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首页> 外文期刊>Analytical chemistry >In Vivo Chemical Analysis of Plant Sap from the Xylem and Single Parenchymal Cells by Capillary Microsampling Electrospray Ionization Mass Spectrometry
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In Vivo Chemical Analysis of Plant Sap from the Xylem and Single Parenchymal Cells by Capillary Microsampling Electrospray Ionization Mass Spectrometry

机译:通过毛细管微内采样电离电离质谱法从木质和单一实质细胞的植物SAP体内化学分析

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摘要

In plants, long-distance transport of chemicals from source to sink takes place through the transfer of sap inside complex trafficking systems. Access to this information provides insight into the physiological responses that result from the interactions between the organism and its environment. In vivo analysis offers minimal perturbation to the physiology of the organism, thus providing information that represents the native physiological state more accurately. Here we describe capillary microsampling with electrospray ionization mass spectrometry (ESI-MS) for the in vivo analysis of xylem sap directly from plants. Initially, fast MS profiling was performed by ESI from the whole sap exuding from wounds of living plants in their native environment. This sap, however, originated from the xylem and phloem and included the cytosol of damaged cells. Combining capillary microsampling with ESI-MS enabled targeted sampling of the xylem sap and single parenchymal cells in the pith, thereby differentiating their chemical compositions. With this method we analyzed soybean plants infected by nitrogen-fixing bacteria and uninfected plants to investigate the effects of symbiosis on chemical transport through the sap. Infected plants exhibited higher abundances for certain nitrogen-containing metabolites in their sap, namely allantoin, allantoic acid, hydroxymethylglutamate, and methylene glutamate, compared to uninfected plants. Using capillary microsampling, we localized these compounds to the xylem, which indicated their transport from the roots to the upper parts of the plant. Differences between metabolite levels in sap from the infected and uninfected plants indicated that the transport of nitrogen-containing and other metabolites is regulated depending on the source of nitrogen supply.
机译:在植物中,通过在复杂的贩运系统内的SAP的转移,从源头到下沉的化学物质的远程传输发生。对此信息的访问提供了对生理学响应的洞察,这些反应导致了生物与其环境之间的相互作用。体内分析提供了对生物体生理学的最小扰动,从而提供更准确地代表本地生理状态的信息。在这里,我们描述了具有电喷雾电离质谱(ESI-MS)的毛细管微内采样,用于直接来自植物的木质SAP体内分析。最初,通过ESI从其本土环境中的生物植物伤口渗出的整个SAP进行快速的MS分析。然而,这种SAP起源于木质蛋白和韧皮肌,并包括受损细胞的细胞溶胶。将毛细管微内采集与ESI-MS的靶向采样组合在髓中的靶向样品和单一实质细胞的靶向取样,从而区分其化学组成。通过这种方法,我们分析了通过氮固定细菌和未感染的植物感染的大豆植物,以研究共生在通过SAP的化学输送的影响。与未感染的植物相比,受感染的植物对其SAP中的某些含氮代谢物,即丙二醇素,甲酸,羟甲基,亚甲基谷氨酸盐具有更高的丰度。采用毛细管微内采样,我们将这些化合物本地化为木质,表明将其运输到植物的上部。来自受感染和未感染的植物的SAP中代谢物水平的差异表明,根据氮气供应源来调节含氮和其他代谢物的运输。

著录项

  • 来源
    《Analytical chemistry 》 |2020年第10期| 共8页
  • 作者单位

    George Washington Univ Dept Chem Washington DC 20052 USA;

    George Washington Univ Dept Chem Washington DC 20052 USA;

    Univ Missouri CS Bond Life Sci Ctr Div Plant Sci Columbia MO 65211 USA;

    George Washington Univ Dept Chem Washington DC 20052 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学 ;
  • 关键词

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