Light-Quality Manipulation to Control Plant Growth and Photomorphogenesis in Greenhouse Horticulture: The State of the Art and the Opportunities of Modern LED Systems

Манипулирование качеством света для управления ростом растений и фотоморфогенезом в тепличном садоводстве: современное состояние и возможности современных LED-систем
Roberta Paradiso, Simona Proietti
2021-03-23

LED lightinglight qualityphotomorphogenesisphotoreceptorsspectral composition
Abstract Light quantity (intensity and photoperiod) and quality (spectral composition) affect plant growth and physiology and interact with other environmental parameters and cultivation factors in determining the plant behaviour. More than providing the energy for photosynthesis, light also dictates specific signals which regulate plant development, shaping and metabolism, in the complex phenomenon of photomorphogenesis, driven by light colours. These are perceived even at very low intensity by five classes of specific photoreceptors, which have been characterized in their biochemical features and physiological roles. Knowledge about plant photomorphogenesis increased dramatically during the last years, also thanks the diffusion of light-emitting diodes (LEDs), which offer several advantages compared to the conventional light sources, such as the possibility to tailor the light spectrum and to regulate the light intensity, depending on the specific requirements of the different crops and development stages. This knowledge could be profitably applied in greenhouse horticulture to improve production schedules and crop yield and quality. This article presents a brief overview on the effects of light spectrum of artificial lighting on plant growth and photomorphogenesis in vegetable and ornamental crops, and on the state of the art of the research on LEDs in greenhouse horticulture. Particularly, we analysed these effects by approaching, when possible, each single-light waveband, as most of the review works available in the literature considers the influence of combined spectra.
1
Applying knowledge of photomorphogenesis and LED spectral control can improve greenhouse production schedules, crop yield, and quality.
2
LEDs enable tailoring of light spectrum and intensity to crop- and stage-specific requirements, offering advantages over conventional light sources.
3
Light colours act as specific signals perceived by five classes of photoreceptors, which regulate development even at very low intensities.
4
Light quantity (intensity and photoperiod) and quality (spectral composition) jointly affect plant growth, physiology, and photomorphogenesis.
5
This review analyzed effects of individual light wavebands on vegetable and ornamental crops, addressing a gap where most literature studies combined spectra.

Greenhouse-grown vegetable and ornamental crops subjected to artificial LED lighting

Effects of light quality (spectral composition) and quantity (intensity and photoperiod) delivered by modern LED systems on plant growth and photomorphogenesis, including waveband-specific photoreceptor-driven developmental and physiological responses to optimize production, yield and quality

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2021-03-23
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Roberta Paradiso
Simona Proietti
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