首站-论文投稿智能助手
典型文献
Temporal shifts in the explanatory power and relative importance of litter traits in regulating litter decomposition
文献摘要:
Background:Litter traits critically affect litter decomposition from local to global scales.However,our under-standing of the temporal dynamics of litter trait-decomposition linkages,especially their dependence on plant functional type remains limited.Methods:We decomposed the leaf litter of 203 tree species that belong to two different functional types(decid-uous and evergreen)for 2 years in a subtropical forest in China.The Weibull residence model was used to describe the different stages of litter decomposition by calculating the time to 10%,25%and 50%mass loss(Weibull t1/1o,t1/4,and t1/2 respectively)and litter mean residence time(Weibull MRT).The resulting model parameters were used to explore the control of litter traits(e.g.,N,P,condensed tannins and tensile strength)over leaf litter decomposition across different decomposition stages.Results:The litter traits we measured had lower explanatory power for the early stages(Weibull t1/10 and t1/4)than for the later stages(Weibull t1/2 and MRT)of decomposition.The relative importance of different types of litter traits in influencing decomposition changed dramatically during decomposition,with physical traits exerting predominant control for the stages of Weibull t1/10 and MRT and nutrient-related traits for the stages of Weibull t1/4,and t1/2.Moreover,we found that litter decomposition of the early three stages(Weibull t1/10,t1/4,and t1/2)of the two functional types was controlled by different types of litter traits;that is,the litter decom-position rates of deciduous species were predominately controlled by nutrient-related traits,while the litter decomposition rates of evergreen species were mainly controlled by carbon-related traits.Conclusions:This study suggests that litter trait-decomposition linkages vary with decomposition stages and are strongly mediated by plant functional type,highlighting the necessity to consider their temporal dynamics and plant functional types for improving predictions of litter decomposition.
文献关键词:
作者姓名:
Zhaolin Sun;Peng Tian;Xuechao Zhao;Yanping Wang;Shunzhong Wang;Xiangmin Fang;Qingkui Wang;Shengen Liu
作者机构:
School of Forestry and Landscape Architecture,Anhui Agricultural University,Hefei,230036,China;Huitong Experimental Station of Forest Ecology,CAS Key Laboratory of Forest Ecology and Management,Institute of Applied Ecology,Shenyang 110016,China;University of Chinese Academy of Sciences,Beijing 100049,China;College of Forestry,Taishan Forest Ecosystem Research Station,Shandong Agricultural University,Tai'an,271018,China;Institute of Botany,The Chinese Academy of Sciences,Beijing 100093,China;College of Forestry,Jiangxi Agricultural University,Nanchang 330032,China;College of Biological and Pharmaceutical Sciences,China Three Gorges University,Yichang 443000,China
引用格式:
[1]Zhaolin Sun;Peng Tian;Xuechao Zhao;Yanping Wang;Shunzhong Wang;Xiangmin Fang;Qingkui Wang;Shengen Liu-.Temporal shifts in the explanatory power and relative importance of litter traits in regulating litter decomposition)[J].森林生态系统(英文版),2022(06):755-763
A类:
decid
B类:
Temporal,shifts,explanatory,power,relative,importance,litter,traits,regulating,decomposition,Background,Litter,critically,affect,from,local,global,scales,However,our,under,standing,temporal,dynamics,linkages,especially,their,dependence,plant,functional,remains,limited,Methods,decomposed,leaf,tree,species,that,belong,two,different,types,evergreen,years,subtropical,forest,China,Weibull,residence,model,was,used,describe,stages,by,calculating,mass,loss,t1,1o,respectively,mean,MRT,resulting,parameters,were,explore,condensed,tannins,tensile,strength,across,Results,measured,had,lower,early,than,later,influencing,changed,dramatically,during,physical,exerting,predominant,nutrient,related,Moreover,found,three,controlled,rates,deciduous,predominately,while,mainly,carbon,Conclusions,This,study,suggests,vary,are,strongly,mediated,highlighting,necessity,consider,improving,predictions
AB值:
0.40585
相似文献
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。