Microbial Production of l-Threonine Using Metabolically Engineered .

Yanjun Tian, Zhi-Qiang Xiong, Yupeng Nie, Xuebing Ren, Jiayuan Liang, Baojun Li

Journal: Journal of agricultural and food chemistry 2025;73(22):13125-13141

PMID: 40407267

Abstract

l-Threonine is one of the essential amino acids and has broad applications in food, pharmaceuticals, cosmetic products, and feed. Currently, its production depends on sustainable, environmentally friendly, and cost-effective microbial fermentation utilizing renewable carbon sources. With the global demand for l-threonine rising annually, achieving high production efficiency at economical costs has become a major focus of research. Multiple metabolic engineering approaches have been implemented to develop efficient l-threonine microbial cell factories, providing theoretical insights to support industrial-scale l-threonine production. This paper reviews systematic metabolic engineering approaches to develop l-threonine microbial cell factories, explores the application of novel tools and strategies, examines research aimed at enhancing cell robustness, and discusses fermentation condition optimization. Lastly, the challenges in constructing efficient l-threonine-producing strains are highlighted, providing theoretical insights to support industrial-scale l-threonine production.

Address: School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.; Shandong Freda Biotechnology Company, Ltd., Linyi 276720, China.

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