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Stimulating seedling growth in early stages of secondary forest succession: a modeling approach to guide tree liberation

机译:在次生森林演替的早期刺激幼苗生长:指导树木解放的建模方法

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摘要

Excessive growth of non-woody plants and shrubs on degraded lands can strongly hamper tree growth and thus secondary forest succession. A common method to accelerate succession, called liberation, involves opening up the vegetation canopy around young target trees. This can increase growth of target trees by reducing competition for light with neighboring plants. However, liberation has not always had the desired effect, likely due to differences in light requirement between tree species. Here we present a 3D-model, which calculates photosynthetic rate of individual trees in a vegetation stand. It enables us to examine how stature, crown structure, and physiological traits of target trees and characteristics of the surrounding vegetation together determine effects of light on tree growth. The model was applied to a liberation experiment conducted with three pioneer species in a young secondary forest in Vietnam. Species responded differently to the treatment depending on their height, crown structure and their shade-tolerance level. Model simulations revealed practical thresholds over which the tree growth response is heavily influenced by the height and density of surrounding vegetation and gap radius. There were strong correlations between calculated photosynthetic rates and observed growth: the model was well able to predict growth of trees in young forests and the effects of liberation there upon. Thus, our model serves as a useful tool to analyze light competition between young trees and surrounding vegetation and may help assess the potential effect of tree liberation.
机译:在退化土地上非木本植物和灌木的过度生长会严重阻碍树木的生长,进而阻碍次生森林的演替。一种称为“解放”的加速继承的常用方法包括打开目标树周围的植被冠层。通过减少与邻近植物的光照竞争,可以增加目标树木的生长。但是,解放可能并不总是具有理想的效果,这可能是由于树种之间对光的需求不同所致。在这里,我们介绍一个3D模型,该模型计算植被林中单个树木的光合速率。它使我们能够检查目标树木的身材,树冠结构和生理特征以及周围植被的特征如何共同决定光对树木生长的影响。该模型被应用于在越南一个年轻的次生林中对三种先锋物种进行的解放实验。物种对处理的反应不同,具体取决于它们的高度,冠状结构和耐荫性水平。模型仿真显示了实际阈值,在该阈值上树木生长响应受到周围植被的高度和密度以及间隙半径的严重影响。在计算的光合作用速率和观察到的生长之间有很强的相关性:该模型能够很好地预测年轻森林中树木的生长及其对森林的解放作用。因此,我们的模型可作为分析幼树与周围植被之间光竞争的有用工具,并可能有助于评估树木解放的潜在影响。

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