Agricultural Biotechnology Research Center , Academia Sinica , 11529 Taipei , Taiwan.
Bioresource Collection and Research Center , Food Industry Research and Development Institute , 30062 Hsinchu , Taiwan.
J Nat Prod. 2018 Jul 27;81(7):1527-1533. doi: 10.1021/acs.jnatprod.7b00866. Epub 2018 Jun 19.
Application of matrix-assisted laser desorption/ionization imaging mass spectrometry to microbiology and natural product research has opened the door to the exploration of microbial interactions and the consequent discovery of new natural products and their functions in the interactions. However, several drawbacks of matrix-assisted laser desorption/ionization imaging mass spectrometry have limited its application especially to complicated and uneven microbial samples. Here, we applied nanostructured silicon as a substrate for surface-assisted laser desorption/ionization mass spectrometry for microbial imaging mass spectrometry to explore fungal metabolic interactions. We chose Phellinus noxius and Aspergillus strains to evaluate the potential of microbial imaging mass spectrometry on nanostructured silicon because both fungi produce a dense mass of aerial mycelia, which is known to complicate the collection of high-quality imaging mass spectrometry data. Our simple and straightforward sample imprinting method and low background interference resulted in an efficient analysis of small metabolites from the complex microbial interaction samples.
基质辅助激光解吸/电离成像质谱在微生物学和天然产物研究中的应用为探索微生物相互作用以及随后发现新的天然产物及其在相互作用中的功能开辟了道路。然而,基质辅助激光解吸/电离成像质谱的几个缺点限制了其应用,特别是在复杂和不均匀的微生物样品上。在这里,我们应用纳米结构化硅作为基质辅助激光解吸/电离质谱的基质,用于微生物成像质谱,以探索真菌代谢相互作用。我们选择木蹄层孔菌和黄曲霉菌株来评估微生物成像质谱在纳米结构化硅上的潜力,因为这两种真菌都产生密集的气生菌丝体,众所周知,这会使高质量成像质谱数据的收集变得复杂。我们简单直接的样品印迹方法和低背景干扰使得从复杂的微生物相互作用样品中有效分析小代谢物成为可能。