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The influence of leaf anatomy on the internal light environment and photosynthetic electron transport rate: exploration with a new leaf ray tracing model

机译:叶片解剖结构对内部光环境和光合电子传输速率的影响:一种新的叶片射线追踪模型的探索

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摘要

Leaf photosynthesis is determined by biochemical properties and anatomical features. Here we developed a three-dimensional leaf model that can be used to evaluate the internal light environment of a leaf and its implications for whole-leaf electron transport rates (J). This model includes (i) the basic components of a leaf, such as the epidermis, palisade and spongy tissues, as well as the physical dimensions and arrangements of cell walls, vacuoles and chloroplasts; and (ii) an efficient forward ray-tracing algorithm, predicting the internal light environment for light of wavelengths between 400 and 2500nm. We studied the influence of leaf anatomy and ambient light on internal light conditions and J. The results show that (i) different chloroplasts can experience drastically different light conditions, even when they are located at the same distance from the leaf surface; (ii) bundle sheath extensions, which are strips of parenchyma, collenchyma or sclerenchyma cells connecting the vascular bundles with the epidermis, can influence photosynthetic light-use efficiency of leaves; and (iii) chloroplast positioning can also influence the light-use efficiency of leaves. Mechanisms underlying leaf internal light heterogeneity and implications of the heterogeneity for photoprotection and for the convexity of the light response curves are discussed.
机译:叶片的光合作用取决于生化特性和解剖特征。在这里,我们开发了三维叶子模型,可用于评估叶子的内部光环境及其对全叶电子传输速率的影响(J)。该模型包括:(i)叶片的基本成分,如表皮,木栅和海绵状组织,以及细胞壁,液泡和叶绿体的物理尺寸和排列; (ii)有效的前向射线追踪算法,可预测400至2500nm波长的光的内部光环境。我们研究了叶片解剖结构和环境光对内部光照条件和J的影响。结果表明:(i)即使叶绿体位于距叶片表面相同距离处,不同的叶绿体也可能经历完全不同的光照条件; (ii)束鞘延伸,是连接血管束和表皮的薄壁组织,间质细胞或巩膜组织的条带,可影响叶片的光合光利用效率; (iii)叶绿体的定位也会影响叶片的光利用效率。讨论了叶片内部光异质性的机理以及该异质性对光保护和光响应曲线凸性的影响。

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