4.7 Article

Convergent engineering of syntrophic Escherichia coli coculture for efficient production of glycosides

Journal

METABOLIC ENGINEERING
Volume 47, Issue -, Pages 243-253

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ymben.2018.03.016

Keywords

Salidroside; Coculture; Co-culture; Consortium; Glycoside; Escherichia coli; Metabolic engineering; Synthetic biology

Funding

  1. National Basic Research Program of China [2014CB745102]
  2. National Natural Science Foundation of China [31570087]

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Synthetic microbial coculture to express heterologous biosynthetic pathway for de novo production of medicinal ingredients is an emerging strategy for metabolic engineering and synthetic biology. Here, taking efficient production of salidroside as an example of glycosides, we design and construct a syntrophic Escherichia coli-E. coil coculture composed of the aglycone (AG) strain and the glycoside (GD) strain, which convergently accommodate biosynthetic pathways of tyrosol and salidroside, respectively. To accomplish this the phenylalanine-deficient AG strain was engineered to utilize xylose preferentially and to overproduce precursor tyrosol, while the tyrosine-deficient GD strain was constructed to consume glucose exclusively and to enhance another precursor UDP-glucose availability for synthesis of salidroside. The AG and GD strains in the synthetic consortium are obligatory cooperators through crossfeeding of tyrosine and phenylalanine and compatible in glucose and xylose mixture. Through balancing the metabolic pathway strength, we show that the syntrophic coculture was robust and stable, and produced 6.03 g/L of salidroside. It was the de novo production of salidroside for the first time in E. coil coculture system, which would be applicable for production of other important glycosides and natural products.

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