首页> 美国卫生研究院文献>Annals of Botany >Responses of Crown Development to Canopy Openings by Saplings of Eight Tropical Submontane Forest Tree Species in Indonesia: A Comparison with Cool-temperate Trees
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Responses of Crown Development to Canopy Openings by Saplings of Eight Tropical Submontane Forest Tree Species in Indonesia: A Comparison with Cool-temperate Trees

机译:印度尼西亚八种热带亚热带山地林树种的树苗对树冠开口的冠状发育响应:与温带树的比较

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摘要

• Background and Aims Growth in trunk height in canopy openings is important for saplings. How saplings increase height growth in canopy openings may relate to crown architectural constraints. Responses of crown development to canopy openings in relation to trunk height growth were studied for saplings (0·2–2·5 m tall) of eight tropical submontane forest tree species in Indonesia. The results of this study were also compared with those of temperate trees in northern Japan.• Methods The crown architecture differed among the eight tropical species, i.e. they had sparsely to highly developed branching structures. Crown allometry was compared among the eight species in each canopy condition (closed canopy or canopy openings), and between closed canopy and canopy openings within a species. A general linear regression model was used to analyse how each species increases height growth rate in canopy openings. Crown allometry and its plasticity were compared between tropical and temperate trees by a nested analysis of covariance.• Key Results Tropical submontane trees had responses similar to cool-temperate trees, showing an increase in height in canopy openings, i.e. taller saplings of sparsely branched species increase height growth rates by increasing the sapling leaf area. Cool-temperate trees have a wider crown projection area and a smaller leaf area per crown projection area to avoid self-shading within a crown compared with tropical submontane trees. Plasticity of the crown projection area is greater in cool-temperate trees than in tropical submontane trees, probably because of the difference in leaf longevity.• Conclusions This study concluded that interspecific variation in the responses of crown development to canopy openings in regard to increasing height related to the species' branching structure, and that different life-forms, such as evergreen and deciduous trees, had different crown allometry and plasticity.
机译:•背景和目的树冠开口处树干高度的增长对于树苗很重要。树苗如何增加树冠开口的高度增长可能与树冠的建筑约束有关。研究了印度尼西亚八种热带山地森林树种的树苗(0·2–2·5 m高)相对于树干高度的增长对冠冠发育的响应。这项研究的结果也与日本北部的温带树木进行了比较。•方法八种热带树种的树冠结构有所不同,即它们稀疏到高度发达的分支结构。比较了每个冠层状况(封闭的冠层或冠层开口)中的八个物种之间的冠形异形体,以及物种内的闭合冠层和冠层开口之间的冠层异形体。使用一般线性回归模型来分析每种物种如何增加冠层开口处的高度生长速率。通过对协方差的嵌套分析,比较了热带和温带树的冠形变构及其可塑性。•主要结果热带亚热带山地树的响应类似于冷温带树,显示冠层开口的高度增加,即稀疏分支树种的树苗更高通过增加幼树叶片的面积来增加高度的增长率。与热带山地树木相比,凉爽的树木具有较宽的树冠投影面积,而每个树冠投影面积的叶面积较小,以避免树冠内部的自遮蔽。温带树木的树冠投影区的可塑性要比热带山地树大,这可能是由于叶片寿命的差异。•结论本研究得出结论,树冠发育对冠层开口的响应随高度的增加而发生种间变化与该物种的分支结构有关,不同的生命形式(如常绿和落叶乔木)具有不同的冠形变构和可塑性。

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