Genomic resources for a commercial flatfish, the Senegalese sole (Solea senegalensis): EST sequencing, oligo microarray design, and development of the Soleamold bioinformatic platform

Background: The Senegalese sole, Solea senegalensis, is a highly prized flatfish of growing commercial interest for aquaculture in Southern Europe. However, despite the industrial production of Senegalese sole being hampered primarily by lack of information on the physiological mechanisms involved i...

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Detalhes bibliográficos
Autores: Cerdà Luque, Joan, Mercadé, Jaume, Lozano, Juan José, Manchado, Manuel, Sequeira, Angela, Astola, Antonio, Infante, Carlos, Halm, Silke, Viñas, Jordi, Castellana, Barbara, Asensio, Esther, Cañavate, Pedro, Martínez-Rodríguez, Gonzalo, Piferrer, Francesc, Planas, Josep V, Prat, Francesc, Yúfera, Manuel, Durany, Olga, Subirada, Francesc, Rosell, Elisabet, Maes, Tamara
Tipo de documento: artigo
Data de publicação:2008
País:España
Recursos:Institut de Recerca i Tecnologia Agroalimentàries (IRTA)
Repositório:IRTA Pubpro. Open Digital Archive
OAI Identifier:oai:repositori.irta.cat:20.500.12327/3653
Acesso em linha:http://hdl.handle.net/20.500.12327/3653
https://doi.org/10.1186/1471-2164-9-508
Access Level:Acceso aberto
Palavra-chave:575
637
Descrição
Resumo:Background: The Senegalese sole, Solea senegalensis, is a highly prized flatfish of growing commercial interest for aquaculture in Southern Europe. However, despite the industrial production of Senegalese sole being hampered primarily by lack of information on the physiological mechanisms involved in reproduction, growth and immunity, very limited genomic information is available on this species. Results: Sequencing of a S. senegalensis multi-tissue normalized cDNA library, from adult tissues (brain, stomach, intestine, liver, ovary, and testis), larval stages (pre-metamorphosis, metamorphosis), juvenile stages (post-metamorphosis, abnormal fish), and undifferentiated gonads, generated 10,185 expressed sequence tags (ESTs). Clones were sequenced from the 3'-end to identify isoform specific sequences. Assembly of the entire EST collection into contigs gave 5,208 unique sequences of which 1,769 (34%) had matches in GenBank, thus showing a low level of redundancy. The sequence of the 5,208 unigenes was used to design and validate an oligonucleotide microarray representing 5,087 unique Senegalese sole transcripts. Finally, a novel interactive bioinformatic platform, Soleamold, was developed for the Senegalese sole EST collection as well as microarray and ISH data. Conclusion: New genomic resources have been developed for S. senegalensis, an economically important fish in aquaculture, which include a collection of expressed genes, an oligonucleotide microarray, and a publicly available bioinformatic platform that can be used to study gene expression in this species. These resources will help elucidate transcriptional regulation in wild and captive Senegalese sole for optimization of its production under intensive culture conditions.