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Enabling a community to dissect an organism: overview of the Neurospora functional genomics project.

Enabling a community to dissect an organism: overview of the Neurospora functional genomics project. Research Abstract Details 

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  • Enabling a community to dissect an organism: overview of the Neurospora functional genomics project. Abstract Text:

    jay c dunlapJay C Dunlap,katherine a borkovichKatherine A Borkovich,matthew r hennMatthew R Henn,gloria e turnerGloria E Turner,matthew s sachsMatthew S Sachs,n louise glassN Louise Glass,kevin mccluskeyKevin McCluskey,michael plamannMichael Plamann,james e galaganJames E Galagan,bruce w birrenBruce W Birren,richard l weissRichard L Weiss,jeffrey p townsendJeffrey P Townsend,jennifer j lorosJennifer J Loros,mary anne nelsonMary Anne Nelson,randy lambreghtsRandy Lambreghts,hildur v colotHildur V Colot,gyungsoon parkGyungsoon Park,patrick collopyPatrick Collopy,carol ringelbergCarol Ringelberg,christopher crewChristopher Crew,liubov litvinkovaLiubov Litvinkova,dave decaprioDave DeCaprio,heather m hoodHeather M Hood,susan curillaSusan Curilla,mi shiMi Shi,matthew crawfordMatthew Crawford,michael koerhsenMichael Koerhsen,phil montgomeryPhil Montgomery,lisa larsonLisa Larson,matthew pearsonMatthew Pearson,takao kasugaTakao Kasuga,chaoguang tianChaoguang Tian,meray Meray ,lorena altamiranoLorena Altamirano,junhuan xuJunhuan Xu,

    A consortium of investigators is engaged in a functional genomics project centered on the filamentous fungus Neurospora, with an eye to opening up the functional genomic analysis of all the filamentous fungi. The overall goal of the four interdependent projects in this effort is to accomplish functional genomics, annotation, and expression analyses of Neurospora crassa, a filamentous fungus that is an established model for the assemblage of over 250,000 species of non yeast fungi. Building from the completely sequenced 43-Mb Neurospora genome, Project 1 is pursuing the systematic disruption of genes through targeted gene replacements, phenotypic analysis of mutant strains, and their distribution to the scientific community at large. Project 2, through a primary focus in Annotation and Bioinformatics, has developed a platform for electronically capturing community feedback and data about the existing annotation, while building and maintaining a database to capture and display information about phenotypes. Oligonucleotide-based microarrays created in Project 3 are being used to collect baseline expression data for the nearly 11,000 distinguishable transcripts in Neurospora under various conditions of growth and development, and eventually to begin to analyze the global effects of loss of novel genes in strains created by Project 1. cDNA libraries generated in Project 4 document the overall complexity of expressed sequences in Neurospora, including alternative splicing alternative promoters and antisense transcripts. In addition, these studies have driven the assembly of an SNP map presently populated by nearly 300 markers that will greatly accelerate the positional cloning of genes.

    Enabling a community to dissect an organism: overview of the Neurospora functional genomics project. Publishing Authors By Initials

    jc dunlapJC Dunlap,ka borkovichKA Borkovich,mr hennMR Henn,ge turnerGE Turner,ms sachsMS Sachs,nl glassNL Glass,k mccluskeyK McCluskey,m plamannM Plamann,je galaganJE Galagan,bw birrenBW Birren,rl weissRL Weiss,jp townsendJP Townsend,jj lorosJJ Loros,ma nelsonMA Nelson,r lambreghtsR Lambreghts,hv colotHV Colot,g parkG Park,p collopyP Collopy,c ringelbergC Ringelberg,c crewC Crew,l litvinkovaL Litvinkova,d decaprioD DeCaprio,hm hoodHM Hood,s curillaS Curilla,m shiM Shi,m crawfordM Crawford,m koerhsenM Koerhsen,p montgomeryP Montgomery,l larsonL Larson,m pearsonM Pearson,t kasugaT Kasuga,c tianC Tian,m M ,l altamiranoL Altamirano,j xuJ Xu,

    For similar genetic phenomena: variation (genetics): polymorphism, genetic: polymorphism, single nucleotide research abstracts see: genetic phenomena: variation (genetics): polymorphism, genetic: polymorphism, single nucleotide research

    PUBMED ID PMID:

    MEDLINE DATE:

    Enabling a community to dissect an organism: overview of the Neurospora functional genomics project. Journal Published:

    PUBLICATION TYPE: Review

    Journal: Advances in genetics

    VOLUME: 57

    Page Numbers: 49-96

    Journal Abbreviation: Adv. Genet.

    ISSN: 0065-2660

    DAY: 3

    MONTH: 12

    YEAR: 2007

    Enabling a community to dissect an organism: overview of the Neurospora functional genomics project. Information

    Number of References: 68

    LANGUAGE: eng

    NlmUniqueID: 370421

    Enabling a community to dissect an organism: overview of the Neurospora functional genomics project. Keywords Mesh Terms:

    KEYWORDS: Polymorphism, Single Nucleotide

    MESH TERMS: genetics

    Chemical & Substance for Abstract: Enabling a community to dissect an organism: overview of the Neurospora functional genomics project. Information

    Substance Name: DNA, Fungal

    Registry Number: 0

    Grant and Affiliation Information for Enabling a community to dissect an organism: overview of the Neurospora functional genomics project.

    AFFILIATION: Department of Genetics, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.

    Country: United States

    United States Research PublicationUnited States Research Publication

    AGENCY: United States NIGMS

    GRANT: P01 GM068087

    ACRONYM: GM

    MEDLINETA: Adv Genet

    REFSOURCE:

    DATABASENAME:

    ACCESSION NUMBER:

    Number Hits: 0

    Enabling a community to dissect an organism: overview of the Neurospora functional genomics project Related Publications

     

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