Dutkiewicz Ewelina P, Su Chun-Han, Lee Han-Jung, Hsu Cheng-Chih, Yang Yu-Liang
Agricultural Biotechnology Research Center, Academia Sinica, Taipei, Taiwan.
Department of Chemistry, National Taiwan University, Taipei, Taiwan.
Plant J. 2021 Feb;105(4):1123-1133. doi: 10.1111/tpj.15092. Epub 2021 Jan 5.
Imaging mass spectrometry (IMS) is a powerful technique that enables analysis of various molecular species at a high spatial resolution with low detection limits. In contrast to the matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) approach, surface-assisted laser desorption/ionization (SALDI) can be more effective in the detection of small molecules due to the absence of interfering background signals in low m/z ranges. We developed a functionalized TiO nanowire as a solid substrate for IMS of low-molecular-weight species in plant tissues. We prepared TiO nanowires using an inexpensive modified hydrothermal process and subsequently functionalized them chemically with various silane analogs to overcome the problem of superhydrophilicity of the substrate. Chemical modification changed the selectivity of imprinting of samples deposited on the substrate surface and thus improved the detection limits. The substrate was applied to image distribution of the metabolites in very fragile specimens such as the petal of Catharanthus roseus. We observed that the metabolites are distributed heterogeneously in the petal, which is consistent with previous results reported for the C. roseus plant leaf and stem. The intermediates corresponding to the biosynthesis pathway of some vinca alkaloids were clearly shown in the petal. We also performed profiling of petals from five different cultivars of C. roseus plant. We verified the semi-quantitative capabilities of the imprinting/imaging approach by comparing results using the LC-MS analysis of the plant extracts. This suggested that the functionalized TiO nanowire substrate-based SALDI is a powerful technique complementary to MALDI-MS.
成像质谱(IMS)是一项强大的技术,能够在低检测限下以高空间分辨率分析各种分子种类。与基质辅助激光解吸/电离质谱(MALDI-MS)方法不同,表面辅助激光解吸/电离(SALDI)在检测小分子方面可能更有效,因为在低质荷比范围内不存在干扰背景信号。我们开发了一种功能化的TiO纳米线作为用于植物组织中低分子量物质IMS分析的固体基质。我们使用一种廉价的改进水热法制备了TiO纳米线,随后用各种硅烷类似物对其进行化学功能化,以克服基质超亲水性的问题。化学修饰改变了沉积在基质表面的样品的印迹选择性,从而提高了检测限。该基质被应用于成像长春花花瓣等非常脆弱标本中代谢物的分布。我们观察到代谢物在花瓣中呈异质分布,这与先前报道的长春花植物叶片和茎的结果一致。花瓣中清晰显示了一些长春花生物碱生物合成途径的中间体。我们还对长春花植物五个不同品种的花瓣进行了分析。我们通过比较使用植物提取物的液相色谱-质谱分析结果,验证了印迹/成像方法的半定量能力。这表明基于功能化TiO纳米线基质的SALDI是一种与MALDI-MS互补的强大技术。