Thraustochytrids as production organisms for docosahexaenoic acid (DHA), squalene, and carotenoids

被引:149
作者
Aasen, Inga Marie [1 ]
Ertesvag, Helga [2 ]
Heggeset, Tonje Marita Bjerkan [1 ]
Liu, Bin [2 ]
Brautaset, Trygve [1 ,2 ]
Vadstein, Olav [2 ]
Ellingsen, Trond E. [1 ]
机构
[1] SINTEF Mat & Chem, Dept Biotechnol & Nanomed, Trondheim, Norway
[2] Norwegian Univ Sci & Technol, Dept Biotechnol, N-7034 Trondheim, Norway
关键词
DHA; Squalene; Astaxanthin; Biosynthesis; Process development; Genetic tools; GENE PHYLOGENY THRAUSTOCHYTRIACEAE; AURANTIOCHYTRIUM-LIMACINUM SR21; TRANSGENE EXPRESSION SYSTEM; POLYUNSATURATED FATTY-ACIDS; SCHIZOCHYTRIUM SP S31; LIPID-ACCUMULATION; FED-BATCH; TAXONOMIC REARRANGEMENT; ENHANCED PRODUCTION; CULTURE-CONDITIONS;
D O I
10.1007/s00253-016-7498-4
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Thraustochytrids have been applied for industrial production of the omega-3 fatty acid docosahexaenoic (DHA) since the 1990s. During more than 20 years of research on this group of marine, heterotrophic microorganisms, considerable increases in DHA productivities have been obtained by process and medium optimization. Strains of thraustochytrids also produce high levels of squalene and carotenoids, two other commercially interesting compounds with a rapidly growing market potential, but where yet few studies on process optimization have been reported. Thraustochytrids use two pathways for fatty acid synthesis. The saturated fatty acids are produced by the standard fatty acid synthesis, while DHA is synthesized by a polyketide synthase. However, fundamental knowledge about the relationship between the two pathways is still lacking. In the present review, we extract main findings from the high number of reports on process optimization for DHA production and interpret these in the light of the current knowledge of DHA synthesis in thraustochytrids and lipid accumulation in oleaginous microorganisms in general. We also summarize published reports on squalene and carotenoid production and review the current status on strain improvement, which has been hampered by the yet very few published genome sequences and the lack of tools for gene transfer to the organisms. As more sequences now are becoming available, targets for strain improvement can be identified and open for a system-level metabolic engineering for improved productivities.
引用
收藏
页码:4309 / 4321
页数:13
相关论文
共 91 条
[31]   Omega-3 biotechnology: Thraustochytrids as a novel source of omega-3 oils [J].
Gupta, Adarsha ;
Barrow, Colin J. ;
Puri, Munish .
BIOTECHNOLOGY ADVANCES, 2012, 30 (06) :1733-1745
[32]   Fatty acid production in Schizochytrium sp.:: Involvement of a polyunsaturated fatty acid synthase and a type I fatty acid synthase [J].
Hauvermale, A. ;
Kuner, J. ;
Rosenzweig, B. ;
Guerra, D. ;
Diltz, S. ;
Metz, J. G. .
LIPIDS, 2006, 41 (08) :739-747
[33]   Molecular phylogeny of labyrinthulids and thraustochytrids based on the sequencing of 18S ribosomal RNA gene [J].
Honda, D ;
Yokochi, T ;
Nakahara, T ;
Raghukumar, S ;
Nakagiri, A ;
Schaumann, K ;
Higashihara, T .
JOURNAL OF EUKARYOTIC MICROBIOLOGY, 1999, 46 (06) :637-647
[34]   A transgene expression system for the marine microalgae Aurantiochytrium sp KRS101 using a mutant allele of the gene encoding ribosomal protein L44 as a selectable transformation marker for cycloheximide resistance [J].
Hong, Won-Kyung ;
Heo, Sun-Yeon ;
Oh, Baek-Rock ;
Kim, Chul Ho ;
Sohn, Jung-Hoon ;
Yang, Ji-Won ;
Kondo, Akihiko ;
Seo, Jeong-Woo .
BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2013, 36 (09) :1191-1197
[35]   Characterization of a Squalene Synthase from the Thraustochytrid Microalga Aurantiochytrium sp KRS101 [J].
Hong, Won-Kyung ;
Heo, Sun-Yeon ;
Park, Hye-Mi ;
Kim, Chul Ho ;
Sohn, Jung-Hoon ;
Kondo, Akihiko ;
Seo, Jeong-Woo .
JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2013, 23 (06) :759-765
[36]   A fermentation strategy for producing docosahexaenoic acid in Aurantiochytrium limacinum SR21 and increasing C22:6 proportions in total fatty acid [J].
Huang, Ting Yen ;
Lu, Wen Chang ;
Chu, I. Ming .
BIORESOURCE TECHNOLOGY, 2012, 123 :8-14
[37]   Biological and Pharmacological Activities of Squalene and Related Compounds: Potential Uses in Cosmetic Dermatology [J].
Huang, Zih-Rou ;
Lin, Yin-Ku ;
Fang, Jia-You .
MOLECULES, 2009, 14 (01) :540-554
[38]   Accumulation of docosahexaenoic acid-rich lipid in thraustochytrid Aurantiochytrium sp strain T66:: effects of N and P starvation and O2 limitation [J].
Jakobsen, Anita N. ;
Aasen, Inga M. ;
Josefsen, Kjell D. ;
Strom, Arne R. .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2008, 80 (02) :297-306
[39]   Improved docosahexaenoic acid production in Aurantiochytrium by glucose limited pH-auxostat fed-batch cultivation [J].
Janthanomsuk, Panyawut ;
Verduyn, Cornelis ;
Chauvatcharin, Somchai .
BIORESOURCE TECHNOLOGY, 2015, 196 :592-599
[40]  
Ji XJ, 2015, GENOME ANNOUNC, V3