Metabolomics

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Regulation mechanism of gibberellic acid-3 for astaxanthin biosynthesis in heterotrophically growing Chromochloris zofingiensis


ABSTRACT:

Chromochloris zofingiensis has been proved as a potential resource for large-scale astaxanthin production, but little information of phytohormones on growth and astaxanthin accumulation could be obtained. This study explored the impact of gibberellic acid-3 (GA3) on growth and astaxanthin generation in heterotrophically growing C. zofingiensis. On Day 16, the astaxanthin yield in 7.5 L fermenters was 89% higher at 0.34 g/L compared to the control. GA3 changed transcription levels of genes linked to carbon metabolism, lipid metabolism, astaxanthin production and ABC transporters. Genes related to astaxanthin biosynthesis, such as phytoene synthase (PSY), phytoene desaturase (PDS), beta-carotenoid hydroxylase (CHYb) and beta-carotenoid ketolase (BKT), were upregulated under GA3 induction. The relative abundances of metabolites involved in carbon metabolisms, such as glucose-1-phosphate (G1P), glucose-6-phosphate (G6P) and glyceraldehyde-3-phosphate (GAP), were altered. By using GA3 and arginine together, the astaxanthin yield increased by 2.3 times to 0.39 g/L over the control. This research proposed novel feasible approaches for heterotrophic C. zofingiensis high astaxanthin production.

INSTRUMENT(S): Liquid Chromatography MS - negative - reverse phase, Liquid Chromatography MS - positive - reverse phase

PROVIDER: MTBLS10762 | MetaboLights | 2024-08-13

REPOSITORIES: MetaboLights

Dataset's files

Source:
Action DRS
10d-1_N.mzML Mzml
10d-1_P.mzML Mzml
10d-2_N.mzML Mzml
10d-2_P.mzML Mzml
10d-3_N.mzML Mzml
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Publications

Regulation Mechanism of Gibberellic Acid-3 for Astaxanthin Biosynthesis in Heterotrophic Growing <i>Chromochloris zofingiensis</i>.

Chen Qiaohong Q   Liu Mingmeng M   Mi Wujuan W   Wan Dong D   Song Gaofei G   Huang Weichao W   Bi Yonghong Y  

Journal of agricultural and food chemistry 20241108 46


<i>Chromochloris zofingiensis</i> has been proven as a potential resource for large-scale astaxanthin production, but little information on phytohormones for its growth and astaxanthin accumulation could be obtained. This study explored the impact of gibberellic acid-3 (GA3) on growth and astaxanthin biosynthesis in heterotrophic <i>C. zofingiensis</i>. After 6 days of cultivation with GA3, biomass and astaxanthin yields in 7.5 L fermenters reached 268.5 g·L<sup>-1</sup> and 0.34 g·L<sup>-1</sup  ...[more]

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