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首页> 外文期刊>Biotechnology & Biotechnological Equipment >Comparative GC/MS Analysis of Rose Flower and Distilled Oil Volatiles of The Oil Bearing Rose Rosa Damascena
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Comparative GC/MS Analysis of Rose Flower and Distilled Oil Volatiles of The Oil Bearing Rose Rosa Damascena

机译:含油玫瑰Rosa Rosa Damascena的玫瑰花和蒸馏油挥发物的GC / MS对比分析

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The accelerated and successful oil bearing rose breeding requires routine application of efficient procedure for analysis of flower volatiles, with capacity to extrapolate the obtained flower data to the volatile composition of the distilled rose oil. In the current study a procedure for solvent extraction and GC/MS analysis of rose flower and rose oil volatiles from oil bearing roses including Rosa damascena is presented. The procedure allows reliable identification of 68 volatiles in the rose flowers which are also detected in the distilled rose oil. The described procedure was further applied for comparative analysis of the flower and distilled rose oil volatiles from eight different genotypes of oil bearing roses. A data set consisting of ratios of the relative abundance of given volatile in the flower spectra to the relative abundance of the same volatile in the distilled rose oil spectra was generated. ANOVA test for a data subset of 27 volatiles detected in the flowers and rose oils of all analyzed oil bearing rose genotypes showed no significant influence of the genotype on the ratio of relative abundances of flower to rose oil volatiles. The average and relative standard deviation values of the obtained ratios between relative abundances of flower and rose oil volatiles for the analyzed genotypes were calculated for each identified flower compound. The results demonstrate that the described flower solvent extraction and GC/MS analysis procedure could be reliably applied for prediction of the volatile composition of distilled rose oils from wide range of oil bearing rose genotypes based on the extrapolation of GC/MS analysis data from single or few flowers from each studied plant. The possibilities for incorporation of the described procedure into oil bearing rose breeding and genetic resources characterization are discussed.
机译:加速且成功的含油玫瑰育种需要常规应用有效程序来分析花卉挥发物,并具有将获得的花卉数据外推到蒸馏玫瑰油的挥发性成分中的能力。在当前的研究中,提出了从含油玫瑰(包括罗莎大马士革)中提取玫瑰花和玫瑰油挥发物的溶剂萃取方法和GC / MS分析方法。该程序可以可靠地鉴定玫瑰花朵中的68种挥发物,这些挥发物也可以在蒸馏玫瑰油中检测到。所描述的程序被进一步用于来自八种不同基因型含油玫瑰的花和蒸馏玫瑰油挥发物的比较分析。生成了由花谱中给定挥发物的相对丰度与蒸馏玫瑰油谱中相同挥发物的相对丰度之比组成的数据集。对所有分析的含油玫瑰基因型的花卉和玫瑰油中检测到的27种挥发物的数据子集进行的ANOVA测试表明,该基因型对花卉相对于玫瑰油挥发物的相对丰度比没有显着影响。对于每种鉴定出的花卉化合物,计算出所分析基因型的花卉和玫瑰油挥发物相对丰度之间的比率的平均和相对标准偏差值。结果表明,所描述的花溶剂提取和GC / MS分析程序可以可靠地用于基于单个或多个GC / MS分析数据的推断,从多种含油玫瑰基因型中预测蒸馏玫瑰油的挥发性成分。每个研究过的植物很少开花。讨论了将所述方法纳入含油玫瑰育种和遗传资源表征的可能性。

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