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首页> 外文期刊>American Journal of Botany >Leaf biomechanics, morphology, and anatomy of the deciduous mesophyte Prunus serrulata (Rosaceae) and the evergreen sclerophyllous shrub Heteromeles arbutifolia (Rosaceae)
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Leaf biomechanics, morphology, and anatomy of the deciduous mesophyte Prunus serrulata (Rosaceae) and the evergreen sclerophyllous shrub Heteromeles arbutifolia (Rosaceae)

机译:落叶中生植物Prunus serrulata(蔷薇科)和常绿硬叶灌木杂种Arbutifolia(蔷薇科)的叶片生物力学,形态和解剖

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Leaf tensile properties were compared between the mesic deciduous tree Prunus serrulata (var. "Kwanzan") and the xeric and sclerophyllous chaparral evergreen shrub Heteromeles arbutifolia (M. Roem). All values for biomechanical parameters for H. arbutifolia were significantly greater than those of P. serrulata. The fracture planes also differed between the two species with P. serrulata fracturing along the secondary veins, while H. arbutifolia most often fractured across the leaf irrespective of the vein or mesophyll position, thus yielding qualitative differences in the stress-strain curves of the two species. Anatomically, P. serrulata exhibits features typical for a deciduous mesophytic leaf such as a thin cuticle, a single layer of palisade mesophyll, isodiametric spongy mesophyll, and extensive reticulation of the laminar veins. Heteromeles arbutifolia leaves, however, are typically two- to three-fold thicker with a 35% higher dry mass/fresh mass ratio. The vascular tissue is restricted to the interface of the palisade and spongy mesophyll near the center of the leaf. Both epidermal layers have a thick cuticle. The palisade mesophyll is tightly packed and two to three layers thick. The spongy mesophyll cells are ameboid in shape and tightly interlinked both to other spongy cells as well as to the overlying palisade layer. We conclude that the qualitative and quantitative biomechanical differences between the leaves of these two species are likely due to a complex interaction of internal architectural arrangement and the physical/chemical differences in the properties of their respective cell walls. These studies illustrate the importance that morphological and anatomical correlates play with mechanical behavior in plant material and ultimately reflect adaptations present in the leaves of chaparral shrubs that are conducive to surviving in arid environments.
机译:比较了中生落叶乔木李(变种“ Kwanzan”)与干叶和硬叶灌木常绿灌木异丁香(M. Roem)之间的叶片拉伸特性。 sup> 杨梅的生物力学参数的所有值均 明显大于P. serrulata。两种物种之间的断裂 平面也不同,沿次生静脉有P. serrulata 断裂,而杨梅H. arbutifolia最 常在整个叶片断裂不管静脉或 间位的位置如何,从而在两种物种的应力-应变曲线上产生质的差异。解剖上,P。 serrulata表现出典型的落叶中生 叶特征,例如薄的表皮,单层木栅叶肉, 等径海绵状叶肉。 ,以及 层状静脉的广泛网状结构。然而,异丁香的叶子通常厚2到3倍,干质量/新鲜质量比高35%。维管组织被限制在叶的 中心附近的 木栅与海绵状叶肉的界面。两个表皮层都有一个厚的表皮。 木栅叶肉紧密包装,两到三层 厚。海绵状叶肉细胞呈类阿贝状,并与其他海绵状细胞以及上层 木栅层紧密连接。我们得出结论,这两个物种 的叶片之间的定性和定量 生物力学差异很可能是由于内部建筑 的安排与各自细胞壁属性 的物理/化学差异。这些研究说明了形态学和解剖学相关的 重要性与植物材料的机械行为之间的关系,并最终反映出存在于丛林灌木叶片中的 适应性。 有助于在干旱环境中生存。

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