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Genome-wide characterization and expression of the elongation of very long chain fatty acid (Elovl) genes and fatty acid profiles in the alga (Tetraselmis suecica) fed marine rotifer Brachionus koreanus

Authors
Lee, Min-ChulPark, Jun ChulYoon, Deok-SeoChoi, HyuntaeKim, Hee-JinShin, Kyung-HoonHagiwara, AtsushiHan, JeonghoonPark, Heum GiLee, Jae-Seong
Issue Date
Jun-2019
Publisher
Elsevier BV
Keywords
Rotifer; Elongase; Fatty acid profile; Tandem duplication; Tetraslemis suecica
Citation
Comparative Biochemistry and Physiology - Part D: Genomics and Proteomics, v.30, pp 179 - 185
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
Comparative Biochemistry and Physiology - Part D: Genomics and Proteomics
Volume
30
Start Page
179
End Page
185
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/2885
DOI
10.1016/j.cbd.2019.03.001
ISSN
1744-117X
1878-0407
Abstract
To understand the lipid metabolism in invertebrate species, identification of the fatty acid (FA) synthesis gene families in invertebrate species is important, since some FA are unable to be synthesized in the organisms by themselves. In the study, to identify the elongation of very long chain fatty acid (Elovl) genes in the marine rotifer Brachionus koreanus, the genome-wide identification and phylogenetic analysis of Elovl genes have been conducted with the expression profile of Elovl genes on the alga Tetraslemis suecica-fed B. koreanus. A total 10 Elovl genes have been identified from the genome of B. koreanus, with conserved HXXHH motif. Synteny analysis showed that tandem duplication event has occurred (Elovl3/6a and b, Elovl9a and b, and Elovl9c and d) in the ancestor. Phylogenetic analysis have clearly revealed that Brachionus spp. has only 2/5 and 3/6 subfamilies, and two novel Elovl classes have been revealed, namely Elovl9 and 10. Transcriptional data showed that the 10 Elovl genes were differently expressed and their expression could be regulated by feeding the alga T. suecica. From fatty acid (FA) profile data of the alga Tetraslemis suecica-fed B. koreanus, we revealed that the marine rotifer B. koreanus may synthesize very long chain fatty acid (VLCFA; > 22 carbons) by themselves, as VLCFA was hardly detected in the alga T. suecica. The study provides a better understanding of FA metabolism of the marine rotifer B. koreanus after feeding the T. suecica.
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Shin, Kyung Hoon
ERICA 공학대학 (ERICA 해양융합공학과)
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