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Variability and application of the chlorophyll fluorescence emission ratio red/far-red of leaves

机译:叶红/远红叶绿素荧光发射比的变化及其应用

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摘要

Various approaches to understand and make use of the variable chlorophyll (Chl) fluorescence emission spectrum and fluorescence ratio are reviewed. The Chl fluorescence of leaves consists of two maxima in the red (near 685-690 nm), and far-red region (near 730-740 nm). The intensity and shape of the Chl fluorescence emission spectrum of leaves at room temperature are primarily dependent on the concentration of the fluorophore Chl a, and to a lower degree also on the leaf structure, the photosynthetic activity, and the leaf's optical properties. The latter determine the penetration of excitation light into the leaf as well as the emission of Chl fluorescence from different depths of the leaf. Due to the re-absorption mainly of the red Chl fluorescence band emitted inside the leaf, the ratio between the red and the far-red Chl fluorescence maxima (near 690 and 730-740 nm, respectively), e.g., as F690/F735, decreases with increasing Chl content in a curvilinear relationship and is a good inverse indicator of the Chl content of the leaf tissue, e.g., before and after stress events. The Chl fluorescence ratio of leaves can be applied for Chl determinations in basic photosynthesis research, agriculture, horticulture, and forestry. It can be used to assess changes of the photosynthetic apparatus, developmental processes of leaves, state of health, stress events, stress tolerance, and also to detect diseases or N-deficiency of plants.
机译:审查了理解和利用可变叶绿素(Chl)荧光发射光谱和荧光比率的各种方法。叶子的Ch1荧光由红色(在685-690 nm附近)和远红色区域(在730-740 nm附近)的两个最大值组成。室温下叶片的Chl荧光发射光谱的强度和形状主要取决于荧光团Chla的浓度,在较低程度上还取决于叶片的结构,光合活性和叶片的光学特性。后者确定了激发光进入叶片的穿透以及叶片不同深度的Ch1荧光的发射。由于主要吸收叶内发射的红色Chl荧光带,因此红色和远红色Chl荧光最大值之间的比率(分别为690和730-740 nm附近),例如F690 / F735,曲线关系中,随着Chl含量的增加而降低,并且是叶片组织中Chl含量的良好反指示,例如在胁迫事件发生之前和之后。叶片的Chl荧光比可用于基础光合作用研究,农业,园艺和林业中的Chl测定。它可用于评估光合设备的变化,叶片的发育过程,健康状况,胁迫事件,胁迫耐受性,还可用于检测植物的病害或氮缺乏症。

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