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低成本加热方式可利用快速蒸发电离质谱法(REIMS)检测植物感染的生物标志物,这些生物标志物具有病原体特异性。

Low-Cost Heating Modalities Allow the Detection of Biomarkers for Plant Infection Using Rapid Evaporative Ionization Mass Spectrometry (REIMS) That Are Pathogen Specific.

作者信息

Flint Alice, Weir Ryan, Mur Luis A J, Cameron Simon J S

机构信息

School of Biological Sciences, Institute for Global Food Security, Queen's University Belfast, Belfast BT9 5DL, United Kingdom.

Department of Life Sciences, Aberystwyth University, Aberystwyth SY23 3FL, United Kingdom.

出版信息

Anal Chem. 2025 Jul 15;97(27):14230-14238. doi: 10.1021/acs.analchem.5c00226. Epub 2025 Jun 27.

DOI:10.1021/acs.analchem.5c00226
PMID:40577834
Abstract

Agricultural pathogens reduce annual crop yields by up to 40% and present a barrier to improving crop production to a level by which it will be able to support a global population of 9 billion by 2050. Current diagnostic methods are slow and lack specificity and typically rely on visual signs of infection, which appear late in the infection cycle. In this work, we explored whether the ambient ionization method rapid evaporative ionization mass spectrometry (REIMS) could be used to detect pathogen-specific biomarkers of infection against two important pathogens: the nematode and bacteria in the tomato plant (). Unlike previous implementations of REIMS for human clinical diagnostics, we explored the use of low-cost heating modalities in the form of a 450 nm laser and soldering iron (both below $200). After optimization, we found that the 450 nm laser provided the highest level of diagnostic classification accuracy and, importantly, could distinguish between infection causes with pathogen-specific biomarkers. This shows both the novel utility of REIMS for analysis of plant material, which would allow and high-throughput analysis by the community for a broad range of plant metabolome applications, and also the potential of low-cost 450 nm lasers for use beyond this.

摘要

农业病原体使农作物年产量降低多达40%,并对将作物产量提高到2050年能够养活90亿全球人口的水平构成障碍。当前的诊断方法速度慢且缺乏特异性,通常依赖于感染的视觉迹象,而这些迹象在感染周期后期才会出现。在这项工作中,我们探究了常压电离方法——快速蒸发电离质谱(REIMS)是否可用于检测针对两种重要病原体的感染病原体特异性生物标志物:番茄植株中的线虫和细菌(此处括号内容原文缺失)。与之前将REIMS用于人类临床诊断的应用不同,我们探索了以450纳米激光和烙铁(两者价格均低于200美元)形式的低成本加热方式的使用。经过优化,我们发现450纳米激光提供了最高水平的诊断分类准确性,重要的是,能够通过病原体特异性生物标志物区分感染原因。这既展示了REIMS在植物材料分析方面的新用途,这将允许并使该领域能够对广泛的植物代谢组应用进行高通量分析,也展示了低成本450纳米激光在此之外的潜在用途。

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