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De novo transcriptome based on next-generation sequencing reveals candidate genes with sex-specific expression in Arapaima gigas (Schinz, 1822), an ancient Amazonian freshwater fish

Authors :
Clayton Pereira Silva de Lima
Fátima Gomes
Iracilda Sampaio
Jedson Ferreira Cardoso
Luciana Watanabe
João L.S.G. Vianez
Márcio Roberto Teixeira Nunes
Horacio Schneider
Source :
PLoS ONE, Repositório Digital do Instituto Evandro Chagas (Patuá), Instituto Evandro Chagas (IEC), instacron:IEC, PLoS ONE, Vol 13, Iss 10, p e0206379 (2018)
Publication Year :
2018

Abstract

The study was funded by the Center of Technological Innovation (CIT), Evandro Chagas Institute (IEC) and National Council of Scientific and Technological Development (CNPq) (Bionorte Project: 550939/2010-5) Universidade Federal do Par? - Campus de Bragan?a. Instituto de Estudos Costeiros. Laborat?rio de Gen?tica e Biologia Molecular. Bragan?a, PA, Brazil. Universidade Federal do Par? - Campus de Bragan?a. Instituto de Estudos Costeiros. Laborat?rio de Gen?tica e Biologia Molecular. Bragan?a, PA, Brazil. Minist?rio da Sa?de. Secretaria de Vigil?ncia em Sa?de. Instituto Evandro Chagas. Ananindeua, PA, Brasil. Minist?rio da Sa?de. Secretaria de Vigil?ncia em Sa?de. Instituto Evandro Chagas. Ananindeua, PA, Brasil. Minist?rio da Sa?de. Secretaria de Vigil?ncia em Sa?de. Instituto Evandro Chagas. Ananindeua, PA, Brasil. Minist?rio da Sa?de. Secretaria de Vigil?ncia em Sa?de. Instituto Evandro Chagas. Ananindeua, PA, Brasil. Universidade Federal do Par? - Campus de Bragan?a. Instituto de Estudos Costeiros. Laborat?rio de Gen?tica e Biologia Molecular. Bragan?a, PA, Brazil. Universidade Federal do Par? - Campus de Bragan?a. Instituto de Estudos Costeiros. Laborat?rio de Gen?tica e Biologia Molecular. Bragan?a, PA, Brazil. BACKGROUND: The Arapaima (Arapaima gigas) is one of the world's largest freshwater bony fish, and is found in the rivers of the Amazon basin. This species is a potential aquaculture resource, although reproductive management in captivity is limited in particular due to the lack of external sexual dimorphism. In this study, using the 454 Roche platform (pyrosequencing) techniques, we evaluated a major portion of the transcriptome of this important Amazonian species. RESULTS: Four libraries obtained from the liver and skin tissue of juvenile specimens (representing males and females separately) were sequenced, yielding 5,453,919 high-quality reads. The de novo transcriptome assembly resulted in 175,792 contigs, with 51,057 significant blast hits. A total of 38,586 transcripts were mapped by Gene Ontology using Blast2GO. We identified 20,219 genes in the total transcriptome (9,551 in the liver and 16,818 in the skin). The gene expression analyses indicated 105 genes in the liver and 204 in the skin with differentiated expression profiles, with 95 being over-expressed in the females and 214 in the males. The log2 Fold Change and heatmap based on Reads Per Kilobase per Million mapped reads (RPKM) revealed that the gene expression in the skin is highly differentiated between male and female arapaima, while the levels of expression in the liver are similar between the sexes. CONCLUSION: Transcriptome analysis based on pyrosequencing proved to be a reliable tool for the identification of genes with differentiated expression profiles between male and female arapaima. These results provide useful insights into the molecular pathways of sexual dimorphism in this important Amazonian species, and for comparative analyses with other teleosts

Details

ISSN :
19326203
Volume :
13
Issue :
10
Database :
OpenAIRE
Journal :
PloS one
Accession number :
edsair.doi.dedup.....3cdbcc2ef82d77bdefba5968f714a30c