Effect of LED light quality on the growth and photomorphogenesis of basil in closed- plant factory

  • Lee, Da Young
  • Kim, Min Ji
  • Choi, In-Lee
  • Kim, Yongduk
  • Kim, Jidong
  • ... Kang, Ho-Min
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초록

This study was conducted to investigate effects of LED light quality on the growth and photomorphogenesis of basil (cv. 'Amethyst Improved') in a closed-type plant factory. Basil was sown on a urethane sponge and grown for two weeks under a White-LED. When the first main leaf appeared, the plants were transplanted into a nutrient solution hydroponic system (24 +/- 2 degrees C, RH 55 +/- 10%) and using a standard nutrient solution for leafy vegetables (N 17.3, P 4.0, K 8.0, Ca 8.0, Mg 4.0, S 4.0 me<middle dot>L-1). To compare growth and internal traits of basil under various light qualities, QD-LED (combining blue, red, and far-red light), Blue+Red-LED (blue and red wavelengths at a ratio of 1:3), White-LED, 100% Blue-LED, and 100% Red-LED were used to cultivate basil for 35 days. Photosynthetic photon flux density (PPFD) was 200 +/- 10 mu mol<middle dot>m-2<middle dot>s-1 and the light was provided for 16/8 hours (Light/Dark). The plant height was significantly the longest at 26.1 cm in QD-LED, and the number of leaves was the highest at 16.00 ea in QD-LED, but not significant. The leaf length was the longest at 10.9 cm in QD-LED and the shortest at 8.10 cm in White-LED. The leaf width was up to 26% wider in Blue+Red-LED, but there was no statistical significance. The leaf thickness was the thickest at 0.33 mm for Blue+Red-LED and Red-LED, which have a high proportion of red light, and the thinnest at 0.26 mm for Blue-LED. In the case of the curvature index (CI), which indicates the morphological characteristics of basil leaves, the values were highest for Blue+Red-LED and Red-LED. The internode length and leaf stalk length were significantly the longest at 5.73 cm and 3.04 cm, respectively, for QD-LED, and the stem diameter at 5.26 mm for QD-LED. The shoot fresh weight was 26.0 g in QD-LED, which was significantly higher than the other treatment groups by up to four times, but the root fresh weight was the highest at 5.99 gin Blue+Red-LED. On the other hand, the shoot and root dry matter ratio were the highest at about 9% and 5%, respectively, in White-LED. The maximum quantum yield (FvFm) did not differ significantly between the treatment groups, but the value was significantly lowest at 0.79 for Red-LED. The chlorophyll content (SPAD), normalized difference vegetation index (NDVI), and anthocyanin reflectance index (ARI1) values were up to 27% higher in Blue+Red-LED than in other treatment. Also, the DPPH radical scavenging activity and total phenol content were the highest in Red-LED at 74% and 9.47 mgGAE<middle dot>g-1FW, respectively. As a result, basil (cv. 'Amethyst Improved') grew best in QD-LED, and its antioxidant effect was the best in Red-LED. In addition, it was confirmed that the curvature and morphological characteristics of basil leaves changed depending on the ratio of red light at 600-700 nm.

키워드

curvature indexdeep flow techniqueOcimum basilicum L.photomorphogenesisquantum dotOCIMUM-BASILICUMSWEET BASILANTIOXIDANT PROPERTIESPOLYPHENOL CONTENTGREENSUSCEPTIBILITYCULTIVARSRESPONSES
제목
Effect of LED light quality on the growth and photomorphogenesis of basil in closed- plant factory
저자
Lee, Da YoungKim, Min JiChoi, In-LeeKim, YongdukKim, JidongKang, Ho-Min
DOI
10.15835/nbha53214409
발행일
2025-01
유형
Article
저널명
Notulae Botanicae Horti Agrobotanici Cluj-Napoca
53
2