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Accès ouvert déclaré 2008 article

The genome of the model beetle and pest Tribolium castaneum

1437Citations signalées, ce qui n’est pas une note de qualité
76Institutions déclarées
14Pays d’affiliation déclarés

Rattachement africain : us, de, dk, cn, jp, gb, ch, cz, it, fr, au, ru, se, be. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Tribolium castaneum is a member of the most species-rich eukaryotic order, a powerful model organism for the study of generalized insect development, and an important pest of stored agricultural products. We describe its genome sequence here. This omnivorous beetle has evolved the ability to interact with a diverse chemical environment, as shown by large expansions in odorant and gustatory receptors, as well as P450 and other detoxification enzymes. Development in Tribolium is more representative of other insects than is Drosophila, a fact reflected in gene content and function. For example, Tribolium has retained more ancestral genes involved in cell–cell communication than Drosophila, some being expressed in the growth zone crucial for axial elongation in short-germ development. Systemic RNA interference in T. castaneum functions differently from that in Caenorhabditis elegans, but nevertheless offers similar power for the elucidation of gene function and identification of targets for selective insect control. The red flour beetle Tribolium castaneum is a common pest: a type of 'bran bug', it targets cereal products, including grain, flour and rice bran. It is also a commonly used laboratory model, combining the ease of systematic RNA interference experiments such as those used with the nematode worm C. elegans with a biology that is more representative of most insects than even Drosophila. This weeks sees the publication by the Tribolium Genome Sequencing Consortium of the genomic sequence of T. castaneum. This is the first beetle genome to be published, and it will be a valuable resource for insect development studies and pest biology. The beetle Tribolium castaneum is a commonly used laboratory model, combining the ease of systematic RNAi experiments like those in Caenorhabditis elegans, with biology that is more representative of most insects than Drosophila melanogaster. A large consortium has sequenced and analysed the genome of the red flour beetle, creating a resource for biologists everywhere.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
The genome of the model beetle and pest Tribolium castaneum
Date Crossref
23/03/2008
Éditeur
Springer Science and Business Media LLC
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

Human Genome Sciences (United States)Baylor College of MedicineKansas State UniversityUnited States Department of AgricultureUniversity of GöttingenUniversity of CopenhagenFriedrich-Alexander-Universität Erlangen-NürnbergUniversity of CologneUniversity of RostockBroad InstituteAgricultural Marketing ServiceCenter for Grain and Animal Health ResearchTexas A&M UniversityUniversity of HoustonUniversity of California, RiversideVirginia TechWayne State UniversityThe University of Texas at ArlingtonIndiana University BloomingtonYangzhou UniversityThe University of TokyoUniversity of Illinois Urbana-ChampaignUniversity of TübingenRoyal Holloway University of LondonNational Institutes of HealthTH Köln - University of Applied SciencesUniversity of GenevaSIB Swiss Institute of BioinformaticsImperial College LondonGlaxoSmithKline (United Kingdom)University of California, DavisNagoya UniversityMax Delbrück CenterTexas CollegeUniversity of ZurichUniversity of OxfordCzech Academy of SciencesUniversity of Wisconsin–MadisonMartin Luther University Halle-WittenbergTelethon Institute Of Genetics And MedicineWashington University in St. LouisNorthern Westchester HospitalNational Center for Biotechnology InformationUniversité Paris CitéGlaxoSmithKline (United States)European Molecular Biology LaboratoryLyon 1 UniversitéCentre National de la Recherche ScientifiqueThe University of QueenslandInstitut National de Recherche pour l'Agriculture, l'Alimentation et l'EnvironnementInstitut de Génomique Fonctionnelle de LyonUniversity of Tennessee Health Science CenterCornell UniversityZürich Zoological GardenOxford Research GroupInstitute of EntomologyCzech Academy of Sciences, Biology CentreUniversity of Wisconsin SystemOklahoma State UniversityCentre de Génétique MoléculaireLomonosov Moscow State UniversityJustus-Liebig-Universität GießenGiessen School of TheologyUmeå UniversityAgricultural Research ServiceBeltsville Human Nutrition Research CenterBeltsville Agricultural Research CenterUniversity of TsukubaFriedrich Schiller University JenaPhilipps University of MarburgInstitut de Biologie Moléculaire et CellulaireKU LeuvenInstitute of Agrobiological SciencesErnst Abbe University of Applied Sciences JenaAustralian National UniversityNordwestdeutsche Forstliche Versuchsanstalt

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Insect Resistance and GeneticsForest Insect Ecology and ManagementInsect-Plant Interactions and Control

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