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Genome-wide identification, phylogeny, and expression of fibroblast growth genes in common carp. | LitMetric

Genome-wide identification, phylogeny, and expression of fibroblast growth genes in common carp.

Gene

CAFS Key Laboratory of Aquatic Genomics, Centre for Applied Aquatic Genomics, Chinese Academy of Fishery Sciences, Beijing 100141, China; Beijing Key Laboratory of Fishery Biotechnology, Centre for Applied Aquatic Genomics, Chinese Academy of Fishery Sciences, Beijing 100141, China. Electronic address:

Published: March 2016

AI Article Synopsis

  • Fibroblast growth factors (FGFs) are a diverse group of proteins crucial for development and are conserved across vertebrates, including humans and fish.
  • In a study of the common carp genome, 35 FGFs were identified, with phylogenetic analysis showing significant conservation along with some gene duplications and losses.
  • The research also revealed that most FGFs are expressed in various tissues, highlighting their importance in carp biology, and provides a valuable genomic resource for future studies on FGFs in fish.

Article Abstract

Fibroblast growth factors (FGFs) are a large family of polypeptide growth factors, which are found in organisms ranging from nematodes to humans. In vertebrates, a number of FGFs have been shown to play important roles in developing embryos and adult organisms. Among the vertebrate species, FGFs are highly conserved in both gene structure and amino-acid sequence. However, studies on teleost FGFs are mainly limited to model species, hence we investigated FGFs in the common carp genome. We identified 35 FGFs in the common carp genome. Phylogenetic analysis revealed that most of the FGFs are highly conserved, though recent gene duplication and gene losses do exist. By examining the copy number of FGFs in several vertebrate genomes, we found that eight FGFs in common carp have undergone gene duplications, including FGF6a, FGF6b, FGF7, FGF8b, FGF10a, FGF11b, FGF13a, and FGF18b. The expression patterns of all FGFs were examined in various tissues, including the blood, brain, gill, heart, intestine, muscle, skin, spleen and kidney, showing that most of the FGFs were ubiquitously expressed, indicating their critical role in common carp. To some extent, examination of gene families with detailed phylogenetic or orthology analysis verified the authenticity and accuracy of assembly and annotation of the recently published common carp whole genome sequences. Gene families are also considered as a unique source for evolutionary studies. Moreover, the whole set of common carp FGF gene family provides an important genomic resource for future biochemical, physiological, and phylogenetic studies on FGFs in teleosts.

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Source
http://dx.doi.org/10.1016/j.gene.2015.12.027DOI Listing

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