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Interaction between the spectral photon flux density distributions of light during growth and for measurements in net photosynthetic rates of cucumber leaves

机译:生长期间光的光谱光子通量密度分布之间的相互作用以及用于测量黄瓜叶片净光合速率的相互作用

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The net photosynthetic rate of a leaf becomes acclimated to the plant's environment during growth. These rates are often measured, evaluated and compared among leaves of plants grown under different light conditions. In this study, we compared net photosynthetic rates of cucumber leaves grown under white light-emitting diode (LED) light without and with supplemental far-red (FR) LED light (W- and WFR-leaves, respectively) under three different measuring light (ML) conditions: their respective growth light (GL), artificial sunlight (AS) and blue and red (BR) light. The difference in the measured photosynthetic rates between W- and WFR-leaves was greater under BR than under GL and AS. In other words, an interaction between supplemental FR light during growth and the spectral photon flux density distribution (SPD) of ML affected the measured net photosynthetic rates. We showed that the comparison and evaluation of leaf photosynthetic rates and characteristics can be biased depending on the SPD of ML, especially for plants grown under different photon flux densities in the FR waveband. We also investigated the mechanism of the interaction. We confirmed that the distribution of excitation energy between the two photosystems (PSs) changed in response to the SPD of GL, and that this change resulted in the interaction, as suggested in previous reports. However, changes in PS stoichiometry could not completely explain the adjustment in excitation energy distribution observed in this study, suggesting that other mechanisms may be involved in the interaction.
机译:在生长过程中,叶片的净光合速率适应了植物的环境。通常在不同光照条件下生长的植物叶片之间测量,评估和比较这些比率。在这项研究中,我们比较了在三种不同的测量光下,不带和带补充远红(FR)LED灯(分别为W和WFR叶片)的白色发光二极管(LED)光下生长的黄瓜叶片的净光合速率。 (ML)条件:它们各自的生长灯(GL),人造阳光(AS)和蓝色和红色(BR)灯。在BR下,W-和WFR-叶之间测得的光合速率差异大于在GL和AS下。换句话说,生长过程中补充FR光与ML的光谱光子通量密度分布(SPD)之间的相互作用影响了测得的净光合速率。我们表明,根据ML的SPD,叶片光合速率和特征的比较和评估可能存在偏差,尤其是对于在FR波段中在不同光子通量密度下生长的植物而言。我们还研究了相互作用的机制。我们确认,两个光系统(PSs)之间的激发能量分布响应于GL的SPD而发生了变化,并且这种变化导致了相互作用,如先前的报告所建议。但是,PS化学计量的变化不能完全解释本研究中观察到的激发能分布的调节,表明相互作用中可能涉及其他机制。

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