| General Information of Natural Product (ID: NP2157) | |||||||
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| Natural Product Name |
Quercetagetin-Trimethyl Ether
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| The Content Variation of Natural Product Induced by Different Factor(s) | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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| Species Name: Chrysanthemum morifolium Ram. cv. 'Gaya yellow' | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Factor Name: Photosynthetic Active Radiation Treatment | [1] | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Experiment Detail |
After acclimation, the plants were grown independently in different light treatment chambers at 20 ± 0.2 ℃ and 65 ± 2% humidity until the harvest date (35 days after light treatment). The white fluorescent light (70 ± 5 µmol/m2/s) was maintained for 12 h, and then each of the blue, green, red, and white lights was irradiated at 70 ± 5 µmol/m2/s for 4 h using LED arrays (DR LED Networks Co., Seoul, Republic of Korea). The spectral energy distribution of four different LED arrays was measured from 300 to 800 nm with a spectroradiometer (International Light, RPS-900, U.S.). Their maximum spectral wavelengths were 463 (blue), 518 (green), and 632 nm (red); the white LEDs had a broad spectrum. Irradiance was measured using a quantum sensor (LI-COR, LI-191, Lincoln, NE, U.S.). Water was supplied daily with top irrigation and a nutrient solution (Hoagland, pH = 5.9 ± 0.2, electrical conductivity = 1.2 dS/m) every 4 days until harvest.
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| Factor Function |
A quantitation and principal component analysis biplot demonstrated that luteolin-7-O-glucoside (2), luteolin-7-O-glucuronide (3), and quercetagetin-trimethyl ether (8) were the highest polyphenols yielded under green light, and dicaffeoylquinic acid isomer (4), dicaffeoylquinic acid isomer (5), naringenin (7), and apigenin-7-O-glucuronide (6) were greatest under red light. Chlorogenic acid (1) and 1,2,6-trihydroxy-7,8-dimethoxy-3-methylanthraquinone (9) were produced in similar concentrations under both light types. The white and blue light appeared inefficient for polyphenol production.
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| Factor | Part | Location | NP Content | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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Under blue light (spectral wavelengths: 463 nm)
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leaf | Korea |
NP Content: 10.6 ± 0.5 mg/kg
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Under green light (spectral wavelengths: 518 nm)
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leaf | Korea |
NP Content: 22.1 ± 1.2 mg/kg
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Under red light (spectral wavelengths: 632 nm)
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leaf | Korea |
NP Content: 15.0 ± 1.0 mg/kg
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Under white light (spectral wavelengths: broad spectrum)
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leaf | Korea |
NP Content: 11.0 ± 0.8 mg/kg
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| References | ||||||||||||||||||||||||
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| 1 | Influences of four different light-emitting diode lights on flowering and polyphenol variations in the leaves of chrysanthemum (Chrysanthemum morifolium) | |||||||||||||||||||||||