Beyond vegetables: effects of indoor <scp>LED</scp> light on specialized metabolite biosynthesis in medicinal and aromatic plants, edible flowers, and microgreens

За пределами овощей: влияние светодиочного (LED) света в помещении на биосинтез специализированных метаболитов в лекарственных и ароматических растениях, съедобных цветах и микрозелени
Giuseppina Pennisi, Francesco Orsini, Giorgio Gianquinto, Elisa Appolloni, Ilaria Zauli, Laura Carotti, Ivan Paucek, Stefania Quaini
2021-08-31

LED lighting recipesmedicinal and aromatic plantsmicrogreens and edible flowersred–blue light spectraspecialized metabolite biosynthesis
Abstract Specialized metabolites from plants are important for human health due to their antioxidant properties. Light is one of the main factors modulating the biosynthesis of specialized metabolites, determining the cascade response activated by photoreceptors and the consequent modulation of expressed genes and biosynthetic pathways. Recent developments in light emitting diode (LED) technology have enabled improvements in artificial light applications for horticulture. In particular, the possibility to select specific spectral light compositions, intensities and photoperiods has been associated with altered metabolite content in a variety of crops. This review aims to analyze the effects of indoor LED lighting recipes and management on the specialized metabolite content in different groups of crop plants (namely medicinal and aromatic plants, microgreens and edible flowers), focusing on the literature from the last 5 years. The literature collection produced a total of 40 papers, which were analyzed according to the effects of artificial LED lighting on the content of anthocyanins, carotenoids, phenols, tocopherols, glycosides, and terpenes, and ranked on a scale of 1 to 3. Most studies applied a combination of red and blue light (22%) or monochromatic blue (23%), with a 16 h day −1 photoperiod (78%) and an intensity greater than 200 μmol m −2 s −1 (77%). These treatment features were often the most efficient in enhancing specialized metabolite content, although large variations in performance were observed, according to the species considered and the compound analyzed. The review aims to provide valuable indications for the definition of the most promising spectral components toward the achievement of nutrient‐rich indoor‐grown products. © 2021 The Authors. Journal of The Science of Food and Agriculture published by John Wiley &amp; Sons Ltd on behalf of Society of Chemical Industry.
1
A literature review of 40 papers from the last five years ranked LED effects on specialized metabolites on a 1–3 scale to identify promising spectral components for nutrient-rich indoor crops.
2
LED spectral composition, intensity, and photoperiod significantly modulate specialized metabolite biosynthesis in medicinal and aromatic plants, microgreens, and edible flowers.
3
Large interspecific and compound-specific variations were observed, indicating no single LED recipe universally maximizes all specialized metabolites.
4
Most reviewed studies used red+blue combinations (22%) or monochromatic blue (23%), 16 h day−1 photoperiod (78%), and >200 μmol m−2 s−1 intensity (77%).
5
These common LED treatments (red+blue or blue, 16 h, >200 μmol m−2 s−1) were often most effective at enhancing anthocyanins, carotenoids, phenols, tocopherols, glycosides, and terpenes, though effectiveness varied by species and compound.

Indoor LED lighting treatments applied to crop plants (medicinal and aromatic plants, microgreens, and edible flowers)

Effects of LED spectral compositions, intensities and photoperiods on the biosynthesis and content of specialized metabolites (anthocyanins, carotenoids, phenols, tocopherols, glycosides, terpenes) in those crops

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2021-08-31
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Giuseppina Pennisi
Francesco Orsini
Giorgio Gianquinto
Elisa Appolloni
Ilaria Zauli
Laura Carotti
Ivan Paucek
Stefania Quaini
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