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在完全培养基中进行指数生长时,随着化合物逐渐被消耗,恶臭假单胞菌 KT2440 的代谢会经历连续的修饰。

Pseudomonas putida KT2440 metabolism undergoes sequential modifications during exponential growth in a complete medium as compounds are gradually consumed.

机构信息

Departamento de Biotecnología Microbiana, Centro Nacional de Biotecnología, CSIC, Madrid, Spain.

Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, Kgs. Lyngby, Denmark.

出版信息

Environ Microbiol. 2019 Jul;21(7):2375-2390. doi: 10.1111/1462-2920.14622. Epub 2019 Apr 21.

Abstract

Pseudomonas putida is a soil bacterium with a versatile and robust metabolism. When confronted with mixtures of carbon sources, it prioritizes the utilization of the preferred compounds, optimizing metabolism and growth. This response is particularly strong when growing in a complex medium such as LB. This work examines the changes occurring in P. putida KT2440 metabolic fluxes, while it grows exponentially in LB medium and sequentially consumes the compounds available. Integrating the uptake rates for each compound at three different moments during the exponential growth with the changes observed in the proteome, and with the metabolic fluxes predicted by the iJN1411 metabolic model for this strain, allowed the metabolic rearrangements that occurred to be determined. The results indicate that the bacterium changes significantly the configuration of its metabolism during the early, mid and late exponential phases of growth. Sugars served as an energy source during the early phase and later as energy and carbon source. The configuration of the tricarboxylic acids cycle varied during growth, providing no energy in the early phase, and turning to a reductive mode in the mid phase and to an oxidative mode later on. This work highlights the dynamism and flexibility of P. putida metabolism.

摘要

铜绿假单胞菌是一种土壤细菌,具有多功能和强大的代谢能力。当面临碳源混合物时,它会优先利用首选化合物,从而优化代谢和生长。当在复杂培养基(如 LB 培养基)中生长时,这种反应尤其强烈。本研究考察了 P. putida KT2440 代谢通量在 LB 培养基中指数生长并依次消耗可用化合物时发生的变化。将每个化合物在指数生长的三个不同时刻的摄取率与蛋白质组中观察到的变化以及该菌株的 iJN1411 代谢模型预测的代谢通量相结合,确定了发生的代谢重排。结果表明,细菌在生长的早期、中期和晚期指数阶段显著改变了其代谢的结构。糖在早期作为能量来源,后来作为能量和碳源。三羧酸循环的结构在生长过程中发生变化,在早期阶段不提供能量,在中期阶段变为还原模式,随后在后期变为氧化模式。这项工作强调了 P. putida 代谢的动态性和灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bbf/6850689/ef857ee0db8e/EMI-21-2375-g001.jpg

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