Faculty of Process and Environmental Engineering, Department of Bioprocess Engineering, Lodz University of Technology, ul. Wólczańska 213, Łódź, 93-005, Poland.
Arch Microbiol. 2024 Nov 1;206(12):452. doi: 10.1007/s00203-024-04186-y.
The influence of the initial pH on the morphology and secondary metabolite production in cocultures and axenic cultures of Aspergillus terreus and Streptomyces rimosus was investigated. The detected secondary metabolites (6 of bacterial and 4 of fungal origin) were not found in the cultures initiated at pH values less than or equal to 4.0. The highest mean levels of oxytetracycline were recorded in S. rimosus axenic culture at pH 5.0. Initiating the axenic culture at pH 5.9 led to visibly lower product levels, yet the presence of A. terreus reduced the negative effect of non-optimal pH and led to higher oxytetracycline titer than in the corresponding S. rimosus axenic culture. The cocultivation initiated at pH 5.0 or 5.9 triggered the formation of oxidized rimocidin. The products of A. terreus were absent in the cocultures. At pH 4.0, the striking morphological differences between the coculture and the axenic cultures were recorded.
研究了初始 pH 值对土曲霉和棘孢小单孢菌共培养物和无菌培养物形态和次生代谢产物产生的影响。在初始 pH 值小于或等于 4.0 的培养物中未检测到检测到的次生代谢产物(细菌来源的 6 种和真菌来源的 4 种)。在 pH 值为 5.0 的无菌棘孢小单孢菌培养物中记录到的土霉素平均水平最高。在 pH 值为 5.9 时开始无菌培养会导致产物水平明显降低,但土曲霉的存在降低了非最佳 pH 值的负面影响,并导致比相应的棘孢小单孢菌无菌培养物更高的土霉素效价。在 pH 值为 5.0 或 5.9 时起始的共培养物触发了氧化 rimocidin 的形成。共培养物中不存在土曲霉的产物。在 pH 值为 4.0 时,记录到共培养物和无菌培养物之间明显的形态差异。