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Morpho-Physiological Responses of Arabidopsis thaliana L. to the LED-Sourced CoeLux® System

机译:Arabidopsis Thaliana L.对LED源Coelux®系统的形态学响应

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摘要

The CoeLux® lighting system reproduces the true effect of natural sunlight entering through an opening in the ceiling, with a realistic sun perceived at an infinite distance surrounded by a clear blue sky. It has already been demonstrated that this new lighting system generates long-term positive effects on human beings; however, there are no investigations so far concerning the plant responses to CoeLux® lighting. To fill this gap, the model plant Arabidopsis thaliana L. was grown at four different distances from the light source, corresponding to four different light intensities (120, 70, 30, 20 μmol m−2 s−1). High-pressure sodium lamps were used as control light. Plant phenology and morpho-physiological traits were monitored to assess for the first time the ability of plants to grow and develop under the light spectrum and intensity of the CoeLux® system. Plants grown at the lower light intensities showed a delayed life cycle and were significantly smaller than plants grown with more light. Furthermore, plants grown under the CoeLux® light type showed an additional deficit when compared to control plants. Overall, our results show that both the light spectrum and intensity of the CoeLux® system had a strong impact on A. thaliana growth performance.
机译:Coelux®照明系统再现天然阳光进入天花板的自然阳光的真正效果,逼真的阳光感知在清澈的蓝天周围的无限距离。已经证明,这种新的照明系统对人类产生了长期积极影响;但是,迄今为止没有关于植物对Coelux®照明的响应的调查。为了填补这种差距,模型植物拟南芥拟南芥L.从光源的四个不同的距离生长,对应于四种不同的光强度(120,70,30,20μmolM-2 S-1)。高压钠灯用作对照光。监测植物候选和形态生理性状,评估植物在Coelux®系统的光谱和强度下植物生长和发展的能力。在较低的光强度下生长的植物显示出延迟的生命周期,并且比用更多光生长的植物显着小。此外,与对照植物相比,在Coelux®轻型下生长的植物显示出额外的缺陷。总体而言,我们的结果表明,Coelux®系统的光谱和强度都对A. Thaliana的生长性能产生了强烈影响。

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