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机械应力、沙埋和刈割对牛皮消生长和力学特性的互作效应。

Interactive effects of mechanical stress, sand burial and defoliation on growth and mechanical properties in Cynanchum komarovii.

机构信息

State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing, China.

出版信息

Plant Biol (Stuttg). 2013 Jan;15(1):126-34. doi: 10.1111/j.1438-8677.2012.00629.x. Epub 2012 Jun 7.

Abstract

In drylands, wind, sand burial and grazing are three important factors affecting growth and mechanical properties of plants, but their interactive effects have not yet been investigated. Plants of the semi-shrub Cynanchum komarovii, common in semi-arid parts of NE Asia, were subjected to brushing, burial and defoliation. We measured biomass allocation and relative increment rates of dry mass (RGR(m)), height (RGR(h)) and basal diameter (RGR(d)). We also measured the stem mechanical properties, Young's modulus (E), second moment of area (I), flexural stiffness (EI) and breaking stress (σ(b)), and scaled these traits to the whole-plant level to determine the maximum lateral force (F(lateral)) and the buckling safety factor (BSF). Brushing increased RGR(m); neither burial nor defoliation independently affected RGR(m), but together they reduced it. Among buried plants, brushing positively affected stem rigidity and strength through increasing RGR(d), E, I and EI, and at whole plant level this resulted in a larger BSF and F(lateral). However, among unburied plants this pattern was not observed. Our results thus show that effects of mechanical stress and grazing on plants can be strongly modified by burial, and these interactions should be taken into account when considering adaptive significance of plant mechanical traits in drylands.

摘要

在干旱地区,风、沙埋和放牧是影响植物生长和机械特性的三个重要因素,但它们之间的相互作用尚未得到研究。半灌木白首乌(Cynanchum komarovii)广泛分布于东北亚半干旱地区,我们对其进行了刷拭、埋沙和刈割处理。我们测量了生物量分配和干物质相对增量率(RGR(m))、高度(RGR(h))和基径(RGR(d))。还测量了茎的机械特性,包括杨氏模量(E)、二次矩(I)、弯曲刚度(EI)和断裂应力(σ(b)),并将这些性状标准化到整株水平,以确定最大横向力(F(lateral))和屈曲安全系数(BSF)。刷拭增加了 RGR(m);单独的埋沙或刈割都不会影响 RGR(m),但二者同时处理则会降低它。在埋沙的植株中,刷拭通过增加 RGR(d)、E、I 和 EI 来正向影响茎的刚性和强度,而在整株水平上,这会导致更大的 BSF 和 F(lateral)。然而,在未埋沙的植株中,这种模式并未观察到。因此,我们的研究结果表明,机械应力和放牧对植物的影响可以通过埋沙强烈改变,在考虑干旱地区植物机械性状的适应意义时,应该考虑这些相互作用。

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