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LED Lights Promote Growth and Flavonoid Accumulation of Anoectochilus roxburghii

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LED Lights Promote Growth and Flavonoid Accumulation of Anoectochilus roxburghii ( led-lights-promote-growth-and-flavonoid-accumulation-anoecto )

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Plants 2020, 9, 1344 14 of 15 36. Li, A.; Li, S.; Wu, X.; Zhang, J.; He, A.; Zhao, G.; Yang, X. Effect of light intensity on leaf photosynthetic characteristics and accumulation of flavonoids in Lithocarpus litseifolius (Hance). Chun. (Fagaceae). Open J. For. 2016, 6, 445–459. [CrossRef] 37. Karimi, E.; Jaafar, H.Z.E.; Ghasemzadeh, A.; Ibrahim, M.H. Light intensity effects on production and antioxidant activity of flavonoids and phenolic compounds in leaves, stems and roots of three varieties of Labisia pumila benth. Aust. J. Crop Sci. 2013, 7, 1016–1023. 38. Yuan, M.; Jia, X.; Ding, C.; Zeng, H.; Du, L.; Yuan, S.; Zhang, Z.; Wu, O.; Hu, C.; Liu, J. Effects of fluorescence light on phenolic compounds and antioxidant activities of soybeans (Glycine max L. Merrill) during germination. Food Sci. Biotechnol. 2015, 24, 1859–1865. [CrossRef] 39. Lv, T.; Teng, R.; Shao, Q.; Wang, H.; Zhang, W.; Li, M.; Zhang, L. DNA barcodes for the identification of Anoectochilus roxburghii and its adulterants. Planta 2015, 242, 1167–1174. [CrossRef] 40. Goto, E. Plant production in a closed plant factory with artificial lighting. Acta Hortic. 2012, 956, 37–49. [CrossRef] 41. Xu, Y. Nature and source of light for plant factory. In Plant Factory Using Artificial Light Adapting to Environmental Discruption and Clues to Agricultural Innovation; Masakazu, A., Fukuda, H., Wada, T., Eds.; Elsevier Publishing: Cambridge, MA, USA, 2019; pp. 47–69. 42. Heo, J.; Lee, C.; Chakrabarty, D.; Paek, K. Growth responses of marigold and salvia bedding plants as affected by monochromic or mixture radiation provided by a Light-Emitting Diode (LED). Plant Growth Regul. 2002, 38, 225–230. [CrossRef] 43. Su, N.; Wu, Q.; Shen, Z.; Xia, K.; Cui, J. Effects of light quality on the chloroplastic ultrastructure and photosynthetic characteristics of cucumber seedlings. Plant Growth Regul. 2014, 73, 227–235. [CrossRef] 44. Macedo, A.F.; Leal-Costa, M.V.; Tavares, E.S.; Lage, C.L.S.; Esquibel, M.A. The effect of light quality on leaf production and development of in vitro cultured plants of Alternanthera brasiliana Kuntze. Environ. Exp. Bot. 2011, 70, 43–50. [CrossRef] 45. Simlat, M.; Lêzak, P.; Mos, M.; Warcho, M.; Skrzypek, E.; Ptak, A. The effect of light quality on seed germination, seedling growth and selected biochemical properties of Stevia rebaudiana Bertoni. Sci. Hortic. 2016, 211, 295–304. [CrossRef] 46. Manivannan, A.; Soundararajan, P.; Halimah, N.; Ko, C.H.; Jeong, B.R. Blue LED light enhances growth, phytochemical contents, and antioxidant enzyme activities of Rehmannia glutinosa cultured in vitro. Hortic. Environ. Biotechnol. 2015, 56, 105–113. [CrossRef] 47. Ryu, J.H.; Seo, K.S.; Choi, G.L.; Rha, E.S.; Lee, S.C.; Choi, S.K.; Kang, S.Y.; Bae, C.H. Effects of LED light illumination on germination, growth and anthocyanin content of Dandelion (Taraxacum officinale). Korean J. Plant Res. 2012, 25, 731–738. [CrossRef] 48. Doi, K.; Izawa, T.; Fuse, T.; Yamanouchi, U.; Kubo, T.; Shimatani, Z.; Yano, M.; Yoshimura, A. Ehd1, a B-type response regulator in rice, confers short-day promotion of flowering and controls FT-like gene expression independently of Hd1. Genes Dev. 2004, 18, 926–936. [CrossRef] [PubMed] 49. Smith, H. Phytochromes and light signal perception by plants? An emerging synthesis. Nature 2000, 407, 585–591. [CrossRef] 50. Devlin, P. “Photoconttrol of Flowering”. In Light and Plant Development; Whitelam, G.C., Halliday, K.J., Eds.; Blackwell: Oxford, UK, 2007; pp. 185–210. 51. Jericó, J.B.B.; Eduardo, M.E.; Jos Humberto, C.V.; Victorino, M.R. Effect of LED Light quality on in vitro shoot proliferation and growth of Vanilla (Vanilla Planifolia Andrews). Afr. J. Biotechnol. 2016, 15, 272–277. [CrossRef] 52. Liu, S.; Hu, L.; Jiang, D.; Xi, W. Effect of post-harvest LED and UV light irradiation on the accumulation of flavonoids and limonoids in the segments of Newhall Navel Oranges (Citrus Sinensis Osbeck). Molecules 2019, 24, 1755. [CrossRef] 53. Gould, K.; Davies, K.M.; Winefield, C. Anthocyanins: Biosyntheis, Function and Application; Winefield, C., Davies, K., Gould, K., Eds.; Springer: New York, NY, USA, 2009. 54. Guo, H.; Wang, Y.; Wang, L.; Hu, P.; Wang, Y.; Jia, Y.; Zhang, C.; Zhang, Y.; Zhang, Y.; Wang, C.; et al. Expression of the MYB transcription factor gene BplMYB46 affects abiotic stress tolerance and secondary cell wall deposition in Betula platyphylla. Plant Biotechnol. J. 2017, 15, 107–121. [CrossRef]

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