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Impact of Light-Emitting Diodes (LEDs) and its Potential on Plant Growth and Development in Controlled-Environment Plant Production System

机译:受控环境植物生产系统中发光二极管(LED)及其潜力对植物生长和发育的影响

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Background: Canopy light environment plays a crucial role in plant growth and development. Gas-discharge lamps (GDLs) are typically used in controlled-environment crop production system for illuminating crops. GDLs have broad emission spectra and heat-up significantly during operation. The advent of light-emitting diodes (LEDs) has provided the means for developing a lighting system for growing crops that is more power-economical and customizable than the conventional lighting systems. LED treatments with specific irradiation wavelengths and intensities may trigger photoreceptors to induce desired morphological and physiological changes in the crops. Objective: The present review describes the advantages of LEDs over the conventionally used GDLs from the perspective of its implementation in controlled-environment crop production along with its working principle and potential. Methods: Various food crops and ornamental plants were grown in controlled-environment chambers under LED treatments of various wavelengths. A variety of parameters including morphological, physiological and biochemical were studied to assess the impact of LEDs on plant growth and development. Results: Salient features of controlled-environment plant growth experiments conducted with LEDs as the light source have been summarized, outlining the variety of responses exhibited by different plant species to specific LED treatments. Conclusion: LED lighting systems are capable of providing customized light treatments to improve yield and enhance various qualitative traits in different crop species. The studies are thus indicative of the potential of LEDs as the next generation light source for controlled-environment crop production.
机译:背景:冠层光照环境在植物生长发育中起着至关重要的作用。气体放电灯(GDL)通常用于受控环境作物生产系统中,以照亮作物。 GDL具有较宽的发射光谱,并且在运行过程中会明显发热。发光二极管(LED)的出现提供了一种用于开发用于种植农作物的照明系统的装置,该装置比传统的照明系统更省电且可定制。具有特定照射波长和强度的LED处理可能会触发感光器,从而在农作物中引起所需的形态和生理变化。目的:本综述从控制环境作物生产中实施LED的角度,工作原理和潜力,介绍了LED相对于常规使用的GDL的优势。方法:在各种波长的LED处理下,将各种粮食作物和观赏植物种植在可控环境室中。研究了各种参数,包括形态,生理和生化指标,以评估LED对植物生长和发育的影响。结果:总结了以LED为光源进行的受控环境植物生长实验的显着特征,概述了不同植物物种对特定LED处理表现出的各种响应。结论:LED照明系统能够提供定制的照明处理,以提高产量并增强不同农作物物种的各种定性特征。因此,这些研究表明了LED作为用于受控环境作物生产的下一代光源的潜力。

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