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Manipulation of the Phytochemical Profile of Tenderstem(®) Broccoli Florets by Short Duration, Pre-Harvest LED Lighting

Light quality has been reported to influence the phytochemical profile of broccoli sprouts/microgreens; however, few studies have researched the influence on mature broccoli. This is the first study to investigate how exposing a mature glasshouse grown vegetable brassica, Tenderstem(®) broccoli, to...

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Autores principales: Langston, Faye M. A., Monaghan, James M., Cousins, Olivia, Nash, Geoffrey R., Bows, John R., Chope, Gemma
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9144114/
https://www.ncbi.nlm.nih.gov/pubmed/35630699
http://dx.doi.org/10.3390/molecules27103224
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author Langston, Faye M. A.
Monaghan, James M.
Cousins, Olivia
Nash, Geoffrey R.
Bows, John R.
Chope, Gemma
author_facet Langston, Faye M. A.
Monaghan, James M.
Cousins, Olivia
Nash, Geoffrey R.
Bows, John R.
Chope, Gemma
author_sort Langston, Faye M. A.
collection PubMed
description Light quality has been reported to influence the phytochemical profile of broccoli sprouts/microgreens; however, few studies have researched the influence on mature broccoli. This is the first study to investigate how exposing a mature glasshouse grown vegetable brassica, Tenderstem(®) broccoli, to different light wavelengths before harvest influences the phytochemical content. Sixty broccoli plants were grown in a controlled environment glasshouse under ambient light until axial meristems reached >1 cm diameter, whereupon a third were placed under either green/red/far-red LED, blue LED, or remained in the original compartment. Primary and secondary spears were harvested after one and three weeks, respectively. Plant morphology, glucosinolate, carotenoid, tocopherol, and total polyphenol content were determined for each sample. Exposure to green/red/far-red light increased the total polyphenol content by up to 13% and maintained a comparable total glucosinolate content to the control. Blue light increased three of the four indole glucosinolates studied. The effect of light treatments on carotenoid and tocopherol content was inconclusive due to inconsistencies between trials, indicating that they are more sensitive to other environmental factors. These results have shown that by carefully selecting the wavelength, the nutritional content of mature broccoli prior to harvest could be manipulated according to demand.
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spelling pubmed-91441142022-05-29 Manipulation of the Phytochemical Profile of Tenderstem(®) Broccoli Florets by Short Duration, Pre-Harvest LED Lighting Langston, Faye M. A. Monaghan, James M. Cousins, Olivia Nash, Geoffrey R. Bows, John R. Chope, Gemma Molecules Article Light quality has been reported to influence the phytochemical profile of broccoli sprouts/microgreens; however, few studies have researched the influence on mature broccoli. This is the first study to investigate how exposing a mature glasshouse grown vegetable brassica, Tenderstem(®) broccoli, to different light wavelengths before harvest influences the phytochemical content. Sixty broccoli plants were grown in a controlled environment glasshouse under ambient light until axial meristems reached >1 cm diameter, whereupon a third were placed under either green/red/far-red LED, blue LED, or remained in the original compartment. Primary and secondary spears were harvested after one and three weeks, respectively. Plant morphology, glucosinolate, carotenoid, tocopherol, and total polyphenol content were determined for each sample. Exposure to green/red/far-red light increased the total polyphenol content by up to 13% and maintained a comparable total glucosinolate content to the control. Blue light increased three of the four indole glucosinolates studied. The effect of light treatments on carotenoid and tocopherol content was inconclusive due to inconsistencies between trials, indicating that they are more sensitive to other environmental factors. These results have shown that by carefully selecting the wavelength, the nutritional content of mature broccoli prior to harvest could be manipulated according to demand. MDPI 2022-05-18 /pmc/articles/PMC9144114/ /pubmed/35630699 http://dx.doi.org/10.3390/molecules27103224 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Langston, Faye M. A.
Monaghan, James M.
Cousins, Olivia
Nash, Geoffrey R.
Bows, John R.
Chope, Gemma
Manipulation of the Phytochemical Profile of Tenderstem(®) Broccoli Florets by Short Duration, Pre-Harvest LED Lighting
title Manipulation of the Phytochemical Profile of Tenderstem(®) Broccoli Florets by Short Duration, Pre-Harvest LED Lighting
title_full Manipulation of the Phytochemical Profile of Tenderstem(®) Broccoli Florets by Short Duration, Pre-Harvest LED Lighting
title_fullStr Manipulation of the Phytochemical Profile of Tenderstem(®) Broccoli Florets by Short Duration, Pre-Harvest LED Lighting
title_full_unstemmed Manipulation of the Phytochemical Profile of Tenderstem(®) Broccoli Florets by Short Duration, Pre-Harvest LED Lighting
title_short Manipulation of the Phytochemical Profile of Tenderstem(®) Broccoli Florets by Short Duration, Pre-Harvest LED Lighting
title_sort manipulation of the phytochemical profile of tenderstem(®) broccoli florets by short duration, pre-harvest led lighting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9144114/
https://www.ncbi.nlm.nih.gov/pubmed/35630699
http://dx.doi.org/10.3390/molecules27103224
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