首站-论文投稿智能助手
典型文献
Modeling of cold-temperate tree Pinus koraiensis(Pinaceae)distribution in the Asia-Pacific region:Climate change impact
文献摘要:
Background:Pinus koraiensis Siebold&Zucc.(Korean pine)is a key species of the mixed cold temperate forests of Northeast Asia.Current climate change can significantly worsen the quality of P.koraiensis habitats and therefore lead to a large-scale structural and functional transformation of the East Asian mixed forests.We built a species distribution model(SDM)for P.koraiensis using the random forest classifier-a versatile machine learning al-gorithm,to discover overlap areas of potential species occurrence in the climate condition of the Last Glacial Maximum(~21,000 year before present)and in the projected future climates(2070 year),from which possible permanent refugia for P.koraiensis were identified.Results:Using the random forest supervised learning algorithm,we developed models of the modern distribution of P.koraiensis in accordance with the five selected bioclimatic variables(Kira's warmth and coldness indices,the index of continentality,the rain precipitation index,and the snow precipitation index).In addition to current climatic conditions,we performed this analysis for the climate of the Last Glacial Maximum and for the future projected climate(2070)under scenarios RCP2.6 and RCP8.5.Among the predictors,the rain index appears to be the most significant.The land area estimates with high suitability for P.koraiensis was 303,785 km2 under current climatic conditions,586,499 km2 for the Last Glacial Maximum,and 337,573 km2 for the future(2070)period under the RCP2.6 scenario,and 397,764 km2 under the RCP8.5 scenario.Conclusions:Most of the potential range of P.koraiensis during the Last Glacial Maximum was located outside the current distribution area of the species.The climatically suitable P.koraiensis habitats will likely disappear in the western part of its modern range.In the southern part of the range,which includes glacial refugia,the areas of continuous distribution of the P.koraiensis populations since the end of the Pleistocene are expected to be frag-mented,but some localities in the north of the Korean Peninsula,northeast China,southern Primorye(Russia),and central Honshu(Japan)with suitable climatic conditions for the species will support the existence of populations.
文献关键词:
作者姓名:
Tatyana Y.Petrenko;Kirill A.Korznikov;Dmitry E.Kislov;Nadezhda G.Belyaeva;Pavel V.Krestov
作者机构:
Botanical Garden-Institute FEB RAS,Makovskogo St 142,Vladivostok,690024,Russia;Institute of Geography RAS,Staromonetniy 24-4,Moscow,119017,Russia
引用格式:
[1]Tatyana Y.Petrenko;Kirill A.Korznikov;Dmitry E.Kislov;Nadezhda G.Belyaeva;Pavel V.Krestov-.Modeling of cold-temperate tree Pinus koraiensis(Pinaceae)distribution in the Asia-Pacific region:Climate change impact)[J].森林生态系统(英文版),2022(02):160-167
A类:
Kira,coldness,continentality,Primorye,Honshu
B类:
Modeling,temperate,tree,Pinus,koraiensis,Pinaceae,distribution,Pacific,region,Climate,change,impact,Background,Siebold,Zucc,Korean,pine,key,species,mixed,forests,Northeast,Current,significantly,worsen,quality,habitats,therefore,lead,large,scale,structural,functional,transformation,East,Asian,We,built,SDM,using,random,classifier,versatile,machine,learning,discover,overlap,areas,potential,occurrence,Last,Glacial,Maximum,year,before,present,projected,future,climates,from,which,possible,permanent,refugia,were,identified,Results,Using,supervised,algorithm,developed,models,modern,accordance,five,selected,bioclimatic,variables,warmth,indices,rain,precipitation,snow,In,addition,current,conditions,performed,this,analysis,under,scenarios,RCP2,RCP8,Among,predictors,appears,most,land,estimates,high,suitability,was,km2,period,Conclusions,Most,range,during,located,outside,climatically,suitable,will,likely,disappear,western,part,its,southern,includes,glacial,continuous,populations,since,end,Pleistocene,expected,frag,mented,some,localities,Peninsula,northeast,China,Russia,central,Japan,support,existence
AB值:
0.489174
相似文献
Projections of surface air temperature and precipitation in the 21st century in the Qilian Mountains,Northwest China,using REMO in the CORDEX
Lan-Ya LIU;Xue-Jia WANG;Xiao-Hua GOU;Mei-Xue YANG;Zi-Han ZHANG-Key Laboratory of Western China's Environmental Systems(Ministry of Education),College of Earth and Environmental Sciences,Lanzhou University,Lanzhou 730000,China;Gansu Liancheng Forest Ecosystem Field Observation and Research Station,Lanzhou University,Lanzhou 730333,China;State Key Laboratory of Cryospheric Science,Northwest Institute of Eco-Environment and Resources,Chinese Academy of Sciences,Lanzhou 730000,China;Key Laboratory of Western China's Environmental Systems (Ministry of Education), College of Earth and Environmental Sciences, Lanzhou University, Lanzhou730000, China; Gansu Liancheng Forest Ecosystem Field Observation and Research Station, Lanzhou University, Lanzhou 730333, China
Phylogeny and biogeography of Fagus(Fagaceae)based on 28 nuclear single/low-copy loci
Lu Jiang;Qin Bao;Wei He;Deng-Mei Fan;Shan-Mei Cheng;Jordi López-Pujol;Myong Gi Chung;Shota Sakaguchi;Arturo Sánchez-González;Aysun Gedik;De-Zhu Li;Yi-Xuan Kou;Zhi-Yong Zhang-College of Forestry,Jiangxi Agricultural University,Nanchang 330045,China;Laboratory of Subtropical Biodiversity,Jiangxi Agricultural University,Nanchang 330045,China;Botanic Institute of Barcelona(IBB,CSIC-Ajuntament de Barcelona),Passeig del Migdia s/n,Barcelona 08038,Spain;Department of Biology and the Research Institute of Natural Science,Gyeongsang National University,Jinju 660-701,Republic of Korea;Graduate School of Human and Environmental Studies,Kyoto University,Kyoto 6068502,Japan;Biological Research Center.Autonomous University of Hidalgo,Mineral de la Reforma 42184,Mexico;Department of Biotechnology,Institute of Natural and Applied Sciences,University of Cukurova,Adana 01330,Turkey;Key Laboratory of Biodiversity and Biogeography,Kunming Institute of Botany,Chinese Academy of Sciences,Kunming 650204,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。