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首页> 外文期刊>Environmental and experimental botany >Seasonal and diurnal leaf orientation, bifacial sunlight incidence, and leaf structure in the sand dune herb Hydrocotyle bonariensis
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Seasonal and diurnal leaf orientation, bifacial sunlight incidence, and leaf structure in the sand dune herb Hydrocotyle bonariensis

机译:沙丘草本植物Bonariensis的季节性和昼夜叶片方向,双面阳光入射和叶片结构

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摘要

A conceptual model has been proposed whereby leaf orientation and resulting sunlight exposure dictate functional leaf structure. Specifically, the model states that this relationship is driven by the absolute amount and ratio of incident sunlight on adaxial and abaxial leaf surfaces. To test this model, the relationships between corresponding values of leaf orientation and incident sunlight on both leaf surfaces were measured for the sand dune herb Hydrocotyle bonariensis over a growth season, along with examination of leaf structure. For mature leaves, leaf angle from horizontal and azimuth angle significantly increased over the growing season, indicating diurnal midday avoidance and seasonal maximization of incident sunlight. Consequently, seasonal changes in leaf orientation resulted in an overall decrease in midday sunlight incidence on the adaxial surface and a slight shift in the daily occurrence of peak abaxial incidence. Adaxial surfaces received three to four times more sunlight than abaxial surfaces, and leaf cross-sections revealed relatively thick (564 mu m) leaves with multiple adaxial palisade layers and stomata on both leaf surfaces, as predicted by the conceptual model and measured ratio of incident sunlight on adaxial and abaxial leaf surfaces. These data provide further evidence of the relationship between leaf orientation and resulting absolute levels of sunlight incidence on both leaf surfaces, as well as their ratio, and corresponding differences in internal and external leaf structure. (C) 2011 Elsevier B.V. All rights reserved.
机译:已经提出了一种概念模型,其中叶片的方向和所导致的日光照射决定了叶片的功能结构。具体来说,该模型指出,这种关系是由入射光的绝对量和比率驱动的,该绝对量和入射光在正面和背面叶片表面上的比例。为了测试该模型,测量了沙丘草本植物Bycocotyle bonariensis在整个生长季节的叶片方向和入射光在两个叶片表面上的对应值之间的关系,并检查了叶片结构。对于成熟的叶片,在整个生长季节中,叶片角相对于水平方向和方位角的角度都显着增加,表明昼夜避免使用,并且入射阳光季节最大化。因此,叶片方向的季节性变化导致正午表面上正午阳光入射的总体减少,以及每天出现的峰值背轴入射的轻微变化。根据概念模型和测得的入射比,预测到近轴表面的日照量是近轴表面的三到四倍,叶子的横截面显示叶子相对较厚(564微米),在两片叶子表面上都有多个近轴栅栏层和气孔。叶片正面和背面的阳光。这些数据提供了进一步的证据,证明了叶片方向与两个叶片表面上阳光入射的绝对水平之间的关系,以及它们的比率,以及内部和外部叶片结构的相应差异。 (C)2011 Elsevier B.V.保留所有权利。

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