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Determination of dietary essential fatty acids in a deep-sea fish, the splendid alfonsino Beryx splendens: functional characterization of enzymes involved in long-chain polyunsaturated fatty acid biosynthesis.

Authors :
Kabeya N
Kimura K
Matsushita Y
Suzuki S
Nagakura Y
Kinami R
Noda H
Takagi K
Okamoto K
Miwa M
Haga Y
Satoh S
Yoshizaki G
Source :
Fish physiology and biochemistry [Fish Physiol Biochem] 2023 Jun; Vol. 49 (3), pp. 425-439. Date of Electronic Publication: 2023 Apr 19.
Publication Year :
2023

Abstract

The splendid alfonsino Beryx splendens is a commercially important deep-sea fish in East Asian countries. Because the wild stock of this species has been declining, there is an urgent need to develop aquaculture systems. In the present study, we investigated the long-chain polyunsaturated fatty acid (LC-PUFA) requirements of B. splendens, which are known as essential dietary components in many carnivorous marine fish species. The fatty acid profiles of the muscles, liver, and stomach contents of B. splendens suggested that it acquires substantial levels of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) from its natural diet. The functional characterization of a fatty acid desaturase (Fads2) and three elongases (Elovl5, Elovl4a, and Elovl4b) from B. splendens confirmed their enzymatic capabilities in LC-PUFA biosynthesis. Fads2 showed Δ6 and Δ8 bifunctional desaturase activities. Elovl5 showed preferential elongase activities toward C <subscript>18</subscript> and C <subscript>20</subscript> PUFA substrates, whereas Elovl4a and Elovl4b showed activities toward various C <subscript>18-22</subscript> substrates. Given that Fads2 showed no Δ5 desaturase activity and no other fads-like sequence was found in the B. splendens genome, EPA and arachidonic acid cannot be synthesized from C <subscript>18</subscript> precursors; hence, they can be categorized as dietary essential fatty acids in B. splendens. EPA can be converted into DHA in B. splendens via the so-called Sprecher pathway. However, given that fads2 is only expressed in the brain, it is unlikely that the capacity of B. splendens to biosynthesize DHA from EPA can fulfill its physiological requirements. These results will be useful to researchers developing B. splendens aquaculture methods.<br /> (© 2023. The Author(s), under exclusive licence to Springer Nature B.V.)

Details

Language :
English
ISSN :
1573-5168
Volume :
49
Issue :
3
Database :
MEDLINE
Journal :
Fish physiology and biochemistry
Publication Type :
Academic Journal
Accession number :
37074473
Full Text :
https://doi.org/10.1007/s10695-023-01192-7