$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

거제도 가라산·노자산 일대 낙엽활엽수림의 생태적 특성 규명
Identification of ecological characteristics of Deciduous broad-leaved forest, Garasan(Mt.)·Nojasan(Mt.) at GeoJae 원문보기

한국환경생태학회지 = Korean journal of environment and ecology, v.35 no.2, 2021년, pp.204 - 219  

이수동 (경상국립대학교 조경학과) ,  조봉교 (경상국립대학교 대학원 도시시스템공학과) ,  이광규 (국립문화재연구소 자연문화재연구실) ,  염정헌 (강릉원주대학교 환경조경학과) ,  오충현 (경상국립대학교 대학원 조경학과)

초록
AI-Helper 아이콘AI-Helper

본 연구는 남해안에 분포하는 양호한 산림 식생의 복원과 관리뿐만 아니라 장기적인 측면에서 기후변화에 따른 변화 경향을 파악하고자 가라산과 노자산 서사면에 분포하는 식생의 식물군집구조 특성을 조사·분석하였다. 86개 조사구를 대상으로 군락을 분류한 결과, 저지대를 중심으로 분포하는 곰솔-굴피나무군락, 곰솔-소나무군락, 계곡부 및 전석지대를 중심으로 출현하는 개서어나무-낙엽활엽수군락, 때죽나무-낙엽활엽수군락, 고로쇠나무-낙엽활엽수군락, 낙엽활엽수군락, 느티나무군락, 상대적으로 해발고가 높고 급경사 사면에 분포하는 졸참나무군락, 졸참나무-때죽나무군락, 때죽나무-소사나무군락, 참회나무군락으로 유형화되었다. 천이경향상 상록침엽수는 낙엽활엽수로의 천이가 진행될 것이나 수령이 약 50년인 개서어나무, 느티나무, 고로쇠나무 등 낙엽활엽교목림은 층위구조가 발달되었을 뿐만 아니라 생태적으로 안정되어 현재의 상태를 유지할 것으로 판단되었다. 환경요인으로는 표고, pH, 점토와 실트의 함량, Mg++, Ca++ 등이 식물 군락 분포에 직간접적으로 영향을 미치는 것으로 분석되었다.

Abstract AI-Helper 아이콘AI-Helper

This study was conducted to investigate and analyze the characteristics of the plant community structure of vegetation distributed on the western slope and ridge connecting Mt. Noja to Mt. Gara. This basic research was executed not only to restore and manage forest vegetation, but also to monitor th...

주제어

표/그림 (17)

참고문헌 (53)

  1. Brower, J.E., J.H. Zar and C. Von Ende(1977) Field and laboratory methods for general ecology. Wm. C. Brown Company. 

  2. Cho, Y.J., H.S. Kim, H.H. Myeong, J.W. Park and J.G. Oh(2017) Jang-Geun The Vegetation Structure of Evergreen Broad-leaved Forest of Daehuksan Island in the Dadohaehaesang National Park. The Journal of Korean Island 29(1): 217-237. (in Korean) 

  3. Curtis, J.T. and R.P. McIntosh(1951) An upland forest continuum in the prairie-forest boarder region of Wisconsin. Ecology 32: 476-498. 

  4. Dale, V.H., L.A. Joyce, S. McNulty, R.P. Neilson, M.P. Ayres, M.D. Flannigan, P.J. Hanson, K.C. Irland, A.E. Lugo, C.J. Peterson, D. Simberloff, F.J. Swanson, B.J. Stocks and B.M. Wotton(2001) Climate change and forest disturbances. BioScience 51(9): 723-734. 

  5. Devi, L.S. and P.S. Yadava(2006) Floristic diversity assessment and vegetation analysis of tropical semievergreen forest of Manipur, north east India. Tropical Ecology 47(1): 89-98. 

  6. 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. Ithaca, NY: Ecology and Systematics, Cornell University, 90pp. 

