Literature DB >> 30136198

Functions of PKS Genes in Lipid Synthesis of Schizochytrium sp. by Gene Disruption and Metabolomics Analysis.

Zhipeng Li1,2, Xi Chen1,2, Jun Li1,2, Tong Meng1,2, Lingwei Wang1,2, Zhen Chen1,2, Yanyan Shi1,2, Xueping Ling3,4, Weiang Luo5, Dafeng Liang6,7, Yinghua Lu1,2, Qingbiao Li1,2, Ning He8,9.   

Abstract

Schizochytrium sp. is a kind of marine microalgae with great potential as promising sustainable source of polyunsaturated fatty acids (PUFAs). Polyketide synthase-like (PKS synthase) is supposed to be one of the main ways to synthesize PUFAs in Schizochytrium sp. In order to study the exact relationship between PKS and PUFA biosynthesis, chain length factor (CLF) and dehydrogenase (DH) were cloned from the PKS gene cluster in Schizochytrium sp., then disrupted by homologous recombination. The results showed that DH- and CLF-disrupted strains had significant decreases (65.85 and 84.24%) in PUFA yield, while the saturated fatty acid (SFA) proportion in lipids was slightly increased. Meanwhile, the disruption of CLF decreased the C-22 PUFA proportion by 57.51% without effect on C-20 PUFA accumulation while DH-disrupted mutant decreased the production of each PUFA. Combined with analysis of protein prediction, it indicated that CLF gene exerted an enormous function on the carbon chain elongation in PUFA synthesis, especially for the final elongation from C-20 to C-22 PUFAs. Metabolomics analysis also suggested that the disruption of both genes resulted in the decrease of PUFAs but increase of SFAs, thus weakening glycolysis and tricarboxylic acid (TCA) cycle pathways. This study offers a broad new vision to research the mechanism of PUFA synthesis in Schizochytrium sp.

Entities:  

Keywords:  Gene disruption; Homologous recombination; Marine microalgae; Metabolomics; Polyketide synthase-like (PKS synthase); Polyunsaturated fatty acid

Mesh:

Substances:

Year:  2018        PMID: 30136198     DOI: 10.1007/s10126-018-9849-x

Source DB:  PubMed          Journal:  Mar Biotechnol (NY)        ISSN: 1436-2228            Impact factor:   3.619


  33 in total

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Authors:  Hidetoshi Okuyama; Yoshitake Orikasa; Takanori Nishida; Kazuo Watanabe; Naoki Morita
Journal:  Appl Environ Microbiol       Date:  2006-11-22       Impact factor: 4.792

2.  Versatile transformation system that is applicable to both multiple transgene expression and gene targeting for Thraustochytrids.

Authors:  Keishi Sakaguchi; Takanori Matsuda; Takumi Kobayashi; Jun-Ichiro Ohara; Rie Hamaguchi; Eriko Abe; Naoki Nagano; Masahiro Hayashi; Mayumi Ueda; Daiske Honda; Yuji Okita; Yousuke Taoka; Shinichi Sugimoto; Nozomu Okino; Makoto Ito
Journal:  Appl Environ Microbiol       Date:  2012-02-17       Impact factor: 4.792

3.  Different impacts of short-chain fatty acids on saturated and polyunsaturated fatty acid biosynthesis in Aurantiochytrium sp. SD116.

Authors:  Xiaojin Song; Yanzhen Tan; Yajun Liu; Jingtao Zhang; Guanglei Liu; Yingang Feng; Qiu Cui
Journal:  J Agric Food Chem       Date:  2013-10-07       Impact factor: 5.279

Review 4.  Fatty acid biosynthesis in microorganisms being used for Single Cell Oil production.

Authors:  Colin Ratledge
Journal:  Biochimie       Date:  2004-11       Impact factor: 4.079

5.  Polyketide chain length control by chain length factor.

Authors:  Yi Tang; Shiou-Chuan Tsai; Chaitan Khosla
Journal:  J Am Chem Soc       Date:  2003-10-22       Impact factor: 15.419

6.  Comparison of Thraustochytrids Aurantiochytrium sp., Schizochytrium sp., Thraustochytrium sp., and Ulkenia sp. for production of biodiesel, long-chain omega-3 oils, and exopolysaccharide.

Authors:  Kim Jye Lee Chang; Carol Mancuso Nichols; Susan I Blackburn; Graeme A Dunstan; Anthony Koutoulis; Peter D Nichols
Journal:  Mar Biotechnol (NY)       Date:  2014-01-25       Impact factor: 3.619

7.  Enhanced docosahexaenoic acid production by reinforcing acetyl-CoA and NADPH supply in Schizochytrium sp. HX-308.

Authors:  Lu-Jing Ren; He Huang; Ai-Hua Xiao; Min Lian; Li-Jing Jin; Xiao-Jun Ji
Journal:  Bioprocess Biosyst Eng       Date:  2009-03-12       Impact factor: 3.210

Review 8.  Thraustochytrid Marine Protists: production of PUFAs and Other Emerging Technologies.

Authors:  Seshagiri Raghukumar
Journal:  Mar Biotechnol (NY)       Date:  2008-08-20       Impact factor: 3.619

Review 9.  Polyunsaturated fatty acid synthesis: what will they think of next?

Authors:  James G Wallis; Jennifer L Watts; John Browse
Journal:  Trends Biochem Sci       Date:  2002-09       Impact factor: 13.807

10.  Expressed sequence tag analysis of marine fungus Schizochytrium producing docosahexaenoic acid.

Authors:  Jianzhong Huang; Xianzhang Jiang; Xiaowei Zhang; Weihua Chen; Baoyu Tian; Zhengyu Shu; Songnian Hu
Journal:  J Biotechnol       Date:  2008-08-05       Impact factor: 3.307

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  4 in total

1.  An Oil Hyper-Accumulator Mutant Highlights Peroxisomal ATP Import as a Regulatory Step for Fatty Acid Metabolism in Aurantiochytrium limacinum.

Authors:  Etienne Deragon; Martin Schuler; Riccardo Aiese Cigliano; Younès Dellero; Gregory Si Larbi; Denis Falconet; Juliette Jouhet; Eric Maréchal; Morgane Michaud; Alberto Amato; Fabrice Rébeillé
Journal:  Cells       Date:  2021-10-06       Impact factor: 6.600

2.  Screening chemical modulators of benzoic acid derivatives to improve lipid accumulation in Schizochytrium limacinum SR21 with metabolomics analysis.

Authors:  Zhipeng Li; Xueping Ling; Hao Zhou; Tong Meng; Jinjin Zeng; Wei Hang; Yanyan Shi; Ning He
Journal:  Biotechnol Biofuels       Date:  2019-09-04       Impact factor: 6.040

Review 3.  Method Development Progress in Genetic Engineering of Thraustochytrids.

Authors:  E-Ming Rau; Helga Ertesvåg
Journal:  Mar Drugs       Date:  2021-09-11       Impact factor: 5.118

4.  Effectively Improve the Astaxanthin Production by Combined Additives Regulating Different Metabolic Nodes in Phaffia rhodozyma.

Authors:  Zhipeng Li; Haoyi Yang; Chenhua Zheng; Xiping Du; Hui Ni; Ning He; Liang Yang; Li You; Yanbing Zhu; Lijun Li
Journal:  Front Bioeng Biotechnol       Date:  2022-01-17
  4 in total

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