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首页> 外文期刊>Trees. Structure and Function >Light interception in apple trees influenced by canopy architecture manipulation
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Light interception in apple trees influenced by canopy architecture manipulation

机译:受树冠结构操纵影响的苹果树中的光拦截

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Improvement of light penetration within tree canopies has been a constant objective of fruit tree architecture manipulation through the setting up of training systems. Recently, centrifugal training, i.e. the removal of fruiting shoots in the tree centre and on the underside of branches, has been proposed to improve fruit size and colour as well as return-bloom as compared to conventional solaxe-trained trees with equivalent crop loads. The present study was conducted to quantify the benefits of centrifugal training on light interception by the fruiting shoots via computer-assisted three-dimensional representations of foliage geometry. Data were collected on six 5-year-old apple trees cv.Galaxy, trained either with solaxe or centrifugal training systems, using an electromagnetic 3D digitiser. The 3D distribution of the foliage in the tree canopy was recreated by combining both the spatial locations of shoots (as measured from 3D digitising) and foliage reconstruction. Light interception efficiency properties of the trees were characterised by silhouette to total area ratio (STAR) values computed from images of the 3D mock-ups. Compared to the solaxe system, centrifugal training significantly improved the STAR of the whole tree by 20%. It also increased both leaf area and STAR of the fruiting shoots by approximately 15%, regardless of their position in the canopy. In this paper, we discuss the role of this enhanced light interception by the canopy in increasing the autonomy of the fruiting shoot, i.e. improved fruit size and colour, and return-bloom.
机译:通过建立培训系统,改善树冠内部的光穿透力一直是果树体系结构操纵的一个不变目标。最近,已经提出了离心训练,即去除树中心和树枝下侧的果枝,以与同等农作物负载的常规经solaxe训练​​的树相比,改善果实的大小和颜色以及回花。进行本研究是为了通过计算机辅助的三维三维几何图形表示法来量化离心训练对果枝光拦截的好处。使用电磁3D数字化仪收集了六棵有银杏树的5年树龄苹果树的数据,这些树用solaxe或离心训练系统进行了训练。通过结合枝条的空间位置(通过3D数字化测量)和枝叶重建,重新创建了树冠中枝叶的3D分布。树木的光拦截效率特性通过根据3D模型的图像计算出的轮廓与总面积之比(STAR)值来表征。与solaxe系统相比,离心训练可将整棵树的STAR显着提高20%。无论其在冠层中的位置如何,它还使结果实枝的叶面积和STAR均增加了约15%。在本文中,我们讨论了冠层这种增强的光拦截功能在增加结果实枝的自主性(即改善果实大小和颜色以及回花)中的作用。

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