Genome‐wide comparative identification and analysis of membrane‐FADS‐like superfamily genes in freshwater economic fishes

Author:

Zhang Yuru12ORCID,Zhang Junmei12,Gao Kedi12,Lu Ronghua12,Cao Xianglin12,Yang Liping12,Nie Guoxing12

Affiliation:

1. College of Fisheries Henan Normal University Xinxiang China

2. College of Fisheries, Engineering Technology Research Centre of Henan Province for Aquatic Animal Cultivation Henan Normal University Xinxiang China

Abstract

Membrane fatty acid desaturase (FADS)‐like superfamily proteins (FADSs) are essential for the synthesis of unsaturated fatty acids (UFAs). Recently, studies on FADS in fishes have mostly focused on marine species, and a comprehensive analysis of the FADS superfamily, including the FADS, stearoyl‐CoA desaturase (SCD), and sphingolipid delta 4‐desaturase (DEGS) families, in freshwater economic fishes is urgently required. To this end, we conducted a thorough analysis of the number, gene/protein structure, chromosomal location, gene linkage map, phylogeny, and expression of the FADS superfamily. We identified 156 FADSs genes in the genome of 27 representative species. Notably, FADS1 and SCD5 were lost in most freshwater fish and other teleosts. All FADSs proteins contain 4 transmembrane helices and 2–3 amphipathic α‐helices. FADSs in the same family are often linked on the same chromosome; moreover, FADS and SCD or DEGS are frequently collocated on the same chromosome. In addition, FADS, SCD, and DEGS family proteins share similar evolutionary patterns. Interestingly, FADS6, as a member of the FADS family, exhibits a similar gene structure and chromosome location to that of SCD family members, which may be the transitional form of FADS and SCD. This study shed light on the type, structure, and phylogenetic relationship of FADSs in freshwater fishes, offering a new perspective into the functional mechanism analysis of FADSs.

Funder

Natural Science Foundation of Henan Province

Special Fund for Henan Agriculture Research System

Publisher

Wiley

Subject

General Biochemistry, Genetics and Molecular Biology

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