In the Mediterranean region, tomato plants are often cultivated in two short cycles peryear to avoid the heat of summer and the low solar radiation of winter. Supplementary light (SL)makes it possible to cultivate during the dark season. In this experiment, a tomato F1 hybrid cultivarDRW7723 was cultivated in a greenhouse for a fall-winter cycle. After transplant, light emittingdiode (LED) interlighting, with two light spectra (red + blue vs. red + blue + far-red) was applied asSL. Plant growth, yield, gas exchange, nutrient solution (NS) consumption, and fruit quality wereanalyzed. In general, the eects of adding far-red radiation were not visible on the parametersanalyzed, although the yield was 27% higher in plants grown with SL than those grown without.Tomatoes had the same average fresh weight between SL treatments, but the plants grown withSL produced 16% more fruits than control. Fruit quality, gas exchange and NS uptake were notinfluenced by the addition of far-red light. Interlighting is, therefore, a valid technique to increasefruit production in winter but at our latitude the eects of adding far-red radiation are mitigated byavailable sunlight.

Supplementary Far-Red Light Did Not Affect Tomato Plant Growth or Yield under Mediterranean Greenhouse Conditions

Francesco Fabiano Montesano;Francesco Serio;
2020

Abstract

In the Mediterranean region, tomato plants are often cultivated in two short cycles peryear to avoid the heat of summer and the low solar radiation of winter. Supplementary light (SL)makes it possible to cultivate during the dark season. In this experiment, a tomato F1 hybrid cultivarDRW7723 was cultivated in a greenhouse for a fall-winter cycle. After transplant, light emittingdiode (LED) interlighting, with two light spectra (red + blue vs. red + blue + far-red) was applied asSL. Plant growth, yield, gas exchange, nutrient solution (NS) consumption, and fruit quality wereanalyzed. In general, the eects of adding far-red radiation were not visible on the parametersanalyzed, although the yield was 27% higher in plants grown with SL than those grown without.Tomatoes had the same average fresh weight between SL treatments, but the plants grown withSL produced 16% more fruits than control. Fruit quality, gas exchange and NS uptake were notinfluenced by the addition of far-red light. Interlighting is, therefore, a valid technique to increasefruit production in winter but at our latitude the eects of adding far-red radiation are mitigated byavailable sunlight.
2020
Istituto di Scienze delle Produzioni Alimentari - ISPA
light emitting diodes (LED); interlighting; gas exchange; water use eciency (WUE)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/389299
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