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TAG pathway engineering via GPAT2 concurrently potentiates abiotic stress tolerance and oleaginicity in Phaeodactylum tricornutum.


ABSTRACT: Background:Despite the great potential of marine diatoms in biofuel sector, commercially viable biofuel production from native diatom strain is impractical. Targeted engineering of TAG pathway represents a promising approach; however, recruitment of potential candidate has been regarded as critical. Here, we identified a glycerol-3-phosphate acyltransferase 2 (GPAT2) isoform and overexpressed in Phaeodactylum tricornutum. Results:GPAT2 overexpression did not impair growth and photosynthesis. GPAT2 overexpression reduced carbohydrates and protein content, however, lipid content were significantly increased. Specifically, TAG content was notably increased by 2.9-fold than phospho- and glyco-lipids. GPAT2 overexpression elicited the push-and-pull strategy by increasing the abundance of substrates for the subsequent metabolic enzymes, thereby increased the expression of LPAAT and DGAT. Besides, GPAT2-mediated lipid overproduction coordinated the expression of NADPH biosynthetic genes. GPAT2 altered the fatty acid profile in TAGs with C16:0 as the predominant fatty acid moieties. We further investigated the impact of GPAT2 on conferring abiotic stress, which exhibited enhanced tolerance to hyposaline (70%) and chilling (10 ºC) conditions via altered fatty acid saturation level. Conclusions:Collectively, our results exemplified the critical role of GPAT2 in hyperaccumulating TAGs with altered fatty acid profile, which in turn uphold resistance to abiotic stress conditions.

SUBMITTER: Wang X 

PROVIDER: S-EPMC7491103 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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TAG pathway engineering via GPAT2 concurrently potentiates abiotic stress tolerance and oleaginicity in <i>Phaeodactylum tricornutum</i>.

Wang Xiang X   Liu Si-Fen SF   Li Ruo-Yu RY   Yang Wei-Dong WD   Liu Jie-Sheng JS   Lin Carol Sze Ki CSK   Balamurugan Srinivasan S   Li Hong-Ye HY  

Biotechnology for biofuels 20200914


<h4>Background</h4>Despite the great potential of marine diatoms in biofuel sector, commercially viable biofuel production from native diatom strain is impractical. Targeted engineering of TAG pathway represents a promising approach; however, recruitment of potential candidate has been regarded as critical. Here, we identified a glycerol-3-phosphate acyltransferase 2 (GPAT2) isoform and overexpressed in <i>Phaeodactylum tricornutum</i>.<h4>Results</h4>GPAT2 overexpression did not impair growth a  ...[more]

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