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Showing 14 results. Use the filters on the left and the search box below to refine the results.
Tag: qtl User: Paul Fisher

Workflow Pathways and Gene annotations for QTL region (7)

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This workflow searches for genes which reside in a QTL (Quantitative Trait Loci) region in the mouse, Mus musculus. The workflow requires an input of: a chromosome name or number; a QTL start base pair position; QTL end base pair position. Data is then extracted from BioMart to annotate each of the genes found in this region. The Entrez and UniProt identifiers are then sent to KEGG to obtain KEGG gene identifiers. The KEGG gene identifiers are then used to searcg for pathways in the KEGG path...

Created: 2009-11-19 | Last updated: 2012-09-07

Credits: User Paul Fisher

Workflow Pathways and Gene annotations for QTL region (2)

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This workflow searches for genes which reside in a QTL (Quantitative Trait Loci) region in the Pig, Sus scrofa. The workflow requires an input of: a chromosome name or number; a QTL start base pair position; QTL end base pair position. Data is then extracted from BioMart to annotate each of the genes found in this region. The Entrez and UniProt identifiers are then sent to KEGG to obtain KEGG gene identifiers. The KEGG gene identifiers are then used to searcg for pathways in the KEGG pathway ...

Created: 2009-11-20 | Last updated: 2009-11-20

Credits: User Paul Fisher

Attributions: Workflow Pathways and Gene annotations for QTL region

Workflow Arabidopsis thaliana QTL Analysis (1)

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This workflow searches for genes which reside in a QTL (Quantitative Trait Loci) region in Arabidopsis thaliana. The workflow requires an input of: a chromosome name or number; a QTL start base pair position; QTL end base pair position. Data is then extracted from BioMart to annotate each of the genes found in this region. The UniProt identifiers are then sent to KEGG to obtain KEGG gene identifiers. The KEGG gene identifiers are then used to searcg for pathways in the KEGG pathway database. ...

Created: 2009-07-08 | Last updated: 2009-12-14

Credits: User Paul Fisher

Workflow Genomic Filter (1)

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This workflow filters a given Ondex graph according to a chromosomal region, or QTL region. The result is a new Ondex graph. The parameters that can be used with this service are as follows: graphId - the ID of the input Graph. outputGraphId - the ID of the output Graph (Optional). If no output graph is specified filtered items will be removed from the input graph. ContextID - The Concept ID of the Context (Chromosome). From - The start position on the chromosome, e.g. 100. To - The stop pos...

Created: 2009-08-19

Credits: User Paul Fisher

Workflow Cosine vector space (1)

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This workflow calculates the cosine vector space between two sets of corpora. The workflow then removes any null values from the output. The result is a cosine vector score between 0 and 1, showing the significance of any links between one concept (e.g. pathway) to another (e.g. phenotype). A score of 0 means there is no or an undetermined correlation between the two concepts. A score approaching 1 represents positive correlation.

Created: 2009-08-10 | Last updated: 2009-08-10

Credits: User Paul Fisher

Workflow Pathways and Gene annotations for QTL region (1)

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This workflow searches for genes which reside in a QTL (Quantitative Trait Loci) region in rice, Oryza sativa. The workflow requires an input of: a chromosome name or number; a QTL start base pair position; QTL end base pair position. Data is then extracted from BioMart to annotate each of the genes found in this region. The Entrez and UniGene identifiers are then sent to KEGG to obtain KEGG gene identifiers. The KEGG gene identifiers are then used to searcg for pathways in the KEGG pathway d...

Created: 2011-05-27 | Last updated: 2011-05-27

Credits: User Paul Fisher

Workflow Pathways and Gene annotations forQTL region (2)

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This workflow searches for genes which reside in a QTL (Quantitative Trait Loci) region in Human, Homo sapiens. The workflow requires an input of: a chromosome name or number; a QTL start base pair position; QTL end base pair position. Data is then extracted from BioMart to annotate each of the genes found in this region. The Entrez and UniProt identifiers are then sent to KEGG to obtain KEGG gene identifiers. The KEGG gene identifiers are then used to searcg for pathways in the KEGG pathway ...

Created: 2011-03-17 | Last updated: 2011-08-30

Credits: User Paul Fisher

Attributions: Workflow Pathways and Gene annotations for QTL region

Workflow Pathway and Gene to Pubmed (2)

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This workflow takes in a list of gene names and KEGG pathway descriptions, and searches the PubMed database for corresponding articles. Any matches to the genes are then retrieved (abstracts only). These abstracts are then used to calculate a cosine vector space between two sets of corpora (gene and phenotype, or pathway and phenotype). The workflow counts the number of articles in the pubmed database in which each term occurs, and identifies the total number of articles in the entire PubMe...

Created: 2011-02-10 | Last updated: 2011-02-18

Credits: User Paul Fisher

Attributions: Workflow Cosine vector space Workflow Extract Scientific Terms Workflow Rank Phenotype Terms Workflow Cosine vector space Workflow Rank Phenotype Terms Workflow Pathway to Pubmed Workflow Extract Scientific Terms Workflow Gene to Pubmed

Workflow Gene to Pubmed (4)

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This workflow takes in a list of gene names and searches the PubMed database for corresponding articles. Any matches to the genes are then retrieved (abstracts only). These abstracts are then returned to the user.

Created: 2011-02-08 | Last updated: 2011-02-10

Credits: User Paul Fisher

Attributions: Workflow Cosine vector space Workflow Extract Scientific Terms Workflow Rank Phenotype Terms Workflow Cosine vector space Workflow Rank Phenotype Terms Workflow Pathway to Pubmed Workflow Extract Scientific Terms

Workflow Rank Phenotype Terms (1)

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This workflow counts the number of articles in the pubmed database in which each term occurs, and identifies the total number of articles in the entire PubMed database. It also identified the total number of articles within pubmed so that a term enrichment score may be calculated. The workflow also takes in a document containing abstracts that are related to a particular phenotype. Scientiifc terms are then extracted from this text and given a weighting according to the number of terms that ...

Created: 2011-02-01 | Last updated: 2011-02-01

Credits: User Paul Fisher

Attributions: Workflow Cosine vector space Workflow Rank Phenotype Terms

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