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The Effect of Multispectral Light Emitting Diodes (LEDs) on the Activation of Morphogenic Processes in Cell Culture of Rice Oryza Sativa I

机译:多光谱发光二极管(LED)对水稻细胞培养型水稻苜蓿I的培养活化的影响

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The influence of light irradiation with different intensity parameters and different spectral composition on morphogenic structures, namely green zones of cultivar Dolinny cell cultures was investigated. Light irradiation was generated by 10 types of LEDs with different spectra: cold white (Cold W), white (W), warm white (Warm W), Full spectrum, Red, Deep Red, Yellow, Green, Blue and Royal Blue. It was shown that LEDs with Cold W, W and Royal Blue more actively influenced on green zones generation, while Red, Red Deep, Yellow и Green displayed no results. Standard fluorescent lighting illumination (WFL) was used as a control. The number of induced green zones was lower under control luminescent light (WFL) in comparison with the green zones, which were induced by the illumination of the most active spectra of LEDs, but lifetime of these control structures was longer. After 19 weeks of cultivation, degradation of the green zones of the calli was not observed under control and LEDs Cold W, Warm W, and Blue in the position with maximal intensity of light. The Royal Blue illumination displayed the same results not only in the position with maximum intensity but also at the other intensities approaching the control values (49,3; 230 μmol/s*m2).
机译:研究了不同强度参数和不同光谱组成的光照射对形态发生的影响,即品种多啉细胞培养物的绿区。光辐射由10种类型的LED产生不同的光谱:冷白(冷W),白色(W),温暖的白色(温暖W),全谱,红色,深红色,黄色,绿色,蓝色和皇家蓝色。结果表明,具有寒冷的W,W和Royal Blue的LED更积极地影响绿色区域的生成,而红色,红色深,黄色绿色显示没有结果。标准荧光照明照明(WFL)用作对照。与绿色区域相比,在控制发光光(WFL)下,诱导的绿区的数量较低,该绿区由LED的最活跃光谱的照明诱导,但这些控制结构的寿命更长。在培养19周后,在控制中未观察到愈伤组织的绿色区域的降解,并且在具有最大光线强度的位置处的寒冷W,温暖的W和蓝色。皇家蓝色照明不仅显示在最大强度的位置,而且在接近控制值的其他强度下显示相同的结果(49,3;230μmol/ s * m2)。

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