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Morphological Response of Eight Quercus Species to Simulated Wind Load

机译:八个栎属物种对模拟风荷载的形态响应

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摘要

Leaf shape, including leaf size, leaf dissection index (LDI), and venation distribution, strongly impacts leaf physiology and the forces of momentum exerted on leaves or the canopy under windy conditions. Yet, little has been known about how leaf shape affects the morphological response of trees to wind load. We studied eight Quercus species, with different leaf shapes, to determine the morphological response to simulated wind load. Quercus trees with long elliptical leaves, were significantly affected by wind load (P< 0.05), as indicted by smaller specific leaf area (SLA), stem base diameter and stem height under windy conditions when compared to the control. The Quercus trees with leaves characterized by lanceolate or sinuous edges, showed positive morphological responses to wind load, such as bigger leaf thickness, larger stem diameter, allocation to root biomass, and smaller stem height (P< 0.05). These morphological responses to wind can reduce drag and increase the mechanical strength of the tree. Leaf dissection index (LDI), an important index of leaf shape, was correlated with morphological response to wind load (P< 0.05), including differences in SLA, in stem base diameter and in allocation to root biomass. These results suggest that trees with higher LDI, such as those with more and/or deeper lobes, are better adapted to wind load.
机译:叶的形状,包括叶的大小,叶的解剖指数(LDI)和静脉分布,在有风的条件下强烈影响叶的生理和动量作用在叶或冠层上的力。然而,关于叶的形状如何影响树木对风荷载的形态响应的知之甚少。我们研究了八种具有不同叶片形状的栎属物种,以确定对模拟风载荷的形态响应。与对照相比,长椭圆形叶子的栎树受风荷载的影响显着(P <0.05),这是由在风条件下较小的比叶面积(SLA),茎基部直径和茎高引起的。具有披针形或弯曲边缘特征的叶子的栎树对风荷载表现出积极的形态学响应,例如更大的叶子厚度,更大的茎直径,分配给根生物量和较小的茎高度(P <0.05)。这些对风的形态反应可以减少阻力并增加树木的机械强度。叶片解剖指数(LDI)是叶片形状的重要指标,与风荷载的形态响应相关(P <0.05),包括SLA,茎基直径和根生物量分配方面的差异。这些结果表明,具有较高LDI的树木(例如具有更多和/或更深的叶的树木)更适合风荷载。

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