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通过高分辨率质谱筛选工作流程进行纵向植物健康监测:在肥料介导的番茄生长实验中的应用。

Longitudinal Plant Health Monitoring via High-Resolution Mass Spectrometry Screening Workflows: Application to a Fertilizer Mediated Tomato Growth Experiment.

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, Panepistimiopolis Zografou, 15771 Athens, Greece.

出版信息

Molecules. 2023 Sep 22;28(19):6771. doi: 10.3390/molecules28196771.

Abstract

Significant efforts have been spent in the modern era towards implementing environmentally friendly procedures like composting to mitigate the negative effects of intensive agricultural practices. In this context, a novel fertilizer was produced via the hydrolysis of an onion-derived compost, and has been previously comprehensively chemically characterized. In order to characterize its efficacy, the product was applied to tomato plants at five time points to monitor plant health and growth. Control samples were also used at each time point to eliminate confounding parameters due to the plant's normal growth process. After harvesting, the plant leaves were extracted using aq. MeOH (70:30, /) and analyzed via UPLC-QToF-MS, using a C18 column in both ionization modes (±ESI). The data-independent (DIA/bbCID) acquisition mode was employed, and the data were analyzed by MS-DIAL. Statistical analysis, including multivariate and trend analysis for longitudinal monitoring, were employed to highlight the differentiated features among the controls and treated plants as well as the time-point sequence. Metabolites related to plant growth belonging to several chemical classes were identified, proving the efficacy of the fertilizer product. Furthermore, the efficiency of the analytical and statistical workflows utilized was demonstrated.

摘要

在现代社会,人们付出了巨大的努力来实施环保程序,如堆肥,以减轻集约化农业实践的负面影响。在这种情况下,通过洋葱衍生堆肥的水解生产了一种新型肥料,并已对其进行了全面的化学表征。为了表征其功效,该产品在五个时间点应用于番茄植物,以监测植物健康和生长。在每个时间点也使用对照样品,以消除由于植物正常生长过程引起的混杂参数。收获后,使用 aq.MeOH(70:30,/)提取植物叶片,并通过 UPLC-QToF-MS 在两种离子化模式(±ESI)下进行分析。采用数据独立(DIA/bbCID)采集模式,并通过 MS-DIAL 进行数据分析。采用统计分析,包括多元分析和纵向监测的趋势分析,以突出对照和处理植物以及时间点序列之间的差异特征。鉴定出属于几个化学类别的与植物生长相关的代谢物,证明了肥料产品的功效。此外,还证明了所使用的分析和统计工作流程的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0df/10574498/a747a5ecd5f8/molecules-28-06771-g001.jpg

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