Witte Thomas E, Overy David P
Agriculture and Agri-Food Canada, Ottawa Research and Development Centre, Ottawa, ON, Canada.
Department of Chemistry and Biomolecular Sciences, University of Ottawa, Ottawa, ON, Canada.
Methods Mol Biol. 2022;2456:349-365. doi: 10.1007/978-1-0716-2124-0_24.
This chapter describes protocols for the development of consensus chemical phenotypes or "metabolomes" of fungal populations using ultra-high pressure liquid chromatography coupled to high resolution mass spectrometry (UPLC-HRMS). Isolates are cultured using multiple media conditions to elicit the expression of diverse secondary metabolite biosynthetic gene clusters. The mycelium and spent culture media are extracted using organic solvents and profiled by ultra-high pressure chromatography coupled with a high resolution Thermo Orbitrap XL mass spectrometer with the ability to trap and fragment ions to general MS spectra. MS data preprocessing is explained and illustrated using the freely available software MZMine 2. Through data processing, binary matrices of mass features can be generated and then combined into a consensus secondary metabolite phenotype of all isolates grown in all media conditions. The production of consensus chemical phenotypes is useful for screening large fungal populations (both inter and intra-species populations) for isolates potentially expressing novel secondary metabolites or analogs of known secondary metabolites.
本章介绍了使用超高压液相色谱与高分辨率质谱联用(UPLC-HRMS)来开发真菌群体的共识化学表型或“代谢组”的方案。使用多种培养基条件培养分离株,以诱导不同的次生代谢物生物合成基因簇的表达。用有机溶剂提取菌丝体和用过的培养基,并通过超高压色谱与高分辨率的Thermo Orbitrap XL质谱仪进行分析,该质谱仪能够捕获离子并使其碎裂以生成质谱图。使用免费软件MZMine 2对质谱数据预处理进行了解释和说明。通过数据处理,可以生成质量特征的二元矩阵,然后将其组合成在所有培养基条件下生长的所有分离株的共识次生代谢物表型。生成共识化学表型有助于筛选大型真菌群体(种间和种内群体),以寻找可能表达新型次生代谢物或已知次生代谢物类似物的分离株。