AI Article Synopsis

  • - The study focuses on the selective breeding of European sea bass, emphasizing the need to understand genetic traits like growth and disease resistance for aquaculture enhancement.
  • - A radiation hybrid panel was created, resulting in a comprehensive genetic map with 1581 markers that links sea bass genetics to other fish models, helping researchers identify gene locations more easily.
  • - This detailed gene map will aid in discovering important candidate genes and traits for improving breeding practices in aquaculture, positioning sea bass as a key model for further genetic and evolutionary studies.

Article Abstract

The selective breeding of fish for aquaculture purposes requires the understanding of the genetic basis of traits such as growth, behaviour, resistance to pathogens and sex determinism. Access to well-developed genomic resources is a prerequisite to improve the knowledge of these traits. Having this aim in mind, a radiation hybrid (RH) panel of European sea bass (Dicentrarchus labrax) was constructed from splenocytes irradiated at 3000 rad, allowing the construction of a 1581 marker RH map. A total of 1440 gene markers providing ~4400 anchors with the genomes of three-spined stickleback, medaka, pufferfish and zebrafish, helped establish synteny relationships with these model species. The identification of Conserved Segments Ordered (CSO) between sea bass and model species allows the anticipation of the position of any sea bass gene from its location in model genomes. Synteny relationships between sea bass and gilthead seabream were addressed by mapping 37 orthologous markers. The sea bass genetic linkage map was integrated in the RH map through the mapping of 141 microsatellites. We are thus able to present the first complete gene map of sea bass. It will facilitate linkage studies and the identification of candidate genes and Quantitative Trait Loci (QTL). The RH map further positions sea bass as a genetic and evolutionary model of Perciformes and supports their ongoing aquaculture expansion.

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Source
http://dx.doi.org/10.1016/j.ygeno.2010.07.007DOI Listing

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