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Selective Excitation of Photosystems in Chloroplasts Inside Plant Leaves Observed by Near-Infrared Laser-Based Fluorescencen Spectral Microscopy

机译:基于红外光谱的近红外激光光谱观察植物叶绿体中光系统的选择性激发

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摘要

In this study, we produced selective images of photosystems in plant chloroplasts in situ. We used a spectroimaging microscope, equipped with a near-infrared (NIR) laser that provided light at wavelengths mainly between 800 and 830 nm, to analyze chlorophyll autofluorescence spectra and images from chloroplasts in leaves of Zea mays at room temperature. Femtosecond laser excitation of chloroplasts in mesophyll cells revealed a spectral shape that was attributable to PSII and its antenna in the centers of grana spots. We found that a continuous wave emitted by the NIR laser at a wavelength as long as 820 nm induced chlorophyll autofluorescence with a high contribution from PSI through a one-photon absorption mechanism. A spectral shape attributable to PSI and its antenna was thus obtained using continuous wave laser excitation of chloroplasts in bundle sheath cells. These highly pure spectra of photosystems were utilized for spectral decomposition at every intrachloroplast space to show distributions of PSI and PSII and their associated antenna. A new methodology using an NIR laser to detect the PSI/PSII ratio in single chloroplasts in leaves at room temperature is described.
机译:在这项研究中,我们就地产生了植物叶绿体中光系统的选择性图像。我们使用配有近红外(NIR)激光的分光成像显微镜,该激光提供波长主要在800至830 nm之间的光,以分析玉米叶绿素在室温下的叶绿素自发荧光光谱和图像。飞秒激光对叶肉细胞中叶绿体的激发显示出光谱形状,该光谱形状归因于PSII及其在花斑斑点中心的触角。我们发现,NIR激光发出的波长长达820 nm的连续波会诱导叶绿素自发荧光,而PSI通过单光子吸收机制对叶绿素自发荧光有很大贡献。因此,使用束鞘细胞中叶绿体的连续波激光激发,获得了归因于PSI及其天线的光谱形状。这些高纯度的光系统光谱用于在每个叶绿体内部空间进行光谱分解,以显示PSI和PSII及其相关天线的分布。描述了一种使用NIR激光在室温下检测叶片中单个叶绿体中PSI / PSII比的新方法。

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