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February 2, 2026Plants0 citationsOpen Access

Root-Zone Heating Boosts the Production of Mini Romaine Lettuce Grown in Nutrient Film Technique and Aeroponics Systems

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FBFilippos BantisNTNikolaos TostsidisGZGeorge Zervoudakis

Key Points

  • The aim is to evaluate how different root-zone temperatures affect the growth and nutritional quality of mini Romaine lettuce in soilless systems.
  • Cultivation of mini Romaine lettuce in nutrient film technique and aeroponics systems.
  • Comparison of root-zone temperatures at 14, 18, 22 °C against a control at 11-12 °C.
  • Assessment of leaf mass, root dry weight, chlorophyll content, and nitrate levels.
  • Higher leaf mass per area increased by 127–232% in NFT and 54–75% in aeroponics at elevated temperatures.
  • Leaf length improved by more than 21% across all high-temperature conditions.
  • Nitrate content significantly reduced by 42% in NFT at 18 °C, while antioxidant activity remained unchanged.

Abstract

Root-zone temperature is a critical environmental parameter affecting the development, physiology, and nutritional status of leafy vegetables in soilless systems such as the nutrient film technique (NFT) and aeroponics. In the present article, we report on responses of mini Romaine lettuce (Lactuca sativa L.) upon cultivation using heated nutrient solution targeting minimum temperatures of 14, 18, and 22 °C versus ambient (control; 11–12 °C), both in the NFT and in the aeroponics system. In both systems, the higher temperatures (i.e., 18 and 22 °C) led to considerably higher leaf mass per system area (127–232% in NFT; 54–75% in aeroponics) and leaf length (more than 21% in all cases). Root dry weight and total soluble solids were positively affected by increasing temperatures only in the NFT. Performance indices of the photosynthetic mechanism (PIabs and PItot) were increased in the lower temperatures in the NFT. Antioxidant activity and total phenolics were not affected in either soilless system. Total chlorophylls and carotenoids were enhanced by 18 and 22 °C in the NFT and aeroponics, respectively, while anthocyanins were also variably affected. Finally, nitrate content was significantly reduced (−42%) in 18 °C in the NFT. Sub-optimal root-zone temperatures constrained root development and biomass accumulation, indicating that growth limitation was mainly driven by sink-related processes rather than carbon assimilation. Overall, heating the nutrient solution to a minimum of 22 °C in low- and mid-tech greenhouses during cool months can increase the production efficiency of mini Romaine lettuce in the NFT and aeroponics.

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Cite This Study

Bantis et al. (2026) studied this question.

synapsesocial.com/papers/6980fe68c1c9540dea810694https://doi.org/10.3390/plants15030422
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