RRC ID 89859
著者 Zhang H, Kong Y, Shao Y, Zhang Z, Zhao C, Xu F, Yang F, Sun F, Cui Y, Wu Y, Meng C, Gao Z.
タイトル Metabolic engineering of Dunaliella salina enhances astaxanthin production: combined effects of heterologous enzyme co-expression and dual-stress optimization.
ジャーナル World J Microbiol Biotechnol
Abstract Astaxanthin is primarily produced by chemical synthesis or extraction from Haematococcus pluvialis, but both approaches face limitations in cost, scalability, or product quality, necessitating alternative production platforms. To explore a potentially cost-effective alternative platform for astaxanthin production, we engineered Dunaliella salina by combinatorial expression of Haematococcus-derived β-carotene ketolase (BKT) and β-carotene hydroxylase (CRTR-B) isoenzymes. The optimal crtR-B1/bkt2 combination (P4 strain) yielded 44.3 µg/g astaxanthin under normal conditions, while also accumulating significant levels of other high-value carotenoids, including β-carotene (5.48 µg/mg) and lutein (1.54-fold higher than wild-type). Under complete nitrogen deficiency, the astaxanthin production of the P4 mutant strain reached 66.20 µg/g, while β-carotene, lutein, and canthaxanthin levels were 3.43-, 1.56-, and 1.75-fold higher than normal conditions, respectively. Dual-stress treatment, i.e., combination of nitrogen deprivation (0 mg/L NaNO₃) and high light intensity (15,000 lx), enhanced astaxanthin production to 89.56 µg/g in the P4 strain, with concurrent increases in canthaxanthin and β-carotene compared with normal culture conditions. Transcriptomic analysis revealed metabolic reprogramming with upregulation of carotenoid biosynthesis (BKT and LUT5), pyruvate metabolism, and photosynthesis genes, alongside downregulation of oxidative phosphorylation. This study demonstrates the combined optimization of isozyme combination and environmental stress to elevate the synthesis of astaxanthin and other carotenoids in D. salina, providing new research ideas and experimental evidence for the future construction of high-yield engineered algal strains.
巻・号 42(9)
公開日 2026-8-14
DOI 10.1007/s11274-026-05199-z
PII 10.1007/s11274-026-05199-z
PMID 42599600
MeSH Canthaxanthin / metabolism Carotenoids / metabolism Chlorophyceae* / enzymology Chlorophyceae* / genetics Chlorophyceae* / metabolism Isoenzymes / genetics Isoenzymes / metabolism Lutein / metabolism Metabolic Engineering* / methods Mixed Function Oxygenases / genetics Mixed Function Oxygenases / metabolism Nitrogen / deficiency Nitrogen / metabolism Oxygenases / genetics Oxygenases / metabolism Stress, Physiological Xanthophylls / metabolism beta Carotene / metabolism
リソース情報
藻類 NIES-144