Polonio Julio Cesar, Ribeiro Marcos Alessandro Dos Santos, Fávaro-Polonio Cintia Zani, Meurer Eduardo Cesar, Azevedo João Lúcio, Golias Halison Correia, Pamphile João Alencar
Laboratory of Microbial Biotechnology LBIOMIC/UEM, Departamento de Biotecnologia Genética e Biologia Celular, Universidade Estadual de Maringá, Maringá 87020-900, Paraná, Brazil.
Laboratory of Mass Spectrometry "LabFenn", Campus de Jandaia do Sul, Universidade Federal do Paraná, Jandaia do Sul 86900-000, Paraná, Brazil.
Metabolites. 2022 Jul 26;12(8):692. doi: 10.3390/metabo12080692.
Endophytic microorganisms show great potential for biotechnological exploitation because they are able to produce a wide range of secondary compounds involved in endophyte−plant adaptation, and their interactions with other living organisms that share the same microhabitat. Techniques used to chemically extract these compounds often neglect the intrinsic chemical characteristics of the molecules involved, such as the ability to form conjugate acids or bases and how they influence the solubilities of these molecules in organic solvents. Therefore, in this study, we aimed to evaluate how the pH of the fermented broth affects the process used to extract the secondary metabolites of the Diaporthe citri strain G-01 endophyte with ethyl acetate as the organic solvent. The analyzed samples, conducted by direct-infusion electrospray-ionization mass spectrometry, were grouped according to the pH of the fermented broth (i.e., <7 and ≥7). A more extreme pH (i.e., 2 or 12) was found to affect the chemical profile of the sample. Moreover, statistical analysis enabled us to determine the presence or absence of ions of high importance; for example, ions at 390.7 and 456.5 m/z were observed mainly at acidic pH, while 226.5, 298.3, and 430.1 m/z ions were observed at pH ≥ 7. Extraction at a pH between 4 and 9 may be of interest for exploring the differential secondary metabolites produced by endophytes. Furthermore, pH influences the chemical phenotype of the fungal metabolic extract.
内生微生物在生物技术开发方面具有巨大潜力,因为它们能够产生多种参与内生菌与植物相互适应的次生化合物,以及它们与共享同一微生境的其他生物之间的相互作用。用于化学提取这些化合物的技术往往忽略了所涉及分子的内在化学特性,例如形成共轭酸或碱的能力以及它们如何影响这些分子在有机溶剂中的溶解度。因此,在本研究中,我们旨在评估发酵液的pH值如何影响以乙酸乙酯为有机溶剂提取柑桔间座壳菌菌株G-01内生菌次生代谢产物的过程。通过直接进样电喷雾电离质谱分析的样品,根据发酵液的pH值(即<7和≥7)进行分组。发现更极端的pH值(即2或12)会影响样品的化学谱图。此外,统计分析使我们能够确定高重要性离子的存在与否;例如,m/z为390.7和456.5的离子主要在酸性pH下观察到,而m/z为226.5、298.3和430.1的离子在pH≥7时观察到。在pH值为4至9之间进行提取可能有助于探索内生菌产生的不同次生代谢产物。此外,pH值会影响真菌代谢提取物的化学表型。