<p>Light quality affects the chemical composition of leafy vegetables through the regulation of primary and secondary metabolism. This study aimed to evaluate the effect of supplemental radiation provided by red or blue LED light on the nutritional quality of rocket (<i>Eruca sativa</i> Mill) leaves. Supplemental radiation of approximately 40&#xa0;µmol&#xa0;m<sup>−2</sup>&#xa0;s<sup>−1</sup> was added to a background of low sunlight intensity for 4&#xa0;h each day (from 15 to 19&#xa0;h). The LED treatment was applied as an End-of-Production treatment for 14&#xa0;days before harvest in greenhouse-grown rocket plants. Rocket leaves treated with red light showed an increase in Ca (28%), P (140%), carotenoids (40%), anthocyanins (75%) and total phenolics (34%) related to control after treatment, and no changes in chlorophyll, proteins and sugars. The results show that supplementation with low-intensity red light is an End-of-Production treatment that could improve the nutritional quality of rocket leaves without penalizing primary metabolism. The supplemental radiation used in the blue light treatment was insufficient, as no differences were observed in any of the metabolites studied compared to control plants.</p>

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The effect of preharvest application of low-intensity red or blue LED light on the nutritional quality of rocket

  • Corina Graciano,
  • Alejandra Bárcena,
  • Nadia Rolny,
  • Santiago Martínez,
  • Mauro Bartolozzi,
  • Lorenza Costa

摘要

Light quality affects the chemical composition of leafy vegetables through the regulation of primary and secondary metabolism. This study aimed to evaluate the effect of supplemental radiation provided by red or blue LED light on the nutritional quality of rocket (Eruca sativa Mill) leaves. Supplemental radiation of approximately 40 µmol m−2 s−1 was added to a background of low sunlight intensity for 4 h each day (from 15 to 19 h). The LED treatment was applied as an End-of-Production treatment for 14 days before harvest in greenhouse-grown rocket plants. Rocket leaves treated with red light showed an increase in Ca (28%), P (140%), carotenoids (40%), anthocyanins (75%) and total phenolics (34%) related to control after treatment, and no changes in chlorophyll, proteins and sugars. The results show that supplementation with low-intensity red light is an End-of-Production treatment that could improve the nutritional quality of rocket leaves without penalizing primary metabolism. The supplemental radiation used in the blue light treatment was insufficient, as no differences were observed in any of the metabolites studied compared to control plants.