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Climate is generally accepted as one of the major determinants of plants distribution. Plants are sensitive to bioclimates, and local variations of climate determine habitats of plants. The purpose of this paper is to identify the factors affecting the distribution of narrow-range plants in South Korea using National Survey of Natural Environment data. We developed species distribution models for 6 plant species using climate, topographic and soil factors. All 6 plants were most sensitive to climatic factors but less other factors at national scale. Meliosma myriantha, Stewartia koreana and Eurya japonica, distributed at southern and coast region in Korea, were most sensitive to precipitation and temperature. Meliosma myriantha was mostly effected by annual precipitation and precipitation of driest quarter, Stewartia koreana was effected by annual precipitation and elevation, and Eurya japonica was affected by temperature seasonality and precipitation of driest quarter. On the other hand, Spiraea salicifolia, Rhododendron micranthum and Acer tegmentosum, distributed at central and northern inland in Korea, were most sensitive to temperature and elevation. Spiraea salicifolia was affected by mean temperature of coldest quarter and annual mean temperature, Rhododendron micranthum and Acer tegmentosum were affected by mean temperature of warmest quarter and elevation. We can apply this result to future plant habitat distribution under climate change.

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
장산 생태숲 조성부지의 식생특성 김석규, 남정칠, 박승범 pp.1-16

국지적으로 분포하는 식물에 대한 기후 및 환경변수 영향 권혁수, 류지은, 서창완, 김지연, 도재화, 서민환, 박종화 pp.17-27

중국 사막지역의 방풍책 높이와 공극률에 따른 방풍효과 및 설치비용 비교분석 박기형, 丁國棟, 方广玲, 김찬범, 吳斌, 包岩峰, 高广磊, 정성철, 문강민 pp.29-41

산림식생유형에 따른 조류 종다양성 분석 박인환, 김유훈, 조광진 pp.43-52

식생섬에 의한 중수처리 효과 검증과 적용에 관한 연구 권동민, 권순효, 구본학 pp.53-59

폐석더미에서 복토 및 식생기반재 처리가 참싸리(Lespedeza cyrtobotrya Miq.)의 생장에 미치는 영향 김정환, 임주훈, 이궁, 이임균, 정용호 pp.61-67

영산강·섬진강 수계 수변구역 매수토지의 관리 현황 및 개선 방안 : 순천시 지역을 중심으로 변성수, 이상혁 pp.69-77

절개사면 녹화지역과 인접 자연지역의 식생 비교 강희경, 송홍선, 조용현, 박봉주, 김원태, 신경준, 어양준, 윤택승, 장광은, 곽무영 pp.79-89

