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DOI10.1016/j.foreco.2019.04.045
Global patterns of tree stem growth and stand aboveground wood production in mangrove forests
Xiong Y.; Cakir R.; Phan S.M.; Ola A.; Krauss K.W.; Lovelock C.E.
发表日期2019
ISSN0378-1127
起始页码382
结束页码392
卷号444
英文摘要Mangrove forests provide important ecological and economic services including carbon sequestration and storage. The conservation and restoration of mangroves are expected to play an important role in mitigating climate change, and understanding the factors influencing mangrove stem growth and wood production are important in predicting and improving mangrove carbon sequestration and responses to environmental change. In this study, we collected data of individual diameter at breast height (DBH)growth rate and stand level aboveground wood production in both non-plantation (commonly termed as natural)mangroves and mangrove plantations across the world. Climatic factors, proxies of edaphic factors, as well as biological factors (e.g. mangrove species)were included as explanatory variables in the analyses to determine factors influencing the global patterns of tree growth rate and stand wood production of mangroves. Using hierarchical Classification and Regression Tree (CART)analysis we found interactions among environmental and biological factors in controlling mangrove tree growth rate and stand wood production. We also found different global patterns of tree growth rate and stand wood production between non-plantation mangroves and plantations. Climatic conditions (precipitation of driest season, precipitation seasonality)were the most important factors influencing the global pattern of tree DBH growth rate in non-plantation mangroves, with edaphic and biological characteristics also playing a role under specific climatic conditions. The global pattern of stand wood production in non-plantation mangroves was primarily determined by stand mean DBH growth rate of individual trees. However, in mangrove plantations management measures, specifically species selection and planting density, were the most important factors influencing the global patterns of tree growth rate and stand wood production. Our study provides parameters for a global estimation of long-term carbon sequestration in both non-plantation mangroves and mangrove plantations. In addition, our results help us better predict the dynamics of tree growth and carbon sequestration of non-plantation mangroves under changing climate. © 2019 Elsevier B.V.
英文关键词Aboveground biomass; Blue carbon; Carbon sequestration; Dendrometer; Diameter increment; Plantation; Productivity; Restoration
语种英语
scopus关键词Carbon; Carbon capture; Climate change; Digital storage; Ecology; Factor analysis; Image reconstruction; Plants (botany); Productivity; Restoration; Wood products; Above ground biomass; Carbon sequestration; Dendrometer; Diameter increment; Plantation; Forestry; aboveground biomass; biological characteristics; carbon sequestration; climate change; climate conditions; diameter; growth rate; mangrove; plantation; restoration ecology; stem; street vendor; wood; Analysis Of Variance; Carbon; Ecology; Productivity; Restoration; Wood Products; Rhizophoraceae
来源期刊Forest Ecology and Management
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/155975
作者单位Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou, 510520, China; School of Biological Sciences, The University of Queensland, St. Lucia, QLD 4072, Australia; ECOLAB, Université de Toulouse, CNRS, INPT, UPS, Toulouse, France; U.S. Geological Survey, Wetland and Aquatic Research Center, 700 Cajundome Blvd., Lafayette, LA 70506, United States
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Xiong Y.,Cakir R.,Phan S.M.,et al. Global patterns of tree stem growth and stand aboveground wood production in mangrove forests[J],2019,444.
APA Xiong Y.,Cakir R.,Phan S.M.,Ola A.,Krauss K.W.,&Lovelock C.E..(2019).Global patterns of tree stem growth and stand aboveground wood production in mangrove forests.Forest Ecology and Management,444.
MLA Xiong Y.,et al."Global patterns of tree stem growth and stand aboveground wood production in mangrove forests".Forest Ecology and Management 444(2019).
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