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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Metabolite Profiling of the Response of Burdock Roots to Copper Stress
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Metabolite Profiling of the Response of Burdock Roots to Copper Stress

机译:牛Bur根对铜胁迫响应的代谢产物分析

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Arctium lappa L. (Asteraceae), also known as burdock, has a long history of cultivation as a dietary vegetable worldwide. Stress in plants disrupts metabolic homeostasis and requires adjustment of metabolic pathways. Exposure to heavy metals is one of the most prevalent environmental stresses encountered by plants. In this study, metabolite profiling based on H-1 NMR and GC-MS was used to obtain a holistic view of the response of burdock roots to copper stress. The principal component analysis model generated from the NMR data showed significant separation between groups. Copper-treated burdock roots were characterized by increased levels of phenols and decreased levels of primary metabolites. These results suggest that copper stress leads to activation of the phenylpropanoid pathway and growth inhibition. GC-MS analyses revealed increased levels of unsaturated fatty acids and decreased levels of sterols in the copper-treated group. Changes in metabolite concentrations were analyzed by UPLC/QTRAP-MS, and the significances were confirmed by two-way analysis of variance and Bonferronis test. Interestingly, linoleic acid was increased about 2.7-fold, from 316 +/- 64.5 to 855 +/- 111 ppm, in the group treated with copper for 6 days. This study demonstrates that metabolomic profiling is an effective analytical approach to understanding the metabolic pathway(s) associated with copper stress in burdock roots.
机译:牛(Arctium lappa L.(菊科),也被称为牛d)作为世界上的一种饮食蔬菜,有着悠久的栽培历史。植物的压力会破坏代谢稳态,并需要调节代谢途径。暴露于重金属是植物遇到的最普遍的环境压力之一。在这项研究中,基于H-1 NMR和GC-MS的代谢物谱图用于获得牛根对铜胁迫响应的整体视图。由NMR数据生成的主成分分析模型显示各组之间存在明显的分离。铜处理的牛d根的特征是酚含量增加,初级代谢产物含量降低。这些结果表明,铜胁迫导致苯丙烷途径的激活和生长抑制。 GC-MS分析表明,铜处理组的不饱和脂肪酸含量增加,甾醇含量降低。通过UPLC / QTRAP-MS分析代谢物浓度的变化,并通过方差的双向分析和Bonferronis检验证实了其显着性。有趣的是,在铜处理6天的组中,亚油酸增加了约2.7倍,从316 +/- 64.5增加到855 +/- 111 ppm。这项研究表明,代谢组学谱分析是一种了解牛根中与铜胁迫相关的代谢途径的有效分析方法。

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