营养不良
酿酒酵母
生物
生物生产
酵母
突变体
生物化学
拉伤
计算生物学
表型
遗传学
基因
解剖
作者
Simran Kaur Aulakh,Lara Sellés Vidal,Eric J. South,Huadong Peng,Sreejith J. Varma,Lucía Herrera-Domínguez,Markus Ralser,Rodrigo Ledesma‐Amaro
标识
DOI:10.1038/s41589-023-01341-2
摘要
Nutritional codependence (syntrophy) has underexplored potential to improve biotechnological processes by using cooperating cell types. So far, design of yeast syntrophic communities has required extensive genetic manipulation, as the co-inoculation of most eukaryotic microbial auxotrophs does not result in cooperative growth. Here we employ high-throughput phenotypic screening to systematically test pairwise combinations of auxotrophic Saccharomyces cerevisiae deletion mutants. Although most coculture pairs do not enter syntrophic growth, we identify 49 pairs that spontaneously form syntrophic, synergistic communities. We characterized the stability and growth dynamics of nine cocultures and demonstrated that a pair of tryptophan auxotrophs grow by exchanging a pathway intermediate rather than end products. We then introduced a malonic semialdehyde biosynthesis pathway split between different pairs of auxotrophs, which resulted in increased production. Our results report the spontaneous formation of stable syntrophy in S. cerevisiae auxotrophs and illustrate the biotechnological potential of dividing labor in a cooperating intraspecies community.
科研通智能强力驱动
Strongly Powered by AbleSci AI