautam and D. Kumari(2009) Two Way Indicator Species Analysis (TWINSPAN) of the Herbaceous Vegetation in an Inland Wetland Ecosystem of Doon Valley Himalaya, India. Journal of Wetlands Ecology 3: 23-31.
  33. Marin, A. and B. Wellman(2011) Social Network Analysis: An Introduction. In: J. Scott and P.J. Carringto(eds.), The SAGE Handbook of Social Network Analysis. Thousand Oaks, California, pp. 11-25.
  34. Min, S.H.(2018) Flora and Vegetation Structure among in Yeonhwa Provincial Park. Master's thesis, Univ. of Gyeongnam National of Science and Technology, Jinju, 70pp.
  35. Moreno, J.(1934) Who shall survive? New York, Beacon Press, 755pp. (in English)
  36. Nakashizuka, T.(1984) Regeneration process of climax beech(Fagus crenata) forests I. Structure of a beech forest with the undergrowth of Sasa. Jpn. J. Ecol. 32: 57-67.
  37. Oh, K.K. and S.G. Park(2001) Edge Vegetation Structure of Trail in Kyeryongsan National Park, Korea. Korean Journal of Environment and Ecology 14(4): 280-286. (in Korean with English abstract)
  38. Orloci, L.(1978) Multivariate Analysis in vegetation research(2nd ed.). Junk Publishing, The Hague, 468pp.
  39. Park, S.G. and S.H. Choi(2017) Why does draft bamboo bloom once in a lifetime on a large scale and then die?-Analysis of external environmental factors of draft bamboo flowering area and its life strategy-. Kor. J. Env. Eco. 31(6): 564-577. (in Korean with English abstract)
  40. Park, Y.B.(2019) A study on the vegetation restoration plan of the pasture in Mudeungsan National Park, Korea. Master's thesis, Chonbuk National University, 74pp. (in Korean with English abstract)
  41. Peter, P., T. Nakashizuca and T. Ohkubo(1992) Regeneration and development in beech-dwarf bamboo forest in Japan. For. Ecol. and Manag. 55: 35-50. https://doi.org/10.1016/0378-1127(92)90090-V
  42. Scott, J.(2000) Social network analysis: A hand book. SAGE Publications, London, 208pp. (in English)
  43. Shim, S.Y.(2017) Evaluation of vegetation recovery after restoration works in Mudeungsan National Park, Master's thesis, Honam University, 82pp. (in Korean with English abstract)
  44. Ter Braak, C.J.F.(1986) Canonical Correspondence Analysis: A New Eigenvector Technique for Multivariate Direct Gradient Analysis. Ecology 67(5): 1167-1179. https://doi.org/10.2307/1938672
  45. Wasserman, S. and K. Faust(1994) Social Network Analysis-Methods and Applications. Cambridge University Press, 857pp. (in English)
  46. Whittaker, R.H.(1956) Vegetation of the great smokymountains. Ecol. Monography 26: 1-80.
  47. Woo, S.Y., D.G. Kim and D.S. Lee(2000) Effects of Air Pollution on Physiological Characteristics of Styrax japonica in Yeochon Industrial Complex. Journal of Korean Society for Atmospheric Environment 16(2): 121-128. (in Korean with English abstract)
  48. Yu, S.B., S.H. Choi, S.G. Park, H.M. Kang, S.C. Lee, H.Y. Shim and K.S. Song(2018) Ecological characteristics and vegetation structure of Mt. Daedun Provincial Park-Focusing on Ansim temple area-. Korea Journal of Environment and Ecology 32(6): 646-657. (in Korean with English abstract)