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Formation of Annual Ring Eccentricity in Coarse Roots within the Root Cage of Pinus ponderosa Growing on Slopes

机译:在坡上生长的松枝松枝根笼中的粗根形成年环偏心率

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The coarse roots of Pinus ponderosa included in the cage are the ones most involved in tree stability. This study explored the variations in traits, such as volume, cross-sectional area, and radius length of cage roots, and used those data to develop a mathematical model to better understand the type of forces occurring for each shallow lateral root segment belonging to different quadrants of the three-dimensional (3D) root system architecture. The pattern and intensity of these forces were modelled along the root segment from the branching point to the cage edge. Data of root cage volume in the upper 30 cm of soil showed a higher value in the downslope and windward quadrant while, at a deeper soil depth (>30 cm), we found higher values in both upslope and leeward quadrants. The analysis of radius length and the cross-sectional area of the shallow lateral roots revealed the presence of a considerable degree of eccentricity of the annual rings at the branching point and at the cage edge. This eccentricity is due to the formation of compression wood, and the eccentricity changes from the top portion at the branching point to the bottom portion at the cage edge, which we hypothesize may be a response to the variation in mechanical forces occurring in the various zones of the cage. This hypothesis is supported by a mathematical model that shows how the pattern and intensity of different types of mechanical forces are present within the various quadrants of the same root system from the taproot to the cage edge.
机译:笼中包含的松枝粒子的粗根是最涉及树稳定性的粗根。本研究探讨了笼根的体积,横截面积和半径长度的特征的变化,并利用这些数据来开发数学模型,以更好地了解所属的每个浅根部段发生的力量的力量三维(3D)根系统架构的象限。这些力的图案和强度沿从分支点到笼边缘的根部进行建模。较高30厘米的土壤中的根笼体积的数据在下坡和迎风象限中显示出更高的值,而在更深的土壤深度(> 30厘米)处,我们在上升板和延展象限中发现了更高的值。浅侧根的半径长度和横截面面积的分析显示了在分支点和笼边缘处的年环的相当程度的偏心率。这种偏心率是由于压缩木材的形成,并且偏心率从分支点处的顶部变为笼边缘处的底部,我们假设可以是对各个区域中发生的机械力变化的响应笼子。该假设是由数学模型支持的,示出了如何在与笼边缘到笼边缘的同一根系的各种象限内存在不同类型的机械力的模式和强度。

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