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海南尖峰岭热带山地雨林生理生态功能群特征 被引量:6
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作者 陶晶 臧润国 +2 位作者 李意德 毛培利 林明献 《林业科学》 EI CAS CSCD 北大核心 2011年第8期14-18,共5页
在海南尖峰岭热带山地雨林,野外测定获得3个与植物-大气相互作用直接相关的生理生态特性指标(最大净光合速率、最大气孔导度和比叶面积),应用等级聚类分析和NMS排序方法对热带山地雨林的主要植物进行功能群划分,分析热带山地雨林4个演... 在海南尖峰岭热带山地雨林,野外测定获得3个与植物-大气相互作用直接相关的生理生态特性指标(最大净光合速率、最大气孔导度和比叶面积),应用等级聚类分析和NMS排序方法对热带山地雨林的主要植物进行功能群划分,分析热带山地雨林4个演替阶段(初期、早期、中期和后期)生理生态功能群组成及其动态规律。结果表明:海南尖峰岭热带山地雨林的87个主要植物种类可划分为8个功能群,检验结果显示功能群间存在显著差异,而功能群内同质性较高;功能群的丰富度及相对多度在不同演替阶段差异显著;功能群的丰富度在演替初期最低,演替早、中期最高,演替后期略有降低;演替初期的优势功能群光合能力强,水分利用效率低,演替早、中期的优势功能群光合能力、水分利用效率均为中等;演替后期的优势功能群光合能力偏低,水分利用效率高。 展开更多
关键词 热带山地雨林 植物功能群 生理生态特性 等级聚类分析 非度量多维标度排序(nms) 演替阶段 海南岛
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Mapping species assemblages of tropical forests at different hierarchical levels based on multivariate regression trees
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作者 Qi Yang Maaike Y.Bader +3 位作者 Guang Feng Jialing Li Dexu Zhang Wenxing Long 《Forest Ecosystems》 SCIE CSCD 2023年第3期387-397,共11页
Background: Vegetation distribution maps are of great significance for nature protection and management. In diverse tropical forests, accurate spatial mapping of vegetation types is challenging;the high species divers... Background: Vegetation distribution maps are of great significance for nature protection and management. In diverse tropical forests, accurate spatial mapping of vegetation types is challenging;the high species diversity and abundance of rare species challenge classification concepts, while remote sensing signals may not vary systematically with species composition, complicating the technical capability for delineating vegetation types in the landscape.Methods: We used a combination of field-based compositional data and their relations to environmental variables to predict the distribution of forest types in the Wuzhishan National Natural Reserve(WNNR), Hainan Island,China, using multivariate regression trees(MRT). The MRT was based on arboreal vegetation composition in 132plots of 20 m×20 m with a regular spacing of 1 km. Apart from the MRT, non-metric multidimensional scaling(NMDS) was used to evaluate vegetation-environment relationships.Results: The MRT model worked best when using 14 key environmental variables including topography, climate,latitude and soil, although the difference with the simpler model including only topographical variables was small. The full model classified the 132 plots into 3 vegetation types, 6 formation groups, 20 formations and 65associations at different hierarchical syntaxonomic levels. This model was the basis for forest vegetation maps for the WNNR. MRT and NMDS showed that elevation was the main driving force for the distribution of vegetation types and formation groups. Climate, latitude, and soil(especially available P), together with topographic variables, all influenced the distribution of formations and associations.Conclusions: While elevation determines forest-type distributions, lower-level syntaxonomic forest classes respond to the topographic diversity typical for mountains. Apart from providing the first detailed forest vegetation map for any part of WNNR, we show how, in spite of limitations, MRT with existing environmental data can be a useful method for mapping diverse and remote tropical forests. 展开更多
关键词 Species assemblages Tropical forest MAPPING Multivariate regression trees non-metric multidimensional scaling
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