首页> 外文期刊>Environmental Science: Nano >GC-TOF-MS based metabolomics and ICP-MS based metallomics of cucumber {Cucumissativus) fruits reveal alteration of metabolites profile and biological pathway disruption induced by nano copperf
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GC-TOF-MS based metabolomics and ICP-MS based metallomics of cucumber {Cucumissativus) fruits reveal alteration of metabolites profile and biological pathway disruption induced by nano copperf

机译:基于GC-TOF-MS的代谢组学和基于ICP-MS的黄瓜(Cucumissativus)果实的组学研究揭示了纳米铜f诱导的代谢物谱改变和生物途径破坏

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摘要

Copper-based nanoparticles have wide application in agriculture as fungicides and bactericides. Due to the rapid increase in their use, it is imperative to understand their environmental impact, especially on agricultural crops. In this study, inductively coupled plasma mass spectrometry (ICP-MS) based metallomics and gas chromatography-time of flight mass spectrometry (GC-TOF-MS) based metabolomics were applied to detect metal and molecular changes in cucumber plants exposed to various environmentally-relevant levels of nano copper (nCu at 0, 200, 400, and 800 mg kg~(-1) until full maturity. Metallomics studies showed nCu caused the perturbation of Fe uptake in leaves. In fruit, Ca, K, S, P, Zn and Mg increased after exposure to 400 and 800 mg kg~(-1) nCu. Metabolomics and partial least-squares discriminant analysis (PLS-DA) revealed that the metabolite profile in cucumber fruits was distinctively altered due to exposure to nCu. A number of metabolites were either up-regulated (proline, glycine, valine, pelargonic acid, arachidic acid, xylose, benzoic acid) or down-regulated (citric acid, myo-inositol, ornithine, 1-kestose) in response to nCu exposure. Biological pathway analysis showed a number of C and N related pathways were changed, especially galactose metabolism and the tricarboxylic acid cycle, indicating C and N metabolism was perturbed by nCu. This study showed GC-TOF-MS based metabolomics combined with ICP-MS based metallomics provide the necessary preliminary data to conduct further mechanistic investigations.
机译:铜基纳米颗粒作为杀真菌剂和杀菌剂已在农业中得到广泛应用。由于其使用量的迅速增加,必须了解它们的环境影响,特别是对农作物的影响。在这项研究中,基于电感耦合等离子体质谱(ICP-MS)的金属组学和基于气相色谱-飞行时间质谱(GC-TOF-MS)的代谢组学被用于检测暴露于各种环境的黄瓜植物中的金属和分子变化。直至完全成熟为止的相关水平的纳米铜(nCu分别处于0、200、400和800 mg kg〜(-1)。金属学研究表明,nCu引起叶片中铁的吸收扰动。在果实中,Ca,K,S,P暴露于400和800 mg kg〜(-1)nCu后,Zn和Mg增加;代谢组学和偏最小二乘判别分析(PLS-DA)显示,黄瓜果实中的代谢产物因暴露于nCu而有明显变化。响应nCu暴露,许多代谢产物要么被上调(脯氨酸,甘氨酸,缬氨酸,壬酸,花生酸,木糖,苯甲酸)要么被下调(柠檬酸,肌醇,鸟氨酸,1-kose)生物途径分析表明大量的C和N改变了相关的途径,特别是半乳糖代谢和三羧酸循环,表明碳和氮的代谢受到nCu的干扰。这项研究表明,基于GC-TOF-MS的代谢组学与基于ICP-MS的冶金学相结合,为进行进一步的机理研究提供了必要的初步数据。

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