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Study of Plant Cultivation Using a Light-Emitting Diode Illumination System to Control the Spectral Irradiance Distribution

机译:用发光二极管照明系统研究植物培养以控制光谱辐照度分布

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In plant cultivation, the number of photons is more important than the light energy from the chemical reactions that occur during photosynthesis. In addition, the blue and red photon flux (B/R) ratio is an important parameter for plant cultivation. Here we discuss the effect of the spectral irradiance distribution and the B/R ratio on plant cultivation. We cultivated lettuce seedlings, Lactuca sativa L. Cv. Okayama, using a light-emitting diode illumination system that can precisely control the spectral irradiance distribution and B/R ratio. The B/R ratio varied from 0.36 to 2.06 according to the intensity of the blue light when the photosynthetic photon flux density values were sufficient to ensure the 150 - 200?μmol?m?2?s?1.?High photon flux densities of blue light result in reduced plant length, plant height, and leaf area, thereby suggesting its role in the suppression of leaf growth. Therefore, we conclude that a lower photon flux of blue light (B/R Ratio) is optimal for lettuce cultivation.
机译:在植物培养中,光子的数量比光合作用期间发生的化学反应的光能更重要。此外,蓝色和红色光子通量(B / R)比是植物栽培的重要参数。在这里,我们讨论了光谱辐照度分布和B / R比对植物栽培的影响。我们培养了莴苣幼苗,Lactuca sativa L.CV。冈山,使用发光二极管照明系统,可以精确地控制光谱辐照度分布和B / R比。当光合光子通量密度值足以确保150-200≤μmol≤2Ω时,b / r比根据蓝光的强度,从0.36到2.06变化.2?2?1.?高光子助焊剂密度蓝光导致植物长度,植物高度和叶面积降低,从而表明其在抑制叶片生长中的作用。因此,我们得出结论,蓝光(B / R比)的较低光子通量对生菜栽培是最佳的。

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