RISS 학술연구정보서비스

검색
다국어 입력

http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

변환된 중국어를 복사하여 사용하시면 됩니다.

예시)
  • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
  • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
닫기
    인기검색어 순위 펼치기

    RISS 인기검색어

      KCI등재 SCOPUS

      Northern distribution limits and future suitable habitats of warm temperate evergreen broad-leaved tree species designated as climate-sensitive biological indicator species in South Korea

      한글로보기

      https://www.riss.kr/link?id=A108389493

      • 0

        상세조회
      • 0

        다운로드
      서지정보 열기
      • 내보내기
      • 내책장담기
      • 공유하기
      • 오류접수

      부가정보

      다국어 초록 (Multilingual Abstract)

      Background: Climate change significantly influences the geographical distribution of plant species worldwide. Selecting indicator species allows for better-informed and more effective ecosystem management in response to climate change. The Korean Peninsula is the northernmost distribution zone of warm temperate evergreen broad-leaved (WTEB) species in Northeast Asia. Considering the ecological value of these species, we evaluated the current distribution range and future suitable habitat for 13 WTEB tree species designated as climate-sensitive biological indicator species.
      Results: Up-to-date and accurate WTEB species distribution maps were constructed using herbarium specimens and citizen science data from the Korea Biodiversity Observation Network. Current northern limits for several species have shifted to higher latitudes compared to previous records. For example, the northern latitude limit for Stauntonia hexaphylla is higher (37° 02’ N, Deokjeokdo archipelago) than that reported previously (36° 13’ N). The minimum temperature of the coldest month (Bio6) is the major factor influencing species distribution. Under future climate change scenarios, suitable habitats are predicted to expand toward higher latitudes inland and along the western coastal areas.
      Conclusions: Our results support the suitability of WTEB trees as significant biological indicators of species’ responses to warming. The findings also suggest the need for consistent monitoring of species distribution shifts. This study provides an important baseline dataset for future monitoring and management of indicator species’ responses to changing climate conditions in South Korea.
      번역하기

      Background: Climate change significantly influences the geographical distribution of plant species worldwide. Selecting indicator species allows for better-informed and more effective ecosystem management in response to climate change. The Korean Peni...

      Background: Climate change significantly influences the geographical distribution of plant species worldwide. Selecting indicator species allows for better-informed and more effective ecosystem management in response to climate change. The Korean Peninsula is the northernmost distribution zone of warm temperate evergreen broad-leaved (WTEB) species in Northeast Asia. Considering the ecological value of these species, we evaluated the current distribution range and future suitable habitat for 13 WTEB tree species designated as climate-sensitive biological indicator species.
      Results: Up-to-date and accurate WTEB species distribution maps were constructed using herbarium specimens and citizen science data from the Korea Biodiversity Observation Network. Current northern limits for several species have shifted to higher latitudes compared to previous records. For example, the northern latitude limit for Stauntonia hexaphylla is higher (37° 02’ N, Deokjeokdo archipelago) than that reported previously (36° 13’ N). The minimum temperature of the coldest month (Bio6) is the major factor influencing species distribution. Under future climate change scenarios, suitable habitats are predicted to expand toward higher latitudes inland and along the western coastal areas.
      Conclusions: Our results support the suitability of WTEB trees as significant biological indicators of species’ responses to warming. The findings also suggest the need for consistent monitoring of species distribution shifts. This study provides an important baseline dataset for future monitoring and management of indicator species’ responses to changing climate conditions in South Korea.

      더보기

      참고문헌 (Reference) 논문관계도

      1 윤종학 ; 김중현 ; 오경희 ; 이병윤, "한반도 난온대 상록활엽수의 분포변화 및 기후조건" 한국환경생태학회 25 (25): 47-56, 2011

      2 엄병철 ; 김종원, "한국 난온대 식생분포대의 식물기후학적 재검토" 한국하천호수학회 53 (53): 195-207, 2020

      3 문준기 ; 심창섭 ; 정옥진 ; 홍제우 ; 한지현 ; 송영일, "지자체 기후변화 대응을 위한 지역별 기후변화의 특성분석: 장기 관측자료를 중심으로" 한국기후변화학회 11 (11): 755-770, 2020

      4 송세규 ; 최승세 ; 신현철 ; 서형수 ; 박진영 ; 차진열 ; 김철환, "인천, 경기 지역 무인도서의 식물상에 관한 연구" 한국도서(섬)학회 33 (33): 181-226, 2021

      5 김은숙 ; 이지선 ; 박고은 ; 임종환, "아고산 침엽수림 분포 면적의 20년간 변화 분석" 한국산림과학회 108 (108): 10-20, 2019