  7. Jeong, J.H., K.S. Koo, C.H. Lee and C.S. Kim(2002) Physio-chemical properties of Korean forest soils by regions. Jour. Korean For. Soc. 91(6): 694-700. (in Korean with English abstract) 

  8. Jung, M.H., H.S. Moon, T.W. Kim, J.W. Joo, S.J. Kim and J.T. Won(2020) Ecological Characteristics of Cymbidium macrorrhizum Habitats, a Rare and Endangered Species-A Case Study of Nozasan(Mt.) in Geoje-city, Gyeongnam-do-. The Journal of Korean Island 32(4): 1-17. http://dx.doi.org/10.26840/JKI.32.4.1 (in Korean) 

  9. Kil, B.S. and J.U. Kim(1999) Syntaxonomy of evergreen broad-leaved forests in Korea. Korean J. Environ. Biol. 17(3): 233-247. (in Korean with English summary) 

  10. Kim, C.S. and J.G. Oh(1993) Phytosociological study on the vegetation of Mt. Mudeung. Korean J. Ecol. 16(1): 93-114. (in Korean with English abstract) 

  11. Kim, H.D., J.H. Lee, H.L. Kim and E.H. Lee(2013) Soil Characteristics of Some Evergreen Forest Kor. J. Hort. Sci. Technol. 31(SUPPL. II): 142-143. (in Korean with English summary) 

  12. Kim, H.J., J.K. Shin, C.H. Lee and C.W. Yun(2018) Phytosociological Community Type Classification and Stand Structure in the Forest Vegetation of Hongdo Island, Jeollanam-do Province. J. Korean Soc. For. Sci. 107(3): 245-257. https://doi.org/10.14578/jkfs.2018.107.3.245 (in Korean) 

  13. Kim, H.S, H.H. Myeong and J.W. Park(2014) The assessment class of conservation values and vegetation of uninhabited Islets-mainly on the Geoje, Changweon, Gyeongsangnamdo, Korea-. The Journal of Korean Island 26(3): 151-170. (in Korean) 

  14. Kim, H.S., G.S. Park, S.M. Lee, S.J. Lee, H.G. Lee, H.W. Park, D.Y. Park, C.H. Lee, J.H. Kim and J.K. Lee(2016) A Study on the Vegetation Structure of the Geumsan in Namhae-gun of Korea. Korean J. Environ. Ecol. 30(2): 214-227. https://doi.org/10.13047/KJEE.2016.30.2.214 (in Korean) 

  15. Kim, J.H., S.H. Choi, I.T. Choi, S.J. Yang and S.C. Lee(2011) Vegetation Structure of Deciduous Broad-leaved Forest at the Beomeosa(Temple) Valley in Kumjungsan, Busan. Kor. J. Env. Eco. 25(4): 581-589. (in Korean) 

  16. Kim, J.S., C.H. Jeon, S.C. Jung, C.S. Kim, H.G. Won, J.H. Cho and H.J. Cho(2016) 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) 

  17. Kim, Y.S., D.O. Lim, S.H. Chun and H.T. Shin(1999) Flora of Hallyo-haesang National Park-Case Study of Namhae, Karasan and Tongyong Areas. Kor. J. Env. Eco. 12(4): 301-316. (in Korean) 

  18. Koo, K.A., W.S. Kong and C.K. Kim(2001) Distribution of evergreen broad-leaved plants and climatic factors. Journal of the Korean Geographical Society 36(3): 247-257. (in Korean with English summary) 

  19. Kwak, J.I., K.J. Lee, B.H. Han, J.H. Song and J.S. Jang(2013) A Study on the Vegetation Structure of Evergreen Broad-leaved Forest Dongbaekdongsan(Mt.) in Jeju-do, Korea. Korean J. Environ. Ecol. 27(2): 241-252. (in Korean) 

  20. Lalfakawma, U.K.S., S. Roy, K. Vanlalhriatpuia and P.C. Vanalalhluna(2009) Community composition and tree population structure in undisturbed and disturbed tropical semi-evergreen forest stands of North-East India. Applied Ecology and Environmental Research 7(4): 303-318. 

  21. Lalzarzovi, S.T. and Lalnuntluanga(2017) Plant Community Structure of Tropical Semi-Evergreen Forest of Reiek in Mamit District of Mizoram. Science and Technology Journal 5(1): 58-62. http://doi.org/10.22232/stj.2017.05.01.08 

  22. Laurance, W.F., L.V. Ferreira, J.M. Rankin de Merona and R.W. Hutchings(1998) Influence of plot shape on estimates of tree diversity and community composition in Central Amazonia. Biotropica 30: 662-665. 

