Original Articles
Ahmed H.A. A.A. Al-Faraj, and A.M. Abdel-Ghany 2016, Shading greenhouses to improve the microclimate, energy and water saving in hot regions: A review. Sci Hortic 201:36-45. doi:10.1016/j.scienta.2016.01.030
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10.1111/jipb.12892Chen J.J. Fang, R. Guo, and D. He 2024, Reducing red light proportion in full-spectrum LEDs enhances runner plant propagation by promoting the growth and development of mother plants in strawberry. Front Plant Sci 15:1465004. doi:10.3389/fpls.2024.1465004
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10.21273/HORTTECH05621-25Kim H.J. J.H. Jeong, and Y.S. Kwon 2020, Effects of LED light quality on growth and bioactive compounds of strawberry. J Plant Biotechnol 47:278-286. doi:10.5010/JPB.2020.47.4.278
10.5010/JPB.2020.47.4.278Kim M.H. B.M. Song, and E.Y. Choi 2017, Determination of growth, yield and carbohydrate content of Allium hookeri grown under shading treatment. Korean J Med Crop Sci 25:397-403. doi:10.7783/KJMCS.2017.25.6.397
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Kristiansen E. 1988, Light quality regulates flower initiation, differentiation and development of Campanula carpatica Jacq. ‘Karl Forster’. Sci Hortic 35:313-323.
10.1016/0304-4238(88)90121-5Korea Trade Statistics Promotion Institute (KTSPI) 2024, Trade statistics service. Available at: https://www.bandtrass.or.kr/customs/total.do?command=CUS001View&viewCode=CUS00201
Li H. D.H. Li, R.E. Schouten, D. de Jong, X. Huang, S. Agboyinu, M. Wang, R.C.H. de Vos, J.A.L. Van Kan, L.F.M. Marcelis, and E.J. Woltering 2025, Red, blue and far-red light affect strawberry plant development and fruit quality without changing susceptibility to Botrytis cinerea infection. Environ Exp Bot 233:106133. doi:10.1016/j.envexpbot.2025.106133
10.1016/j.envexpbot.2025.106133Li J., T. Wu, K. Huang, Y. Liu, M. Liu, and J. Wang 2021, Effect of LED spectrum on the quality and nitrogen metabolism of lettuce under recycled hydroponics. Front Plant Sci 12:678197. doi:10.3389/fpls.2021.678197
10.3389/fpls.2021.67819734220897PMC8247776Li Y., H. Jiang, M. Gao, R. He, X. Liu, W. Su, and H. Liu 2023, Far-red-light-induced morphology changes, phytohormone, and transcriptome reprogramming of Chinese kale (Brassica alboglabra Bailey). Int J Mol Sci 24:5563. doi:10.3390/ijms24065563
10.3390/ijms2406556336982639PMC10053878Libo X., Z. Dong, Q. Siyan, C. Xilong, N. An, L. Youmei, C. Zhao, H. Mingyu, and A. Juan 2019, Transcription profiles reveal the regulatory mechanisms of spur bud changes and flower induction in response to shoot bending in apple (Malus domestica Borkh.). Plant Mol Biol 99:289-307. doi:10.1007/s11103-018-0801-2
10.1007/s11103-018-0801-2Lymperopoulos P., J. Msanne, and R.C. Rabara 2018, Phytochrome and phytohormones: Working in tandem for plant growth and development. Front Plant Sci 9:1037. doi:10.3389/fpls.2018.01037
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Malekzadeh M.R., H.R. Roosta, and H.M. Kalaji 2024, Enhancing strawberry resilience to saline, alkaline, and combined stresses with light spectra: impacts on growth, enzymatic activity, nutrient uptake, and osmotic regulation. Plant Biol 24:1038. doi:10.1186/s12870-024-05755-5
10.1186/s12870-024-05755-539482621PMC11529333Nam H.H., Y.J. Seo, and W.C. Jang 2020, Effect of shading types and duration on alleviation of high temperature stress in Cnidium officinale Makino. Korean J Med Crop Sci 28:111-118. doi:10.7783/KJMCS.2020.28.2.111
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Rosli K.A., A. Misran, L.S. Yazan, and P.E.M. Wahab 2025, Light-nutrient interaction orchestrates leaf dynamics, nitrogen assimilation, and cellular energetics in Agastache rugosa (Fisch. & C.A.Mey.) Kuntze. Environ Exp Bot 229:106044. doi:10.1016/j.envexpbot.2024.106044
10.1016/j.envexpbot.2024.106044Saboki E., and A. Jafari 2025, Impact of shade net cultivation on banana yield and quality. Discov Plants 2:248. doi:10.1007/s44372-025-00335-9
10.1007/s44372-025-00335-9Tatari M. 2024, Effect of shading nets on environmental conditions and fruit abscission in quince (Cydonia oblonga L.). Sci Hortic 323:112450. doi:10.1016/j.scienta.2023.112450
10.1016/j.scienta.2023.112450Xie Y., Z. Hou, M. Shi, Q. Wang, Z. Wang, Z. Yang, K.J. Lim, and Z. Wang 2023, Transcriptional regulation of female and male flower bud initiation and development in pecan (Carya illinoensis). Plants 12:1378. doi:10.3390/plants12061378
10.3390/plants1206137836987065PMC10051282Yang T., Y. Sun, Y. Wang, L. Zhou, M. Chen, Z. Bian, Y. Lian, L. Xuan, G. Yuan, Z. Wang, and C. Wang 2020, AtHSPR is involved in GA- and light intensity-mediated control of flowering and seed set. J Exp Bot 71(12):3543-3559. doi:10.1093/jxb/eraa128
10.1093/jxb/eraa12832157303PMC7475253Yoshida H., D. Mizuta, N. Fukuda, S. Hikosaka, and E. Goto 2016, Effects of varying light quality from single-peak blue and red light-emitting diodes during nursery period on flowering, photosynthesis, growth, and fruit yield of everbearing strawberry. Plant Biotechnol (Tokyo) 33:267-276. doi:10.5511/plantbiotechnology.16.0216a
10.5511/plantbiotechnology.16.0216a31274989PMC6565943Zhao T., X. Yang, X. Yang, P. Rao, X. An, and Z. Chen 2021, Identification of key flowering-related genes and their seasonal expression in Populus tomentosa reproductive buds suggests dual roles in floral development and dormancy. Ind Crops Prod 159:113065. doi:10.1016/j.indcrop.2020.113175
10.1016/j.indcrop.2020.113175- Publisher :The Korean Society for Bio-Environment Control
- Publisher(Ko) :(사)한국생물환경조절학회
- Journal Title :Journal of Bio-Environment Control
- Journal Title(Ko) :생물환경조절학회지
- Volume : 34
- No :4
- Pages :555-563
- Received Date : 2025-10-02
- Revised Date : 2025-10-22
- Accepted Date : 2025-10-29
- DOI :https://doi.org/10.12791/KSBEC.2025.34.4.555


Journal of Bio-Environment Control








