Document généré le 15/03/2026 depuis l'adresse: https://www.documentation.eauetbiodiversite.fr/fr/notice/use-of-emerging-genomic-and-proteomic-technologies-in-fish-physiology
Titre alternatif
Producteur
Contributeur(s)
Éditeur(s)
EDP Sciences
Identifiant documentaire
10-dkey/10.1016/S0990-7440(02)01172-5
Identifiant OAI
oai:edpsciences.org:dkey/10.1016/S0990-7440(02)01172-5
Auteur(s):
John Parrington,Kevin Coward
Mots clés
Genomic
Proteomic
Fish
Teleost
Physiology
Date de publication
15/06/2002
Date de création
Date de modification
Date d'acceptation du document
Date de dépôt légal
Langue
en
Thème
Type de ressource
Source
https://doi.org/10.1016/S0990-7440(02)01172-5
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Commune
Description
The sequencing of the human genome represented a watershed in the biological sciences. Post-genomic biology will be marked not only by vastly greater knowledge about the human genome and those of other species but will see an increasing application of novel and highly sophisticated technologies. Genomic strategies, together with those that look at the proteome of cells and tissues, are likely to revolutionize scientific research over the coming years. The ease with which novel and homologous genes can be isolated using the new databases and technologies, and the ability to study the expression of thousands of genes simultaneously at a global cellular level will be the major factors in this revolution. Genomic information is already being used to further our understanding of physiology and gene evolution in fish. Furthermore, the highly compact pufferfish (Takifugu rubripes) genome is being used extensively as a model to interpret those of tetrapods. Currently, studies of the fish genome are limited to gene evolution and to a much lesser extent, environmental toxicology. However, as interpretation of fish genomes gathers pace, we are likely to see the increasing involvement of other key areas such as reproduction, growth, pathology of disease, and flesh development/quality. Here, we present some of the advanced genomic technologies currently available and discuss how these might influence our knowledge of fish biology.
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