  23. Lee, D.I., B.H. Han and J.I. Kwak(2019) A Study on Characteristics of the Vegetation Structures and Vegetation Landscape Management in the Cultural Landscape Forest of Unmun Temple, Cheongdo-gun, Korea. J. KILA 47(3): 81-92. https://doi.org/10.9715/KILA.2019.47.3.081 (in Korean) 

  24. Lee, G. G. , S. D. Lee, J. S. Kim and B. G. Cho(2019) Plant Community Structure Characteristic of the Evergreen Forest, Cheonjangsan(Mt.) at GeoJae. Korean J. Environ. Ecol. 33(6): 708-721. https://doi.org/10.13047/KJEE.2019.33.6.708 (in Korean) 

  25. Lee, G.H. and I.T. Kim(2005) Synecology of the forest vegetation in Namhae-gun. Korean J. Ecol. 28(2): 69-77. https://doi.org/10.5141/JEFB.2005.28.2.069 (in Korean) 

  26. Lee, H.J., I.T. Kim, J.Y. Bang, Y.M. Chun, J.G. Kang and W.S. Kim(1994) The forest vegetation and estimation of phytomass and net primary production on Changmok-bay in Koje-island. J. Basic Sci. Kon-Kuk Univ. 19: 43-78. (in Korean) 

  27. Lee, J.H., H.J. Kwon, Y. Hwang, M.Y. Kim, C.H. Lee and H.K. Song(2010) Vegetation Structures of Warm Temperate Evergreen Broad-leaved Forest in Gageodo, Korea. J. Korean Env. Res. Tech. 13(6): 75-86. (in Korean) 

  28. Lee, K.J., B.H. Kim and D.W. Kim(1999) Vegetation Structure and Ecological Succession of Kojedo District, Hallyo-Haesang National Park. Kor. J. Env. Eco. 12(4): 331-344. (in Korean) 

  29. Lee, K.J., W. Cho and S.D. Lee(1999) Plant Community Structure of Nojasan in Koje Island. Kor. J. Env. Eco. 13(1): 78-88. (in Korean) 

  30. Lee, S.C., H.M. Kang, J.S. Kim, C.Y. Yu and S.H. Choi(2014) A Study on the Correlation between Plant Community and Environmental Factors of Tongdosa(Temple) Area, Gajisan(Mt.) Provincial Park. Korean J. Environ. Ecol. 28(6): 715-724. (in Korean) 

  31. Lee, S.D., J.S. Kim, M.J. Kim and H.K. Kang(2016) Plant Community Structure Characteristic of the Evergreen Forest, Bijindo. Korean J. Environ. Ecol. 30(2): 228-242. (in Korean) 

  32. Lee, T.B.(1980) Illustrated Flora of Korea. Hyangmunsa, Seoul, 990pp. (in Korean) 

  33. Linares-Palomino, R., V. Cardona, D. Soto, S.K. Herzog and M. Kessler(2008) Tree community patterns along a deciduous to evergreen forest gradient in central Bolivia. Ecologia en Bolivia 43(2): 79-98. 

  34. Luther, D.A., W.J. Cooper, J.D. Wolfe, R.O. Bierregaard, A. Gonzalez and T.E. Lovejoy(2020) Tropical forest fragmentation and isolation: Is community decay a random process? Global Ecology and Conservation 23(2020): e01168. https://doi.org/10.1016/j.gecco.2020.e01168 

  35. Moon, H.S., I. Roh, J.K. Kim and S.K. Kwon(2004) Soil Condition and Vegetation Structure in Acer mono for. rubripes Stand in Geoje, Gyeongnam Province. Korean Journal of Agricultural and Forest Meteorology 6(4): 265-271. (in Korean) 

  36. National Academy of Agricultural Science(2000) Analysis Method Soil and Plants. Rural Development Administration, 202pp. (in Korean) 

  37. Oh, K.K. and H.Y. Shim(2006) Distribution and Population Structure of Evergreen Broad-Leaved Forest in the Weolchulsan National Park. Kor. J. Env. Eco. 20(2): 81-93. (in Korean) 