      6 이정현 ; 최병희, "서해중부 인천 도서지역의 상록활엽식물 분포" 한국식물분류학회 38 (38): 315-332, 2008

      7 손동찬 ; 김현준 ; 이동혁 ; 정수영 ; 박수현 ; 장계선, "서해 5도의 식물상" 한국자원식물학회 29 (29): 434-466, 2016

      8 윤은정 ; 김진희 ; 문경환, "상세 전자기후지도를 이용한 미래 한반도 기후대 변화 전망" 한국농림기상학회 22 (22): 287-298, 2020

      9 이정현 ; 최병희, "상록활엽수 3종의 한반도분포 및 자생북한계지" 한국식물분류학회 40 (40): 267-273, 2010

      10 김중현 ; 윤종학 ; 남기흠 ; 이정현 ; 최병희 ; 이병윤, "덕적군도 내 무인도서의 관속식물상 연구" 한국환경과학회 20 (20): 1-23, 2011

      1 윤종학 ; 김중현 ; 오경희 ; 이병윤, "한반도 난온대 상록활엽수의 분포변화 및 기후조건" 한국환경생태학회 25 (25): 47-56, 2011

      2 엄병철 ; 김종원, "한국 난온대 식생분포대의 식물기후학적 재검토" 한국하천호수학회 53 (53): 195-207, 2020

      3 문준기 ; 심창섭 ; 정옥진 ; 홍제우 ; 한지현 ; 송영일, "지자체 기후변화 대응을 위한 지역별 기후변화의 특성분석: 장기 관측자료를 중심으로" 한국기후변화학회 11 (11): 755-770, 2020

      4 송세규 ; 최승세 ; 신현철 ; 서형수 ; 박진영 ; 차진열 ; 김철환, "인천, 경기 지역 무인도서의 식물상에 관한 연구" 한국도서(섬)학회 33 (33): 181-226, 2021

      5 김은숙 ; 이지선 ; 박고은 ; 임종환, "아고산 침엽수림 분포 면적의 20년간 변화 분석" 한국산림과학회 108 (108): 10-20, 2019

      6 이정현 ; 최병희, "서해중부 인천 도서지역의 상록활엽식물 분포" 한국식물분류학회 38 (38): 315-332, 2008

      7 손동찬 ; 김현준 ; 이동혁 ; 정수영 ; 박수현 ; 장계선, "서해 5도의 식물상" 한국자원식물학회 29 (29): 434-466, 2016

      8 윤은정 ; 김진희 ; 문경환, "상세 전자기후지도를 이용한 미래 한반도 기후대 변화 전망" 한국농림기상학회 22 (22): 287-298, 2020

      9 이정현 ; 최병희, "상록활엽수 3종의 한반도분포 및 자생북한계지" 한국식물분류학회 40 (40): 267-273, 2010

      10 김중현 ; 윤종학 ; 남기흠 ; 이정현 ; 최병희 ; 이병윤, "덕적군도 내 무인도서의 관속식물상 연구" 한국환경과학회 20 (20): 1-23, 2011

      11 양종철 ; 박수현 ; 하상교 ; 이유미, "대청도(옹진군)의 관속식물상" 한국자원식물학회 25 (25): 31-47, 2012

      12 유승봉 ; 김병도 ; 신현탁 ; 김상준, "녹나무과 상록활엽수 자생지 기후특성과 기후변화에 따른 분포 변화" 한국환경생태학회 34 (34): 503-514, 2020

      13 윤종학 ; 中尾勝洋 ; 김중현 ; 김선유 ; 박찬호 ; 이병윤, "기후변화에 따른 한반도 참식나무 생육지 예측과 영향 평가" 한국환경영향평가학회 23 (23): 101-111, 2014

      14 윤종학 ; 박정수 ; 최종윤 ; 中尾勝洋, "기후변화에 따른 한반도 사스레피나무의 생육지 예측과 영향 평가" 한국환경영향평가학회 26 (26): 291-302, 2017

      15 윤종학 ; 中尾勝洋 ; 박찬호 ; 이병윤 ; 오경희, "기후변화에 따른 한반도 난온대 상록활엽수의 잠재 생육지 변화 예측" 한국환경생태학회 25 (25): 590-600, 2011

      16 박선욱 ; 구경아 ; 서창완 ; 공우석, "기후변화에 따른 송악의 잠재서식지 분포 변화 예측" 한국기후변화학회 7 (7): 325-334, 2016

      17 박정근 ; 안종빈 ; 박삼봉 ; 추갑철 ; 김봉규, "굴거리나무 자생지별 식생특성" 농업생명과학연구원 49 (49): 117-133, 2015