참고문헌 (44건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 Evaluating the effects of climate change on tree species abundance and distribution in the Italian peninsula 네이버 미소장
2 Spatial prediction of species distribution: an interface between ecological theory and statistical modelling 네이버 미소장
3 Choi, U. H. 2007. Study on Habitat and Propagation of Acer tegmentosum Max. Master's Thesis, Kangwon National University. 미소장
4 Spatial Genetic Structure of Allozyme Polymorphisms in a Population of Eurya japonica (Theaceae) 네이버 미소장
5 Chung, M. G. and S. S. Kang. 1994. Genetic variation and population structure in Korean populations of Eurya japonica (Theaceae). American Journal of Botany 81(8), 1077- 1082. 미소장
6 Novel methods improve prediction of species’ distributions from occurrence data 네이버 미소장
7 Fortin, M. J. and M. R. T. Dale. 2005. Spatial analysis:a guide for ecologists. New York: Cambridge University Press. 미소장
8 Franklin, J. 2009. Mapping Species Distributions Spatial Inference and Prediction. New York: Cambridge University Press. 미소장
9 Fukuda, Y. 1933. Hygronastic curling and uncurling movement of the leaves of Rhododendron micranthum Turcz. with respect to temperature and resistance to cold. Japanese Journal of Botany 6(2), 191-224. 미소장
10 Predicting species distribution: offering more than simple habitat models 네이버 미소장
11 Hannah, L. 2011. Climate Change Biology. America (p. 416). Academic Press. 미소장
12 Modelling climate change impacts on species’ distributions at the European scale: implications for conservation policy 네이버 미소장
13 Assessing the potential impacts of climate change on the alpine habitat suitability of Japanese stone pine (Pinus pumila) 네이버 미소장
14 Spatial Pattern of Acer tegmentosum in the Mixed Broadleaved-Korean Pine Forest of Xiaoxing`an Mountains, China 소장
15 Kim, J. W., M. B. Lee, W. S. Kong, T. H. Kim, C. S. Kang, K. Park and B. I. Park. 2008. Physical Geography of Korea. Seoul:Seoul National University Press. (in Korean) 미소장
16 Kim, N. Y. 2010. Study on Growth Characteristics and Propagation for Preservation of Rare Rhododendron micranthum. Ph.D dissertation, Kangwon National University. (in Korean with English summary) 미소장
17 Species Composition and Distribution of Korean Alpine Plants 소장
18 Kong, W. S. 2007. Biogeography of Korean Plants. Seoul:Geobook. (in Korean) 미소장
19 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) 미소장
20 Korea Forest Service and Korea National Arboretum. 2010. 300 Target Plants Adaptable to Climate Change in the Korean Peninsula. Pochon:Korea National Arboretum. (in Korean) 미소장
21 Vegetation Structures and Ecological Properties of Sterwartia koreana Community 소장
22 Kwon, H. J., J. H. Gwon, H. R. Jeon, J. H. Lee and H. K. Song. 2011. Vegetation Structures of Stewartia koreana Forest in Mt. Jirisan. Korean J. Environ. Ecol. 25(5):725-735. (in Korean with English summary) 미소장
23 Lee, C. B. 1999. Illustrated Flora of Korea. Seoul: Hyangmunsa. (in Korean) 미소장
24 A Prediction of Forest Vegetation based on Land Cover Change in 2090 소장
25 Distribution and Northernmost Limit on the Korean Peninsula of Three Evergreen Trees 네이버 미소장
26 Articles : Distribution Pattern of Pinus densiflora and Quercus Spp. Stand in Korea Using Spatial Statistics and GIS 소장
27 Lee, K. J., S. S. Han, J. H. Kim and E. S. Kim. 2007. Forest Ecology. Seoul:Hyangmunsa. (in Korean) 미소장
28 A Study on the wild Rhododendron micranthum for being used as Landscape Plant 네이버 미소장
29 Lovejoy, T. E. and L. Hannah. 2005. Climate change and biodiversity. Yale University Press. 미소장
30 Spatial distribution of Eurya japonica in an old‐growth evergreen broad‐leaved forest, SW Japan 네이버 미소장
31 Assessing the impact of land use and climate change on the evergreen broad-leaved species of Quercus acuta in Japan 네이버 미소장
32 Influence of Water Relations and Temperature on Leaf Movements of Rhododendron Species 네이버 미소장
33 Ottaviani, D., G. J. Lasinio and L. Boitani. 2004. Two statistical methods to validate habitat suitability models using presence-only data. Ecological Modelling 179(4):417-443. 미소장
34 Maximum entropy modeling of species geographic distributions 네이버 미소장
35 Scale effects in species distribution models: implications for conservation planning under climate change. 네이버 미소장
36 Study on the Korean Native Stewartia (Stewartia koreana) 네이버 미소장
37 BIOMOD – optimizing predictions of species distributions and projecting potential future shifts under global change 네이버 미소장
38 Trisurat, Y., R. P. Shrestha and R. Kjelgren. 2011. Plant species vulnerability to climate change in Peninsular Thailand. Applied Geography 31(3):1106-1114. 미소장
39 Climate and Plant Distribution at Global and Local Scales 네이버 미소장
40 Yang, K. C. and J. K. Shim. 2007. Distribution of Major Plant Communities Based on the Climatic Conditions and Topographic Features in South Korea. Korean J. Environ. Biol. 25(2):168-177. (in Korean with English summary) 미소장
41 Yun, J. H., J. H. Kim, K. H. Oh, B. Y. Lee. 2011. Distributional Change and Climate Condition of Warm-temperate Evergreen Broad-Leaved Trees in Korea. Korean J. Environ. Ecol. 25(1):47-56. (in Korean with English summary) 미소장
42 Yun, J. H., K. Nakao, C. H. Park, B. Y. Lee, K. H. Oh. 2011. Change Prediction for Potential Habitats of Warm-temperate Evergreen Broad-Leaved Trees in Korea by Climate Change. Korean J. Environ. Ecol. 25(4): 590-600. (in Korean with English summary) 미소장
43 Yun, J. H., K. Nakao, C. H. Park, B. Y. Lee. 2011. Potential Habitats and Change Prediction of Machilus thunbergii Siebold and Zucc. in Korea by Climate Change. Korean J. Environ. Ecol. 25(6):903-910. (in Korean with English summary) 미소장
44 Http://eol.org Encyclopedia of Life 미소장