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酵母和真菌竞争相互作用过程中产生的用于生物技术应用的挥发性化合物。

Volatile compounds for biotechnological applications produced during competitive interactions between yeasts and fungi.

机构信息

Agricultural Microbiology, Department of Biology, Federal University of Lavras (UFLA), Lavras, Minas Gerais, Brazil.

Department of Computer Science, Federal University of Alfenas (UNIFAL), Alfenas, Minas Gerais, Brazil.

出版信息

J Basic Microbiol. 2023 Jun;63(6):658-667. doi: 10.1002/jobm.202200409. Epub 2023 Feb 3.

Abstract

Fungi, yeasts and bacteria produce volatile compounds during their metabolism. In this study, the volatile compounds produced by yeast strains (Saccharomyces cerevisiae and Rhodotorula mucilaginosa) and fungal strains (Aspergillus carbonarius and Aspergillus ochraceus) during competitive interactions were investigated by solid-phase microextraction coupled with gas chromatography-mass spectrometry. Fifty-six volatile compounds were identified representing alcohols, aldehydes, esters, ketones, aromatic compounds, acids, furans, phenols, and nitrogen compounds, being the largest amount in the class of esters and alcohols. Eight compounds were identified only in interactive culture conditions such as 2-amino-1-propanol, isopropylamine, dimethylamine, pentyl propanoate, ethyl-2-aminopropanoate, acetone, oxalic acid, and β-elemene and five of these were produced in cocultures including A. carbonarius. These will be developed for future biotechnological applications such as in the pharmaceutical and biological industry to produce drugs. Antimicrobial and antifungal activities; Solvent and herbicide; flavoring ingredient; solvent, plastic synthesis, nail polish remover and thinner, pesticide and herbicide; important in the complexation of minerals in the soil; and plant-environment interactions, defending predators, pathogens, and competitors.

摘要

真菌、酵母和细菌在代谢过程中会产生挥发性化合物。在这项研究中,通过固相微萃取结合气相色谱-质谱联用技术研究了酵母菌株(酿酒酵母和粘红酵母)和真菌菌株(黑曲霉和赭曲霉)在竞争相互作用下产生的挥发性化合物。鉴定出了 56 种挥发性化合物,代表醇、醛、酯、酮、芳香族化合物、酸、呋喃、酚和含氮化合物,其中酯类和醇类的含量最大。有 8 种化合物仅在相互作用的培养条件下被鉴定出来,如 2-氨基-1-丙醇、异丙胺、二甲胺、戊丙酸酯、乙基-2-氨基丙酸盐、丙酮、草酸和β-榄香烯,其中 5 种化合物在共培养物中产生,包括 A. carbonarius。这些化合物将被开发用于未来的生物技术应用,如制药和生物工业生产药物。抗菌和抗真菌活性;溶剂和除草剂;调味剂成分;溶剂、塑料合成、指甲油去除剂和稀释剂、杀虫剂和除草剂;在土壤中矿物质的络合中很重要;以及植物-环境相互作用,防御捕食者、病原体和竞争者。

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