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一项实验室间比对表明,[H]-核磁共振代谢物指纹图谱法是一种用于协作式植物代谢组学数据收集的可靠技术。

An inter-laboratory comparison demonstrates that [H]-NMR metabolite fingerprinting is a robust technique for collaborative plant metabolomic data collection.

作者信息

Ward Jane L, Baker John M, Miller Sonia J, Deborde Catherine, Maucourt Mickael, Biais Benoit, Rolin Dominique, Moing Annick, Moco Sofia, Vervoort Jacques, Lommen Arjen, Schäfer Hartmut, Humpfer Eberhard, Beale Michael H

出版信息

Metabolomics. 2010 Jun;6(2):263-273. doi: 10.1007/s11306-010-0200-4. Epub 2010 Feb 27.

Abstract

In any metabolomics experiment, robustness and reproducibility of data collection is of vital importance. These become more important in collaborative studies where data is to be collected on multiple instruments. With minimisation of variance in sample preparation and instrument performance it is possible to elucidate even subtle differences in metabolite fingerprints due to genotype or biological treatment. In this paper we report on an inter laboratory comparison of plant derived samples by [(1)H]-NMR spectroscopy across five different sites and within those sites utilising instruments with different probes and magnetic field strengths of 9.4 T (400 MHz), 11.7 T (500 MHz) and 14.1 T (600 MHz). Whilst the focus of the study is on consistent data collection across laboratories, aspects of sample stability and the requirement for sample rotation within the NMR magnet are also discussed. Comparability of the datasets from participating laboratories was exceptionally good and the data were amenable to comparative analysis by multivariate statistics. Field strength differences can be adjusted for in the data pre-processing and multivariate analysis demonstrating that [(1)H]-NMR fingerprinting is the ideal technique for large scale plant metabolomics data collection requiring the participation of multiple laboratories.

摘要

在任何代谢组学实验中,数据收集的稳健性和可重复性至关重要。在需要在多台仪器上收集数据的合作研究中,这些因素变得更加重要。通过将样品制备和仪器性能的差异降至最低,即使是由于基因型或生物处理导致的代谢物指纹的细微差异也有可能被阐明。在本文中,我们报告了一项跨五个不同地点的实验室间比较,使用[¹H]-核磁共振光谱对植物来源的样品进行分析,并且在这些地点内使用了配备不同探头以及磁场强度分别为9.4 T(400 MHz)、11.7 T(500 MHz)和14.1 T(600 MHz)的仪器。虽然该研究的重点是跨实验室的一致数据收集,但也讨论了样品稳定性方面以及在核磁共振磁体中样品旋转的要求。参与实验室的数据集可比性非常好,并且这些数据适合通过多元统计进行比较分析。在数据预处理和多元分析中可以对场强差异进行调整,这表明[¹H]-核磁共振指纹图谱是需要多个实验室参与的大规模植物代谢组学数据收集的理想技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec5d/2874487/18aabb5fecba/11306_2010_200_Fig1_HTML.jpg

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