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首页> 外文期刊>Journal of Ginseng Research >Unraveling dynamic metabolomes underlying different maturation stages of berries harvested from Panax ginseng
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Unraveling dynamic metabolomes underlying different maturation stages of berries harvested from Panax ginseng

机译:从Panax人参收获的不同成熟阶段的不同成熟阶段揭开动态代谢物

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Background Ginseng berries (GBs) show temporal metabolic variations among different maturation stages, determining their organoleptic and functional properties. Methods We analyzed metabolic variations concomitant to five different maturation stages of GBs including immature green (IG), mature green (MG), partially red (PR), fully red (FR), and overmature red (OR) using mass spectrometry (MS)–based metabolomic profiling and multivariate analyses. Results The partial least squares discriminant analysis?score plot based on gas chromatography–MS datasets highlighted metabolic disparity between preharvest (IG and MG) and harvest/postharvest (PR, FR, and OR) GB extracts along PLS1 (34.9%) with MG distinctly segregated across PLS2 (18.2%). Forty-three significantly discriminant primary metabolites were identified encompassing five developmental stages (variable importance in projection??1.0, p ?0.05). Among them, most amino acids, organic acids, 5-C sugars, ethanolamines, purines, and palmitic acid were detected in preharvest GB extracts, whereas 6-C sugars, phenolic acid, and oleamide levels were distinctly higher during later maturation stages. Similarly, the partial least squares discriminant analysis based on liquid chromatography–MS datasets displayed preharvest and harvest/postharvest stages clustered across PLS1 (11.1 %); however, MG and PR were separated from IG, FR, and OR along PLS2 (5.6 %). Overall, 24 secondary metabolites were observed significantly discriminant (variable importance in projection??1.0, p ?0.05), with most displaying higher relative abundance during preharvest stages excluding ginsenosides Rg1 and Re. Furthermore, we observed strong positive correlations between total flavonoid and phenolic metabolite contents in GB extracts and antioxidant activity. Conclusion Comprehending the dynamic metabolic variations associated with GB maturation stages rationalize their optimal harvest time per se the related agroeconomic traits.
机译:背景人参浆果(GBS)显示不同成熟阶段的时间代谢变化,确定它们的感官和功能性。方法对使用质谱(MS)(MS)(MS)分析包括未成熟的绿色(Ig),成熟的绿色(Mg),部分红色(PR),完全红色(或)的GBS的五种不同成熟阶段的代谢变异,包括不成熟的绿色(Ig),成熟的绿色(Mg),和过度的红色(或)基于代谢物分析和多变量分析。结果局部最小二乘判别分析?基于气相色谱-SMS数据集的分数图突出了预氢(Ig和Mg)和收获/采后(Pr,Fr,或)Gb沿PLS1(34.9%)的收获/采后(PR,FR和或)GB提取物的代谢差异在PLS2中隔离(18.2%)。鉴定了四十三种显着判别的初级代谢物,包括五个发育阶段(投影中的可变重要性?> 1.0,P <0.05)。其中,在预热GB提取物中检测到大多数氨基酸,有机酸,5-C糖,乙醇胺,嘌呤和棕榈酸,而在后续成熟阶段,6-C糖,酚醛酸和烯酰胺水平明显较高。类似地,基于液相色谱-S MS数据集的局部最小二乘判别分析显示在PLS1(11.1%)上聚集的预热和收获/采后阶段;然而,Mg和Pr与IG,Fr和或沿PLS2分离(5.6%)。总的来说,观察到24例次生代谢物显着判别(投影中的可变重要性?<0.1.0,P <0.05),最多在不包括人参皂苷RG1和RE的预征收期间显示更高的相对丰度。此外,我们在GB提取物和抗氧化活性中观察到总黄酮和酚醛代谢物含量之间的强正相关性。结论理解与GB成熟阶段相关的动态代谢变化是合理化其最佳收获时间本身的相关农业经济性状。

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