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September 19, 2025Advanced Science49 citationsOpen Access

Balancing Cell Growth and Product Synthesis for Efficient Microbial Cell Factories

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LLLinxia LiuDDDongqin DingHWHuiying Wang

Key Points

  • Engineered microbial cell factories face trade-offs between product synthesis and cell growth, leading to reduced fitness.
  • Recent advances in metabolic engineering highlight methods like pathway optimization and fermentation process control for better product yields.
  • Innovative strategies are necessary to balance cellular growth and high-level production, enabling sustainability in biorefineries.
  • The review discusses ongoing challenges in reprogramming microbial metabolism for efficient production of industrially important compounds.

Abstract

Abstract The sustainable, bio‐based production of industrially valuable chemicals and materials from renewable, non‐edible biomass through biorefineries has emerged as a vital strategy for tackling urgent global challenges, including climate change, and for realizing the “net zero carbon” commitments recently pledged by nations worldwide. Metabolic engineering has played a central role in enabling the development of microbial strains capable of efficiently overproducing a diverse array of target compounds. Nevertheless, engineered microbial cell factories often face inherent trade‐offs between product synthesis and cell growth, frequently resulting in diminished fitness or loss‐of‐function phenotypes. This review highlights recent advances in metabolic engineering strategies aims at reconciling this conflict, encompassing pathway optimization, dynamic regulation, orthogonal system design, microbial consortia engineering, fermentation process control, and integrative metabolic modeling. It also explores the remaining challenges and future directions for reprogramming microbial metabolism to harmonize growth with high‐level production.

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Cite This Study

Liu et al. (2025) studied this question.

synapsesocial.com/papers/68d464ea31b076d99fa6406bhttps://doi.org/10.1002/advs.202510649
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