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首页> 外文期刊>Plant Omics >Metabolite profiling approach for assessing the effects of colored light-emitting diode lighting on the adventitious roots of ginseng (Panax ginseng C. A. Mayer)
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Metabolite profiling approach for assessing the effects of colored light-emitting diode lighting on the adventitious roots of ginseng (Panax ginseng C. A. Mayer)

机译:代谢物分析方法,用于评估彩色发光二极管照明对人参不定条(Panax人参C. A. Mayer)的影响

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Metabolome analysis was carried out to evaluate the effects of light-emitting diode (LED) spectra on the metabolic processes of ginseng (Panax ginseng C. A. Mayer) adventitious roots. In total, 35 hydrophilic and 11 lipophilic metabolites were identified in ginseng roots irradiated with red (630 nm), blue (465 nm) LED light or fluorescent lamp (FL) light, by gas chromatography-time-of-flight mass spectrometry. Principal components analysis results using the 46 metabolites showed differentiation between the metabolomes of ginseng roots irradiated with red LED, blue LED, and FL light, indicating that metabolic changes were occurred in the ginseng roots by light spectral quality. The corresponding loading indicated that LED light-irradiated ginseng roots had higher sucrose and lower amino acids compared to FL-irradiated ginseng roots. The quantitative results revealed that ginseng roots irradiated with blue LED light had higher concentrations of a-tocopherol and ?-amyrin, as well as phenolic acids compared with FL-irradiated ginseng roots. This is the first study to determine the comprehensive metabolic changes in response to LED light in ginseng adventitious roots and to demonstrate the utility of the metabolite profiling approach employed in this study for detecting environmental effects on the plant metabolome. Pages 224-230 |
机译:进行代谢物分析,以评估发光二极管(LED)光谱对人参代谢过程的影响(Panax人参C.A.Mayer)不定根。在用红色(630nm),蓝色(465nm)LED光或荧光灯(FL)光线照射的人参根中,通过气相色谱 - 飞行时间质谱法,鉴定了35个亲水和11个亲脂性代谢物。使用46代谢物的主成分分析结果在用红色LED,蓝色LED和FL光照射的人参根代谢之间显示出差异,表明通过光谱质量在人参根中发生代谢变化。相应的载荷表明,与辐照的人参根相比,LED光辐照的人参根具有更高的蔗糖和下氨基酸。定量结果表明,用蓝色LED光照射的人参根具有较高浓度的α-生育酚和α-蛋白,以及与辐照人参根相比的酚酸。这是第一项研究,以确定响应人参不定根的LED光线的综合代谢变化,并证明该研究中采用的代谢物分析方法的效用用于检测植物代谢物的环境影响。第224-230页|

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    《Plant Omics》 |2013年第1期|共7页
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