      18 Fick SE, "WorldClim 2 : new 1-km spatial resolution climate surfaces for global land areas" 37 (37): 4302-4315, 2017

      19 Cultural Heritage Administration, "The white paper of natural monuments" Cultural Heritage Administration 2003

      20 National Geographic Information Institute, "The national atlas of Korea II"

      21 National Institute of Biological Resources, "The guidebook of climate sensitive biological indicator species"

      22 Williams KD, "The Met Office Global Coupled model 3.0 and 3.1(GC3.0 and GC3.1) configurations" 10 (10): 357-380, 2017

      23 Choi BK, "Syntaxonomy and syngeography of warm-temperate evergreen broad-leaved forests in Korea" Keimyung University 2013

      24 Franklin J, "Species distribution models in conservation biogeography : developments and challenges" 19 (19): 1217-1223, 2013

      25 Liang Q, "Shifts in plant distributions in response to climate warming in a biodiversity hotspot, the Hengduan Mountains" 45 (45): 1334-1344, 2018

      26 Kelly AE, "Rapid shifts in plant distribution with recent climate change" 105 (105): 11823-11826, 2008

      27 Park SG, "Range analysis of possible planting of evergreen broad-leaved trees for landscaping in Korea" 25 (25): 114-115, 2015

      28 Pearson RG, "Predicting the impacts of climate change on the distribution of species : are bioclimate envelope models useful?" 12 (12): 361-371, 2003

      29 Cook JA, "Overfitting" 103 (103): 1814-, 2016

      30 National Institute of Biological Resources, "Operation of the Korea biodiversity observation network(K-BON)with civil participation II-1"

      31 National Institute of Biological Resources, "Operation of the Korea biodiversity observation network (K-BON) with civil participation"

      32 Uyeki H, "On the northern limit of evergreen broad-leaved tree in Korea" 10 (10): 80-93, 1941

      33 신수경 ; Jung Kwang Soo ; Kang Hong Gu ; 당지희 ; Doohee Kang ; Han Jeong Eun ; 김진한, "Northward expansion trends and future potential distribution of a dragonfly Ischnura senegalensis Rambur under climate change using citizen science data in South Korea" 한국생태학회 45 (45): 313-327, 2021

      34 Leach K, "Modelling the influence of biotic factors on species distribution patterns" 337 : 96-106, 2016

      35 Phillips SJ, "Maximum entropy modeling of species geographic distributions" 190 : 231-259, 2006

      36 Urban MC, "Improving the forecast for biodiversity under climate change" 353 (353): aad8466-, 2016

      37 Siddig AAH, "How do ecologists select and use indicator species to monitor ecological change? Insights from 14 years of publication in ecological indicators" 60 : 223-230, 2016

      38 Andrews MB, "Historical simulations with HadGEM3-GC3.1 for CMIP6" 12 (12): 2020

      39 National Institute of Meteorological Sciences, "Global climate change forecast report" National Institute of Meteorological Sciences 2019

      40 Koo KA, "Future distributions of warm-adapted evergreen trees, Neolitsea sericea and Camellia japonica under climate change : ensemble forecasts and predictive uncertainty" 33 (33): 313-325, 2018

      41 Shin Sookyung ; Kim Jung-Hyun ; Dang Ji-Hee ; Seo In-Soon ; Lee Byoung Yoon, "Elevational distribution ranges of vascular plant species in the Baekdudaegan mountain range, South Korea" 한국생태학회 45 (45): 62-71, 2021

      42 Ims RA, "Ecosystem-based monitoring in the age of rapid climate change and new technologies" 29 : 170-176, 2017

      43 Koo KA, "Distribution of evergreen broad-leaved plants and climatic factors" 36 (36): 247-257, 2001

      44 Byoung-Yoon Lee ; Gi-Heum Nam ; Jong-Hak Yun ; Ga Youn Cho ; Jin Sung Lee ; Jin-Han Kim ; Tae Seo Park ; Kigyoung Kim ; Kyounghee Oh, "Biological indicators to monitor responses against climate change in Korea" 한국식물분류학회 40 (40): 202-207, 2010

      45 Kong WS, "Biogeography of Korean plants" GEOBOOK 2007

      46 Elith J, "A statistical explanation of MaxEnt for ecologists" 17 (17): 43-57, 2011

      47 O’Neill BC, "A new scenario framework for climate change research : the concept of shared socioeconomic pathways" 122 : 387-400, 2014

      48 Kaky E, "A comparison between Ensemble and MaxEnt species distribution modelling approaches for conservation : a case study with Egyptian medicinal plants" 60 : 101150-, 2020

      더보기

      분석정보

      View

      상세정보조회

      0

      Usage

      원문다운로드

      0

      대출신청

      0

      복사신청

      0

      EDDS신청

      0

      동일 주제 내 활용도 TOP

      더보기

      주제

      연도별 연구동향

      연도별 활용동향

      연관논문

      연구자 네트워크맵

      공동연구자 (7)

      유사연구자 (20) 활용도상위20명

      이 자료와 함께 이용한 RISS 자료

      나만을 위한 추천자료

      해외이동버튼