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Combining adaptive laboratory evolution and metabolic engineering for efficient erythritol production from crude glycerol by Yarrowia lipolytica.

Created on 24 Aug 2026

Authors

Ling-Xuan Zhao, Jia-Wei Li, Ya-Ting Wang, Qin-Yi Zhu, Jun Chen, Zhi-Jie Liu, Feng Liu, Qiang Hua

Published in

Journal of biotechnology. Aug 23, 2026. Epub Aug 23, 2026.

Abstract

Erythritol is a natural zero-calorie sweetener with potential for sustainable healthy diets. While yeasts can convert biodiesel-derived glycerol into erythritol, the low production and by-product accumulation limit its industrial commercialization. Here, we isolated different morphologically Yarrowia lipolytica mutants with higher erythritol production through adaptive laboratory evolution under hyperosmotic stress, in which mutant Z exhibited superior growth performance and membrane-related genetic variants compared to the parent strain. We then systematically engineered strain Z to optimize the flux towards erythritol by improving glycerol utilization, reducing the synthesis of competing sugar alcohols, complementing auxotrophic markers, and boosting precursor supply. After fermentation condition optimization and two-stage fed-batch fermentation in a 5-L bioreactor, the final engineered strain Z12 produced 250.76g/L erythritol from pure glycerol and 232g/L erythritol from crude glycerol, which is the highest reported titers for both feedstocks. This study demonstrates the effective integration of adaptive evolution with metabolic remodeling for efficient erythritol biosynthesis.

PMID:
42633822
Bibliographic data and abstract were imported from PubMed on 24 Aug 2026.

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