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三种地中海栎属树种在叶腹面和叶背面光照下的光合性能,这些树种的分枝结构和单叶面积存在差异。

Photosynthetic performance under adaxial and abaxial illumination in three Mediterranean Quercus species differing in branch architecture and individual leaf area.

机构信息

Área de Ecología, Facultad de Biología, Universidad de Salamanca, Campus Unamuno s/n, 37071, Salamanca, Spain.

出版信息

Photosynth Res. 2023 Dec;158(3):181-194. doi: 10.1007/s11120-023-01045-7. Epub 2023 Aug 31.

DOI:10.1007/s11120-023-01045-7
PMID:37651028
Abstract

Light availability effects on canopy-level carbon balance constitute an especially difficult issue to address, owing to the strong spatial and temporal changes of the light environment within the canopy. One of the least explored aspects in relation to light environment is the interaction between leaf angle and leaf anatomy. The inclination of the leaf may affect the distribution of light between the adaxial and abaxial surface. The purpose of this study is determining the proportions of the leaf area receiving light from the abaxial side in branches of isolated trees in three Mediterranean oaks, as well as the photosynthetic responses to light under adaxial and abaxial illumination. The proportions of the leaf area illuminated from below were low for sun incidence angles near 0° with respect to the main axis of the branch. However, for sun incidence angles about 45°, the proportion of leaves receiving abaxial illumination was considerable. PPFD levels on the sunlit part of the abaxial surface were always lower than those in the upper leaf side, as a consequence of the lower projection efficiency for the leaves facing the sun by the lower side. Light absorptance was also lower on the abaxial side. The differences between both sides of the leaf tended to be stronger for thicker, longer-living leaves. We conclude that mean C assimilation of the canopy is significantly decreased by the presence of leaves facing the sun by the lower side and that this decrease is stronger in evergreen species with thicker leaves.

摘要

光照可用性对冠层水平碳平衡的影响是一个特别难以解决的问题,这主要是由于冠层内光照环境具有强烈的时空变化。与光照环境相关的一个研究最少的方面是叶片角度和叶片解剖结构之间的相互作用。叶片的倾斜可能会影响到叶片的光分布,从而影响叶片的光分布。本研究的目的是确定在三个地中海栎属树木的孤立树枝中,从背面接收光的叶片面积比例,以及在正面和背面光照下的光合作用对光的响应。对于接近主枝 0°的太阳入射角,来自下方的叶片面积的光照比例较低。然而,对于约 45°的太阳入射角,接收背面光照的叶片比例相当可观。由于面向太阳的叶片的较低投影效率,因此在背面光照的叶片表面上的 PPFD 水平始终低于上部叶片侧的水平。背面的光吸收率也较低。叶片两侧的差异在较厚、寿命较长的叶片中更为明显。我们得出的结论是,由于叶片面向太阳的下部,树冠的平均 C 同化作用显著降低,并且这种降低在具有较厚叶片的常绿物种中更为强烈。

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Photosynthetic performance under adaxial and abaxial illumination in three Mediterranean Quercus species differing in branch architecture and individual leaf area.三种地中海栎属树种在叶腹面和叶背面光照下的光合性能,这些树种的分枝结构和单叶面积存在差异。
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本文引用的文献

1
Branch architecture in relation to canopy positions in three Mediterranean oaks.三种地中海栎树冠位置与树枝结构的关系。
Oecologia. 2023 Apr;201(4):915-927. doi: 10.1007/s00442-023-05358-1. Epub 2023 Mar 18.
2
Leaf size and angle vary widely across species: what consequences for light interception?不同物种间叶片大小和角度差异很大:这对光照截留会有什么影响?
New Phytol. 2003 Jun;158(3):509-525. doi: 10.1046/j.1469-8137.2003.00765.x.
3
Photosynthetic capacity, integrated over the lifetime of a leaf, is predicted to be independent of leaf longevity in some tree species.
在某些树种中,叶片一生中的光合能力预计与叶片寿命无关。
New Phytol. 2003 Jul;159(1):203-211. doi: 10.1046/j.1469-8137.2003.00798.x.
4
Black coloration in leaves of Ophiopogon planiscapus 'Nigrescens'. Leaf optics, chromaticity, and internal light gradients.沿阶草‘黑麦冬’叶片的黑色。叶片光学、色度及内部光梯度。
Funct Plant Biol. 2007 Mar;34(2):130-138. doi: 10.1071/FP06220.
5
Ecophysiology of leaf trichomes.叶毛状体的生态生理学
Funct Plant Biol. 2016 Sep;43(9):807-814. doi: 10.1071/FP16095.
6
Foliar plasticity related to gradients of heat and drought stress across crown orientations in three Mediterranean Quercus species.叶片可塑性与树冠方向热和干旱胁迫梯度的关系研究 以三种地中海栎树物种为例
PLoS One. 2019 Oct 28;14(10):e0224462. doi: 10.1371/journal.pone.0224462. eCollection 2019.
7
Photosynthetic and structural acclimation to light direction in vertical leaves of Silphium terebinthinaceum.刺苞菜蓟垂直叶片对光照方向的光合与结构适应性
Oecologia. 1993 Sep;95(3):393-400. doi: 10.1007/BF00320994.
8
The geometry of light interception by shoots of Heteromeles arbutifolia: morphological and physiological consequences for individual leaves.光叶石楠嫩枝对光的截留几何形状:对单叶的形态和生理影响
Oecologia. 1999 Nov;121(2):171-182. doi: 10.1007/s004420050919.
9
A three-dimensional crown architecture model for assessment of light capture and carbon gain by understory plants.一种用于评估林下植物光捕获和碳增益的三维树冠结构模型。
Oecologia. 1996 Oct;108(1):1-12. doi: 10.1007/BF00333208.
10
The functional ecology of shoot architecture in sun and shade plants of Heteromeles arbutifolia M. Roem., a Californian chaparral shrub.加利福尼亚丛林灌木光叶石楠(Heteromeles arbutifolia M. Roem.)阳生和阴生植株地上部分结构的功能生态学
Oecologia. 1998 Mar;114(1):1-10. doi: 10.1007/s004420050413.