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Growth and Yield of Cassava in Agro Forestry System Using Crown Tree Management: Crown Pruning for Optimization Light Interception

机译:农林系统中木薯的生长和产量的冠树管理:冠修剪优化光的拦截。

摘要

The aim of this research is to measure the light intensity change under the tree due to the change of crown tree density in agro forestry system. The factorial completely randomized block design with four replications was applied on this research. The first factor were species in agro forestry system namely: mahagony (Switenia mahagony), teak (Tectona grandis), para-serianthes (Paraserianthes falcataria) and mangium (Acacia mangium). The age of the species mentioned above is five years old. Second factor were crown tree pruning including; without pruning (0%), pruning 50%, and pruning 75%. The result showed that the light intensity in open area is 1150 μmole m-2 sec-1.The average of light intensity under the crown tree of mahagoni, teak, paraserianthes and mangium were 830, 607, 443 and 403 μmole m-2sec.-1, respectively. The light intensity under the tree without pruning was 497 μmole m-2 sec-1, whereas with 50% and 75% of pruning increased light intensity up to 554 and 661 μmole m-2 sec.-1, respectively. Cassava tuber yield in agro forestry system were 5.4; 3.2; 3.7 and 1.2 Mg ha-1 respectively under mahagony, teak, paraserianthes and mangium, respectively. The yield of cassava in agro forestry system was lower than monoculture system (26.9 Mg ha-1).
机译:这项研究的目的是测量由于农林业系统中树冠密度的变化而引起的树下光强度的变化。这项研究采用了具有四个重复的阶乘完全随机区组设计。第一个因素是农林业系统中的物种,即:大头象(Switenia mahagony),柚木(Tectona grandis),对子ian(Paraserianthes falcataria)和man(Acacia mangium)。上述物种的年龄为5岁。第二个因素是树冠修剪,包括;不修剪(0%),修剪50%和修剪75%。结果表明,开阔地带的光强度为1150μmol·m-2 sec-1。马哈贡,柚木,刺五加和锰的冠树下的平均光强度为830、607、443和403μmole·m-2sec。 -1。没有修剪的树下的光强度为497μmolm-2 sec-1,而修剪时有50%和75%的光强度分别达到554和661μmolm-2 sec.-1。农林业系统的木薯块茎产量为5.4; 3.2;分别在大麦菊,柚木,梧桐和锰下分别为3.7和1.2 Mg ha-1。农林业系统中的木薯产量低于单作系统(26.9 Mg ha-1)。

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