Investigating growth, root development, and chlorophyll fluorescence of tomato scions and rootstocks under UV-B stress in a plant factory with artificial lighting

  • Yang, Hwichan
  • Kim, Youngho
  • Bae, Yunhyeong
  • Hyeon, Soonjae
  • Choi, Minseong
  • ... Jang, Dongcheol
Citations

WEB OF SCIENCE

5
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SCOPUS

6

초록

Plant factories with artificial lighting (PFALs) provide a controlled environment for seedling production, helping overcome challenges posed by fluctuating weather conditions. UV-B irradiation enhances plant physiology by increasing flavonoid accumulation, strengthening disease resistance, and improving seedling vigor. However, because of species specific and context dependent responses, researchers must further investigate the appropriate timing and dosage of UV-B exposure. Herein, we aimed to determine the optimal UV-B irradiation timing and dose for tomato scions and rootstocks in PFALs. We categorized the irradiation period into three stages ST1 {3-7 days after sowing (DAS)}, ST2 (8-12 DAS), and ST3 (13-17 DAS) and tested doses of 1.44, 2.88, and 5.76 kJ center dot m- 2 center dot d- 1. At ST2, the 5.76 kJ center dot m- 2 center dot d- 1 dose reduced plant height by 2.3 cm (28 %) in scions and 4.5 cm (34 %) in rootstocks compared with the control. In the rhizosphere, higher UV-B doses inhibited root development, whereas ST3 1.44-2.88 kJ center dot m- 2 center dot d- 1 promoted growth. Scions exposed to ST2 5.76 kJ center dot m- 2 center dot d- 1 showed a 2.3 % increase in dry matter content compared to the control, reaching 9.5 %. The compactness of the rootstock increased to 6.4 mg center dot cm- 1 under conditions of ST2 2.88 kJ center dot m- 2 center dot d- 1, 1.9 mg center dot cm- 1 (42 %) increase compared to the control 4.5 mg center dot cm- 1. Chlorophyll fluorescence parameters reflected stress responses: FV/FM and PIABS significantly decreased at ST3 5.76 kJ center dot m- 2 center dot d- 1, whereas DI0/RC significantly increased. These results demonstrate that carefully adjusting UV-B timing and dosage can help reduce plant damage and regulate growth, supporting the production of high-quality tomato seedlings in PFALs.

키워드

Chlorophyll fluorescenceGrowth inhibitionRoot developmentSeedling qualityStressRADIATIONBLUERED
제목
Investigating growth, root development, and chlorophyll fluorescence of tomato scions and rootstocks under UV-B stress in a plant factory with artificial lighting
저자
Yang, HwichanKim, YounghoBae, YunhyeongHyeon, SoonjaeChoi, MinseongJang, Dongcheol
DOI
10.1016/j.scienta.2025.114191
발행일
2025-05
유형
Article
저널명
Scientia Horticulturae
347