1. Academic Validation
  2. Manipulation of Continuous and End-of-Day Red/Far-Red Light Ratios Affects Glucobrassicin and Gluconasturtiin Accumulation in Cabbage ( Brassica oleracea) and Watercress ( Nasturtium officinale), Respectively

Manipulation of Continuous and End-of-Day Red/Far-Red Light Ratios Affects Glucobrassicin and Gluconasturtiin Accumulation in Cabbage ( Brassica oleracea) and Watercress ( Nasturtium officinale), Respectively

  • J Agric Food Chem. 2021 Dec 1;69(47):14126-14142. doi: 10.1021/acs.jafc.1c02343.
Ilse E Renner 1 Gary Gardner 1 Vincent A Fritz 2
Affiliations

Affiliations

  • 1 Department of Horticultural Science, University of Minnesota-Twin Cities, 1970 Folwell Avenue, Saint Paul, Minnesota 55108, United States.
  • 2 Southern Research and Outreach Center, University of Minnesota-Twin Cities, 35838 120th Street, Waseca, Minnesota 56093, United States.
Abstract

Cabbage (Brassica oleracea) and watercress (Nasturtium officinale) produce glucobrassicin (GBS) and gluconasturtiin (GNST), precursors of chemopreventive compounds. Their accumulation is affected by environmental signals. We studied the impact of the red to far-red LIGHT (R/FR) ratio on GBS concentration in red ″Ruby Ball″ and green ″Tiara″ cabbage. Foliar shading, via weed surrogates that competed with cabbage Plants for specific durations, induced R/FR variation among treatments. ″Ruby Ball″ GBS concentrations were the highest when R/FR within the canopy was the lowest. ″Tiara″ was unaffected by competition. The same trend was observed in a controlled environment using R and FR LEDs without weeds present. ″Ruby Ball″ subjected to an R/FR = 0.3 treatment had 2.5- and 1.4-fold greater GBS concentration compared to R/FR = 1.1 and 5.0 treatments combined. Watercress given end-of-day (EOD) R and/or FR pulses after the main photoperiod had the lowest GNST concentrations after an EOD FR pulse but the highest concentrations after an R followed by FR pulse.

Keywords

Brassica oleracea; LEDs; Nasturtium officinale; chemoprevention; controlled environment; isothiocyanates; light quality; phytochrome; vegetative shading; weed competition.

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