  38. Oh, K.K. and S.H. Choi(1993) Vegetational structure and successional sere of warm temperate evergreen forest region, Korea. Korean J. Ecol. 16(4): 459-476. (in Korean) 

  39. Park, I.H.(1985) A study on Forest Structure and Biomas in Baegwoonsan Natural Ecosystem. Ph. D. Dissertation, Seoul National University Graduate School. 42pp. (in Korean with English summary) 

  40. Park, I.H., D.H. Lim, S.B. Ryu and S.M. Lee(1999) Forest structure in relation to altitude and part of slope in a valley forest at Keumsan, Hallyo-Haesang National Park. Kor. J. Env. Eco. 12(4): 373-380. (in Korean with English abstract) 

  41. Park, S.G., S.H. Choi and S.C. Lee(2018) A Review of Vegetation Succession in Warm-Temperate Evergreen Broad-Leaved Forests-Focusing on Actinodaphne lancifolia Community-. Korean J. Environ. Ecol. 32(1): 77-96. https://doi.org/10.13047/KJEE.2018.32.1.77 (in Korean) 

  42. Park, S.U., K.A. Koo and W.S. Kong(2016) Potential Impact of Climate Change on Distribution of Warm Temperate Evergreen Broad-leaved Trees in the Korean Peninsula. Journal of the Korean Geographical Society 51(2): 201-217. (in Korean) 

  43. Pattanavibool, A. and P. Dearden(2002) Fragmentation and wildlife in montane evergreen forests, northern Thailand. Biological Conservation 107(2002): 155-164. 

  44. Pielou, E.C.(1975) Mathematical ecology. John Wiley & Sons, N.Y., 385pp. 

  45. Rawat, U.S. and N.K. Agarwal(2015) Biodiversity: Concept, Threats and Conservation. Environment Conservation Journal 16(3): 19-28. https://doi.org/10.36953/ECJ.2015.16303 

  46. Schowalter, T.D.(2006) Insect ecology: An ecosystem approach. MA, USA, ELSEVIER. 

  47. Whittaker, R.H.(1956) Vegetation of the Great Smoky Mountains. Ecol. Monogra. 26: 1-80. 

  48. Yim, Y.J. and T. Kira(1975) Distribution of forest vegetation and climate in the Korea peninsula; II. Distribution of some indices of thermal climate. Jpn. J. Ecol. 25: 77-88. (in Korean) 

  49. Yim, Y.J. and T. Kira(1976) Distribution of forest vegetation and climate in the Korea peninsula; II. Distribution of climatic humidity/aridity. Jpn. J. Ecol. 26: 157-164. (in Korean) 

  50. Yim, Y.J.(1977a) Distribution of forest vegetation and climate in the Korea peninsula; III. Distribution of tree species along the thermal gradient. Jpn. J. Ecol. 27: 177-189. (in Korean) 

  51. Yim, Y.J.(1977b) Distribution of forest vegetation and climate in the Korea peninsula; IV. Zonal distribution of forest vegetation in relation to thermal gradient. Jpn. J. Ecol. 27: 269-278. (in Korean) 

  52. Yoo, B.O., J.H. Park, Y.B. Park, S.Y. Jung and K.S. Lee(2016) Assessment of the Distributional Probability for Evergreen Broad-Leaved Forests(EBLFs) Using a Logistic Regression Model. Journal of the Korean Association of Geographic Information Studies 19(1): 94-105. http://dx.doi.org/10.11108/kagis.2016.19.1.094 (in Korean) 

  53. Yun, J.H., J.H. Kim, K.H. Oh and B.Y. Lee(2011) Distributional Change and Climate Condition of Warm-temperate Evergreen Broad-leaved Trees in Korea. Kor. J. Env. Eco. 25(1): 47-56. (in Korean with English summary) 

관련 콘텐츠

오픈액세스(OA) 유형

BRONZE

출판사/학술단체 등이 한시적으로 특별한 프로모션 또는 일정기간 경과 후 접근을 허용하여, 출판사/학술단체 등의 사이트에서 이용 가능한 논문

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로