Department of Biology, University of Florence, Florence, Italy.
Consorzio Interuniversitario Risonanze Magnetiche di Metallo Proteine (CIRMMP), Florence, Italy.
Nat Commun. 2020 Jun 19;11(1):3135. doi: 10.1038/s41467-020-16872-8.
It is commonly thought that when multiple carbon sources are available, bacteria metabolize them either sequentially (diauxic growth) or simultaneously (co-utilization). However, this view is mainly based on analyses in relatively simple laboratory settings. Here we show that a heterotrophic marine bacterium, Pseudoalteromonas haloplanktis, can use both strategies simultaneously when multiple possible nutrients are provided in the same growth experiment. The order of nutrient uptake is partially determined by the biomass yield that can be achieved when the same compounds are provided as single carbon sources. Using transcriptomics and time-resolved intracellular H-C NMR, we reveal specific pathways for utilization of various amino acids. Finally, theoretical modelling indicates that this metabolic phenotype, combining diauxie and co-utilization of substrates, is compatible with a tight regulation that allows the modulation of assimilatory pathways.
人们普遍认为,当有多种碳源可供利用时,细菌要么按顺序(双相生长),要么同时(共利用)进行代谢。然而,这种观点主要基于在相对简单的实验室环境中的分析。在这里,我们展示了一种异养海洋细菌,盐单胞菌,可以在同一个生长实验中同时使用这两种策略,当提供多种可能的营养物质时。养分摄取的顺序部分取决于当相同的化合物作为单一碳源提供时可以实现的生物量产量。通过转录组学和时间分辨的细胞内 H-C NMR,我们揭示了利用各种氨基酸的特定途径。最后,理论建模表明,这种代谢表型,结合了底物的双相生长和共利用,与允许调节同化途径的紧密调控是兼容的。