酿酒酵母
表型
生物
遗传学
基因
计算生物学
翻译(生物学)
细胞
信使核糖核酸
作者
Chao Ye,Nan Xu,Cong Gao,Gao‐Qiang Liu,Jianzhong Xu,Zhang Wei-guo,Xiulai Chen,Jens Nielsen,Li Liu
摘要
Abstract Biological network construction for Saccharomyces cerevisiae is a widely used approach for simulating phenotypes and designing cell factories. However, due to a complicated regulatory mechanism governing the translation of genotype to phenotype, precise prediction of phenotypes remains challenging. Here, we present WM_S288C, a computational whole‐cell model that includes 15 cellular states and 26 cellular processes and which enables integrated analyses of physiological functions of Saccharomyces cerevisiae . Using WM_S288C to predict phenotypes of S. cerevisiae , the functions of 1140 essential genes were characterized and linked to phenotypes at five levels. During the cell cycle, the dynamic allocation of intracellular molecules could be tracked in real‐time to simulate cell activities. Additionally, one‐third of non‐essential genes were identified to affect cell growth via regulating nucleotide concentrations. These results demonstrated the value of WM_S288C as a tool for understanding and investigating the phenotypes of S. cerevisiae .
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