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2025 Vol.34, Issue 4 Preview Page

Original Articles

31 October 2025. pp. 555-563
Abstract
References
1

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

10.1016/j.scienta.2016.01.030
2

Alhelal I.M. A.A. Albadawi, A.A. Alsadon, M.M. Alenazi, A.A. Ibrahim, M. Shady, and A.A. doi:10.3390/plants13162318

10.3390/plants1316231839204754PMC11359001
3

Al-Dubai 2024, Effects of shading nets color on the internal environmental conditions, light spectral distribution, and strawberry growth and yield in greenhouses. Plants 13:2318.

10.3390/plants1316231839204754PMC11359001
4

Bao S.C. Hua, L. Shen, and H. Yu 2020, New insights into gibberellin signaling in regulating flowering in Arabidopsis. J Integr Plant Biol 62:118-131. doi:10.1111/jipb.12892

10.1111/jipb.12892
5

Chen 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

10.3389/fpls.2024.146500439445138PMC11497633
6

Cohen I., T. Rapaport, V. Chalifa-Caspi, S. Rachmilevitch 2019, Synergistic effects of abiotic stresses in plants: a case study of nitrogen limitation and saturating light intensity in Arabidopsis thaliana. Physiol Plant 165:910-929. doi:10.1111/ppl.12765

10.1111/ppl.12765
7

Ding J.B. Zhang, Y. Li, D. André, and O. Nilsson 2021, Phytochrome B and PHYTOCHROME INTERACTING FACTOR8 modulate seasonal growth in trees. New Phytol 232:2339-2352. doi:10.1111/nph.17350

10.1111/nph.17350
8

Espi E. M.J. Valera, M.D. Hernandez, and F.J. Lopez Marin 2006, Plastic films for greenhouse covering. J Plast Film Sheeting 22(2):85-102. doi:10.1177/8756087906064220

10.1177/8756087906064220
9

Fukuda N.T. Yoshida, J.E. Olsen, C. Senaha, Y. Jikumaru, and Y. Kamiya 2012, Short main shoot length and inhibition of floral bud development under red light can be recovered by application of gibberellin and cytokinin. Acta Hortic 956: 215-222. doi:10.17660/ActaHortic.2012.956.23

10.17660/ActaHortic.2012.956.23
10

Guiamba H.D.S.S. X. Zhang, E. Sierka, K. Lin, M.M. Ali, W.M. Ali, S.F. Lamlom, H.M. Kalaji, A. Telesiński, A.F. Yousef, and Y. Xu 2022, Enhancement of photosynthesis efficiency and yield of strawberry (Fragariaananassa Duch.) plants via LED systems. Front Plant Sci 13:918038. doi: 10.3389/fpls.2022.918038

10.3389/fpls.2022.91803836161001PMC9507429
11

Heide O.M. 1977, Photoperiod and temperature interactions in growth and flowering of strawberry. Physiol Plant 40:21-26. doi:10.1111/j.1399-3054.1977.tb01486.x

10.1111/j.1399-3054.1977.tb01486.x
12

Hemming S. E.A. van Os, J. Hemming, and J.A. Dieleman 2006, The effect of newly developed fluorescent greenhouse films on the growth of Fragaria × ananassa ‘Elsanta’. Eur J Hortic Sci 71:145-154.

10.1079/ejhs.2006/135241
13

Hisamatsu T., and R.W. King 2008, The nature of floral signals in Arabidopsis II: Roles for FLOWERING LOCUS T (FT) and gibberellin. J Exp Bot 59:3821-3829. doi:10.1093/jxb/ern232

10.1093/jxb/ern23218931352PMC2576629
14

Javed H.H. Y. Hu, M.A. Asghar, M.A. Brestic, A. Majid, M.H. Saleem, X. Peng, A.Z. Ghafoor, W. Ye, J. Zhou, X. Guo, and Y.-C. Wu 2022, Effect of intermittent shade on nitrogen dynamics assessed by 15N trace isotopes, enzymatic activity and yield of Brassica napus L. Front Plant Sci 13:1037632. doi:10.3389/fpls.2022.1037632

10.3389/fpls.2022.103763236466283PMC9709140
15

Karimi F., and D.A. Claypool 2025, Timing of far-red light exposure influences growth, fruit quality, and nutrient uptake in June-bearing strawberry. HortTechnology 35:370-376. doi:10.21273/HORTTECH05621-25

10.21273/HORTTECH05621-25
16

Kim 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.2020.47.4.278
17

Kim 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

10.7783/KJMCS.2017.25.6.397
18

Statistics Korea (KOSTAT) 2024, Agricultural area survey. Available at: https://kosis.kr/statHtml/statHtml.do?orgId=101&tblId=DT_1ET0017&conn_path=I2

19

Korea Rural Economic Institute (KREI) 2024, Agricultural Outlook Monthly Report. Available at: https://aglook.krei.re.kr/main/uObserveMonth/OVR0000000031?queryType=2024&queryType2=7811. Accessed on 1 August 2024.

20

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)90121-5
21

Korea Trade Statistics Promotion Institute (KTSPI) 2024, Trade statistics service. Available at: https://www.bandtrass.or.kr/customs/total.do?command=CUS001View&viewCode=CUS00201

22

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.2025.106133
23

Li 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.2021.67819734220897PMC8247776
24

Li 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/ijms2406556336982639PMC10053878
25

Libo 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/s11103-018-0801-2
26

Lymperopoulos 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

10.3389/fpls.2018.0103730100912PMC6072860
27

Ministry of Agriculture, Food and Rural Affairs (MAFRA) 2024, Agricultural production index. Available at: https://www.mafra.go.kr/bbs/home/798/573443/artclView.do. Accessed on 4 March 2025.

28

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/s12870-024-05755-539482621PMC11529333
29

Nam 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

10.7783/KJMCS.2020.28.2.111
30

Rural Development Administration (RDA) 2017, Standard Manual for Agricultural Experiment and Investigation.

31

Rural Development Administration (RDA) 2019, Manual for strawberry cultivation. RDA, Wanju, Korea. p.144.

32

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.2024.106044
33

Saboki 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/s44372-025-00335-9
34

Tatari 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.2023.112450
35

Xie 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/plants1206137836987065PMC10051282
36

Yang 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/eraa12832157303PMC7475253
37

Yoshida 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.16.0216a31274989PMC6565943
38

Zhao 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
Information
  • 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