首站-论文投稿智能助手
典型文献
Mixing planting proportions in a plantation affects functional traits and biomass allocation of Cunninghamia lanceolata and Phoebe bournei seedlings
文献摘要:
Functional traits of trees are significantly asso-ciated with their adaptation strategies and productivity.However,the effects of species composition and mixing proportion on the functional traits of trees grown in mixed plantations have not been studied extensively.In this study,planting experiments(duration about seven months)were used to study variations in functional traits and biomass allocation of Cunninghamia lanceolata(Lamb.)Hook and Phoebe bournei(Hemsley)Yang seedlings in five different mixes(0C:4P,1C:3P,IC:1P,3C:1P,and 4C:0P).Total leaf area per seedling increased in each species as its respective proportion in the mixture decreased.However,the specific leaf area decreased for P.bournei under low percent com-position,and the specific leaf area for C.lanceolata differed only marginally among the plantings.The net photosynthetic rates of the two species were higher in the mixed plantings than in their corresponding monocultures,whereas the transpiration rate,stomatal conductance,and instantaneous water use efficiency were not different among the plantings.The average root length and root surface area of C.lanceo-lata and P.bournei were higher in the mixed plantings than in their monocultures.Specifically,root surface area of C.lanceolate and both root length and surface area of P.bour-nei increased significantly in the 1C:3P and 2C:2P mixed plantings.Leaf,stem,root,and total dry mass per seedling for C.lanceolata decreased with its increasing percent com-position in the mixed plantings,while these variables varied less for P.bournei.The plasticity of biomass allocation was relatively low for both species.Total biomass per planting was higher in the mixed plantings than in the monocultures.Our study indicates that species composition and mixing proportion can considerably affect the functional traits of C.lanceolata and P.bournei.The increase in productivity in the mixed plantings may be partially attributed to low rates of competition between the two species,and future studies should examine the different interspecies relationships.The results of this study can be used to improve plantation pro-ductivity and ultimately increase the sustainability of tree products and help to better understand the adaptation strate-gies of plant coexistence.
文献关键词:
作者姓名:
Meiqin Zha;Youzhi Han;Xiangrong Cheng
作者机构:
Forestry College,Shanxi Agriculture University,Taigu 030801,People's Republic of China;East China Coastal Forest Ecosystem Long-Term Research Station,Institute of Subtropical Forestry,Chinese Academy of Forestry,Hangzhou 311400,People's Republic of China
引用格式:
[1]Meiqin Zha;Youzhi Han;Xiangrong Cheng-.Mixing planting proportions in a plantation affects functional traits and biomass allocation of Cunninghamia lanceolata and Phoebe bournei seedlings)[J].林业研究(英文版),2022(06):1793-1805
A类:
plantings,lanceo,bour,nei
B类:
Mixing,proportions,affects,functional,traits,biomass,allocation,Cunninghamia,lanceolata,Phoebe,bournei,seedlings,Functional,trees,significantly,asso,ciated,their,adaptation,strategies,productivity,However,effects,composition,mixing,grown,mixed,plantations,have,not,been,studied,extensively,In,this,study,experiments,duration,about,seven,months,were,used,variations,Lamb,Hook,Hemsley,Yang,five,different,mixes,0C,4P,1C,3P,IC,1P,3C,4C,0P,Total,leaf,area,increased,each,respective,mixture,decreased,specific,low,percent,differed,only,marginally,among,net,photosynthetic,rates,two,higher,than,corresponding,monocultures,whereas,transpiration,stomatal,conductance,instantaneous,water,efficiency,average,root,length,surface,Specifically,lanceolate,both,2C,2P,Leaf,stem,total,dry,increasing,while,these,variables,varied,less,plasticity,was,relatively,Our,indicates,that,considerably,may,partially,attributed,competition,between,future,studies,should,examine,interspecies,relationships,results,improve,ultimately,sustainability,products,help,better,understand,coexistence
AB值:
0.427651
相似文献
Conversion of pure Chinese fir plantation to multi-layered mixed plantation enhances the soil aggregate stability by regulating microbial communities in subtropical China
Guannv Gao;Xueman Huang;Haocheng Xu;Yi Wang;Weijun Shen;Wen Zhang;Jinliu Yan;Xiaoyan Su;Shushou Liao;Yeming You-Guangxi Key Laboratory of Forest Ecology and Conservation,State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources,College of Forestry,Guangxi University,Nanning 530004,China;Guangxi Youyiguan Forest Ecosystem Research Station,Pingxiang,532600,Guangxi,China;School of Agriculture,Shenzhen Campus of Sun Yat-sen University,Shenzhen,518107,Guangdong China;Institute of Resources and Environment,Key Laboratory of National Forestry and Grassland Administration/Beijing for Bamboo&Rattan Science and Technology,International Centre for Bamboo and Rattan,Beijing 100102,China;Experimental Centre of Tropical Forestry,Chinese Academy of Forestry,Pingxiang 532600,Guangxi,China
Dieback intensity but not functional and taxonomic diversity indices predict forest productivity in different management conditions: Evidence from a semi-arid oak forest ecosystem
Mona KARAMI;Mehdi HEYDARI;Ali SHEYKHOLESLAMI;Majid ESHAGH NIMVARI;Reza OMIDIPOUR;YUAN Zuoqiang;Bernard PREVOSTO-Faculty of Natural Resources,Chalus Branch,Islamic Azad University,Chalus 46615/397,Iran;Department of Forestry,Chalous Branch,Islamic Azad University,Chalous 46615/397,Iran;Department of Rangeland and Watershed Management,Faculty of Natural Resources and Earth Sciences,Shahrekord University,Shahrekord 8818634141,Iran;Key Laboratory of Forest Ecology and Management,Institute of Applied Ecology,Chinese Academy of Sciences,Shenyang 110164,China;INRAE,Aix Marseille University,UMR RECOVER,Mediterranean Ecosystems and Risks,Aix-en-Provence 13128,France
Functional traits of poplar leaves and fine roots responses to ozone pollution under soil nitrogen addition
Pin Li;Rongbin Yin;Huimin Zhou;Sheng Xu;Zhaozhong Feng-Research Center for Urban Forestry,Key Laboratory for Forest Silviculture and Conservation of Ministry of Education,Key Laboratory for Silviculture and Forest Ecosystem Research in Arid-and Semi-arid Region of State Forestry Administration,Beijing Forestry University,Beijing 100083,China;State Key Laboratory of Urban and Regional Ecology,Research Center for Eco-Environmental Sciences,Chinese Academy of Sciences,Beijing 100085,China;Key Laboratory of Forest Ecology and Management,Institute of Applied Ecology,Chinese Academy of Sciences,Shenyang 110016,China;Institute of Ecology,Key Laboratory of Agrometeorology of Jiangsu Province,School of Applied Meteorology,Nanjing University of Information Science and Technology,Nanjing 210044,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。