首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >LED-enhanced biosynthesis of biologically active ingredients in callus cultures of Ocimum basilicum
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LED-enhanced biosynthesis of biologically active ingredients in callus cultures of Ocimum basilicum

机译:LED-增强的生物活性成分生物合成,在愈伤组织培养物中的愈伤组织培养物中

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摘要

Ocimum basilicum is a medicinal plant with multiple health benefits including cardiovascular, cancer and diabetics. In the present study, the influences of light emitting diodes (LEDs) were investigated on the accumulation of biologically active ingredients in callus cultures of Ocimum basilicum. Among the various tested treatments optimum levels of Total phenolic content (TPC) was noted in callus culture grown under blue lights as compared to control, while maximum accumulation of Total flavonoid content (TFC) was noted in callus culture grown under red light as compared to control. HPLC analyses showed that highest concentrations of Rosmarinic acid (96.0 mg/g DW) and Eugenol (0.273 mg/g DW) were accumulated in blue light which was 2.46 and 2.25 times greater than control (39.0 mg/g DW, 0.171 mg/g DW), respectively. Chicoric acid (81.40 mg/g DW) optimum accumulation was noted in callus grown under the continuous white light, which was almost 4.52 times greater than control. Anthocyanins content were also analyzed, the highest amount of Peonidin (0.127 mg/g DW) and cyanidin (0.1216 mg/g DW) were found in callus culture grown under red light. These findings suggest that application of LED's is a promising strategy for enhancing production of biologically active ingredients in callus cultures Ocimum basilicum.
机译:OCimum basilicum是一种药用植物,具有多种健康益处,包括心血管,癌症和糖尿病患者。在本研究中,研究了发光二极管(LED)的影响,以在最大底座的愈伤组织培养物中积累了生物活性成分。在与对照相比,在蓝色灯下生长的愈伤组织培养物中,在蓝色灯下的愈伤组织培养物中,虽然与控制。 HPLC分析表明,最高浓度的甘氨酸(96.0mg / g dw)和丁烯醇(0.273mg / g dw)累积在蓝光中,其比对照为2.46和2.25倍(39.0mg / g dw,0.171 mg / g。分别为DW)。在连续白光下愈伤组织中愈伤组织的氯氰酸(81.40mg / g dw)最佳积累,比对照差异几乎高4.52倍。还分析了花青素含量,在红光下生长的愈伤组织培养物中发现了最多的芍药蛋白(0.127mg / g dw)和Cyanidin(0.1216mg / g dw)。这些研究结果表明,LED的应用是增强愈伤组织培养物的生物活性成分的生产策略。

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