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老挝过度采伐热带混合落叶林区的人工补植(英文)
引用本文:Per Christer Odén.老挝过度采伐热带混合落叶林区的人工补植(英文)[J].林业研究,2010,21(3):273-280.
作者姓名:Per  Christer  Odén
作者单位:Sovu,Mulualem Tigabu,Patrice Savadogo,Per Christer Odén(Swedish University of Agricultural Sciences, Faculty of Forest Sciences,Southern Swedish Forest Research Centre, PO Box 101, SE-230 53 Alnarp, Sweden);Lamphoune Xayvongsa(National University of Laos, Faculty of Forestry, PO Box 7322 Vientiane, Lao P.D.R.) 
基金项目:The data collection for the present study was financed by the Swedish International Development Cooperation Agency(Sida).
摘    要:人工补植通常用于增加低商业价值树种盛行的次生林中期望树种的密度。本研究评估了均格种植法(vis-à-vis gap)和行植法(line planting)2种人工补植方法,以及老挝过度采伐的热带混合落叶林中的青皮木(Vatica cinerea) 和龙脑香木(Dipterocarpus alatus)和3种豆科植物(缅茄 Afzeliax ylocarpa,大果紫檀Pterocarpus macrocarpus,酸枝木Dalbergia cochinchinensis)的表现。人工补植实验安捧在了一个随机完整的大块场地,做了7个重复。栽植7年后测定了存活率、高度和直径生长,并进行方差分析。用2种人工补植方法栽植的幼苗的存活率没有发生变化(p0.05)。然而,就直径和高度生长而言,均格种植法要比行植法效果更好。这与林冠在格间和行间块速封闭有关,这种情况在行间更加明显。在存活率,高度和直径生长方面,存在着明显的种间变异。耐阴的龙脑香科树种存活率和生长表现优于喜光树种(p0.0001)。个体的大小分布不规则,说明林下光照条件不均衡。考虑到行植法很难维持恒定线条宽度和均匀光线条件,及其每年用于清理的成本和僵硬的几何模式,我们推荐采用均格种植法。龙脑香木(Diperocarpus alatus)和青皮木(V.cinerea)可用于混合阔叶林人工补植的树种。缅茄、酸枝木和大果紫檀可作为人工林的混合树种,在较宽林隙地、直线区域和开放地种植或在火耕林幼林冠下种植。

关 键 词:林隙种植  行植法  次生林  树种试验  热带森林
收稿时间:17 June 2009

Enrichment planting in a logged-over tropical mixed deciduous forest of Laos
Sovu,Mulualem?Tigabu,Patrice?Savadogo,Per?Christer?Odén,Lamphoune?Xayvongsa.Enrichment planting in a logged-over tropical mixed deciduous forest of Laos[J].Journal of Forestry Research,2010,21(3):273-280.
Authors:Sovu  Mulualem Tigabu  Patrice Savadogo  Per Christer Odén  Lamphoune Xayvongsa
Institution:[1]Swedish Universityof Agricultural Sciences, Faculty of Forest Sciences, Southern Swedish Forest Research Centre, PO Box 101, SE-230 53 Alnarp Sweden [2]National University of Laos, Faculty of Forestry, PO Box 7322 Vientiane, Lao P.D.R
Abstract:Enrichment planting is commonly used for increasing the density of desired tree species in secondary forests often characterized by a prevalence of low commercial species. The objectives of the study were to identify the optimal enrichment planting method vis-a-vis gap and line planting, and to evaluate the performance of two dipterocarps (Vatica cinerea and Dipterocarpus alatus) and three legumes (Afzelia xylocarpa,Pterocarpus macrocarpus, Dalbergia cochinchinensis) planted in logged-over mixed deciduous forest of Laos. The enrichment planting trial was arranged in a randomized complete block design with seven replications. Survival, height and diameter were measured seven years after planting and subjected to analysis of variance. Survival rate of planted seedlings did not vary between enrichment planting (p > 0.05). However,diameter and height growth was favored more in gaps than in planting lines. This was related to rapid canopy closure in both gaps and lines,albeit more remarkable in planting lines. Significant inter-species variation was detected for survival rate, height and diameter. The shade-tolerant dipterecarps had better survival and growth than the light-demanding leguminous species (p < 0.0001). The size class distribution of individuals was irregular, accentuating uneven light condition in the understory.Given the difficulty to maintain constant line width and even light condition, the cost of annual clean operation and the rigid geometric patterns of planting lines, the use of logged-over gaps for enrichment planting is recommended. Dipterocarpus alatus and V. cinerea are recommended for enrichment planting in mixed deciduous forests. A. xylocarpa, D. cochichinensis and P. macrocarpus can be planted in wider gaps, lines and open sites as plantation of mixed species or under canopy of young swidden forests.
Keywords:Gap planting  Line planting  Secondary forest  Species trial  Tropical forest
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