The SATCM Key Laboratory for New Resources & Quality Evaluation of Chinese Medicine, The MOE Key Laboratory for Standardization of Chinese Medicines and Shanghai Key Laboratory of Compound Chinese Medicines, Institute of Chinese Materia Medica, Shanghai University of Traditional Chinese Medicine, Shanghai, 201203, China.
Arch Microbiol. 2024 Nov 7;206(12):460. doi: 10.1007/s00203-024-04178-y.
To establish efficient yeast cell factories, it is necessary to understand the transcriptional and metabolic changes among different yeasts. Saccharomyces cerevisiae BY4742 and CEN.PK2-1C strains are originated from different yeast strains and are commonly used as model organisms and chassis cells in molecular biology study and synthetic biology-based natural production. Metabolomic analysis showed that the BY4742 strain produced higher levels of phenylalanine, tyrosine than CEN.PK2-1C, while CEN.PK2-1C produced high levels of indoleacetaldehyde, indolepyruvate. Transcriptomic analysis showed that the two strains showed large differences in the glycolysis pathway and pyruvate metabolism pathway. CEN.PK2-1C had greater glycolysis flux than BY4742, whereas BY4742 has greater flux in the pathway of pyruvate metabolism to produce fumarate. These findings provide a basis knowledge of the metabolomic and transcriptomic differences between BY4742 and CEN.PK2-1C strains, and also provide preliminary information for strain selection for molecular biology study and synthetic biology-based natural product production.
为了建立高效的酵母细胞工厂,有必要了解不同酵母之间的转录和代谢变化。酿酒酵母 BY4742 和 CEN.PK2-1C 菌株来源于不同的酵母菌株,常用于分子生物学研究和基于合成生物学的天然产物生产的模式生物和底盘细胞。代谢组学分析表明,与 CEN.PK2-1C 相比,BY4742 菌株产生的苯丙氨酸和酪氨酸水平更高,而 CEN.PK2-1C 则产生高水平的吲哚乙醛和吲哚丙酮酸。转录组学分析表明,这两个菌株在糖酵解途径和丙酮酸代谢途径中表现出很大的差异。CEN.PK2-1C 的糖酵解通量大于 BY4742,而 BY4742 则在丙酮酸代谢途径中产生富马酸的通量更大。这些发现为 BY4742 和 CEN.PK2-1C 菌株之间的代谢组学和转录组学差异提供了基础知识,也为分子生物学研究和基于合成生物学的天然产物生产中的菌株选择提供了初步信息。