International Zebrafish Mutagenic Protein Trap
国际斑马鱼诱变蛋白陷阱
基本信息
- 批准号:9096308
- 负责人:
- 金额:$ 4.86万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2011
- 资助国家:美国
- 起止时间:2011-08-01 至 2017-04-30
- 项目状态:已结题
- 来源:
- 关键词:AllelesAnimal ModelArchivesAreaBehaviorBehavioralBehavioral GeneticsBiochemical PathwayBiologicalBiological ModelsBiological ProcessBiologyCannabinoidsCatalogingCatalogsChromosome MappingClinicCollectionCommunitiesComplexComputer SimulationCore FacilityCryopreservationDataDatabasesDevelopmentDiseaseEquipment and supply inventoriesEvolutionFishesGene Expression ProfileGenesGenomeGenomic approachGenomicsHealthHomologous GeneHumanInternationalLaboratoriesMicrotusModelingMolecularMusMutagensMutationNematodaNeural CrestNicotineNuclearOpioidOrganOrganismOrganogenesisPathway interactionsPatternProcessProteinsProteomeResearchResearch PersonnelResolutionResourcesRoleShippingShipsSignal PathwayStem cellsSystemTechniquesTimeTissuesVascular Endothelial Growth FactorsVertebrate BiologyVertebratesZebrafishZebrafish Proteinsaddictionbaseflygenetic linkage analysisgenome databasehuman diseasein vivoinsightloss of functionmutantnext generation sequencingrecombinaseresponsesperm celltoolvertebrate genomezebrafish genome
项目摘要
DESCRIPTION (provided by applicant): The zebrafish (Danio rerio) is the preeminent non-mammalian vertebrate system for the study of core vertebrate biology and behavior and for the modeling of human disease. Collections of molecularly characterized mutant lines have been powerful enabling tools for the nematode, fly and mouse fields. Genomic approaches have robustly characterized the nuclear genome and transcriptome. However, the genomic assessment of the full complexity of the proteome in a dynamic context and in vivo is still largely
unknown. The zebrafish offers the first comprehensive analysis of the proteome using as template an entire vertebrate genome. We show that mutagenic protein trap gene-breaking transposons (GBTs) are effective and revertible loss- of-function tools for exploring traditional areas such as the biology of development (including organogenesis) but also open up new options including the genetics of behavior such as the biology of the nicotine response. A panel of Cre recombinase regulatable mutant zebrafish alleles offers the opportunity to explore critical questions in vertebrate biology at the tissue, organ and cellular level of resolution. This application is in response to "PAR-08-139 Enhancing Zebrafish Research with Research Tools and Techniques (R01)" to complete progress on the development of a large-scale collection of these revertible mutant alleles for the zebrafish community through a coordinated international effort. We will deliver the following at project's end: I. 1000 new mutagenic protein trap GBT zebrafish lines with basic description of the tagged expression patterns will be established and made available in real-time through the searchable online database zfishbook.org. These lines are immediately available through distribution by the Mayo Clinic Zebrafish Core Facility. II. We will conduct molecular analyses of these lines and subsequent annotation on the zebrafish genome project to identify the trapped proteins in this collection. We will continue to use our successful next generation sequence techniques followed by linkage analysis to isolate and map GBT insertions on the zebrafish genome. All sequence information will be initially distributed through zfishbook.org and then integrated in ZFIN, Fishmap and other zebrafish genomic databases. III. We will regularly synchronize this collection with the Zebrafish International Resource Center (ZIRC) for long-term archival and distribution to the zebrafish community. We will use a recently established 2D barcoding inventory system with a state-of-the-art sperm cryopreservation approach to facilitate regular shipping of new lines to ZIRC. This proposal is to complete this molecularly characterized collection, in silico catalog and distribution network of revertible mutations for the preeminent non-mammalian vertebrate, the zebrafish. These dominantly marked mutant lines also represent an ideal substrate for large-scale behavioral and other phenotypic assessment of the genome as a part of the broader initiative to functionally annotate the vertebrate genome using the zebrafish.
描述(由申请人提供):斑马鱼(Danio rerio)是研究核心脊椎动物生物学和行为以及人类疾病建模的卓越的非哺乳动物脊椎动物系统。分子特征突变系的收集已经成为线虫、苍蝇和老鼠领域的有力工具。基因组学方法已经强有力地表征了核基因组和转录组。然而,在动态环境和体内对蛋白质组的完整复杂性的基因组评估仍然很大程度上
项目成果
期刊论文数量(0)
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Stephen Carl Ekker的其他文献
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