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About:
Unlocking the secrets of the genome
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An Entity of Type :
schema:ScholarlyArticle
, within Data Space :
wasabi.inria.fr
associated with source
document(s)
Type:
Academic Article
research paper
schema:ScholarlyArticle
New Facet based on Instances of this Class
Attributes
Values
type
Academic Article
research paper
schema:ScholarlyArticle
isDefinedBy
Covid-on-the-Web dataset
title
Unlocking the secrets of the genome
Creator
Snyder, Michael
Gerstein, Mark
Lieb, Jason
Waterston, Robert
White, Kevin
Kellis, Manolis
Lai, Eric
Henikoff, Steven
Celniker, Susan
Dillon, Laura
Gunsalus, Kristin
Karpen, Gary
Macalpine, David
Micklem, Gos
Piano, Fabio
Stein, Lincoln
source
PMC
abstract
Despite the successes of genomics, little is known about how genetic information produces complex organisms. A look at the crucial functional elements of fly and worm genomes could change that. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/459927a) contains supplementary material, which is available to authorized users.
has issue date
2009-06-17
(
xsd:dateTime
)
bibo:doi
10.1038/459927a
bibo:pmid
19536255
has license
cc-by-nc-sa
sha1sum (hex)
657548f78e3554b1e5ac8f91eb52d2fce84fd17e
schema:url
https://doi.org/10.1038/459927a
resource representing a document's title
Unlocking the secrets of the genome
has PubMed Central identifier
PMC2843545
has PubMed identifier
19536255
schema:publication
Nature
resource representing a document's body
covid:657548f78e3554b1e5ac8f91eb52d2fce84fd17e#body_text
is
schema:about
of
named entity 'worm'
named entity 'functional elements'
named entity 'produces'
named entity 'genome'
named entity 'GENETIC INFORMATION'
named entity 'CHANGE'
named entity 'genomics'
named entity 'metazoans'
named entity 'histone modifications'
named entity 'cell types'
named entity 'D. melanogaster'
named entity 'recombination'
named entity 'cell types'
named entity 'small RNAs'
named entity 'genomes'
named entity 'expression profiling'
named entity 'modENCODE'
named entity 'ENCODE'
named entity 'modENCODE'
named entity 'modENCODE'
named entity 'motif'
named entity 'sequence-specific'
named entity 'RNA interference'
named entity 'worm'
named entity 'protein-coding genes'
named entity 'Human Genome Project'
named entity 'gene'
named entity 'genetic manipulation'
named entity 'origins of replication'
named entity 'D. melanogaster'
named entity 'molecular studies'
named entity 'nuclear envelope'
named entity 'modENCODE'
named entity 'chromatin'
named entity 'Gene Expression Omnibus'
named entity 'post-transcriptional'
named entity 'strongly conserved'
named entity 'chromatin'
named entity 'modENCODE'
named entity 'Correlate'
named entity 'chromatin'
named entity 'model organisms'
named entity 'heterochromatin'
named entity 'WormBase'
named entity 'cell types'
named entity 'genomes'
named entity 'RNAi'
named entity 'modENCODE'
named entity 'ChIP-chip'
named entity 'miRNA'
named entity 'high-throughput methods'
named entity 'D. melanogaster'
named entity 'complement'
named entity 'nuclear envelope'
named entity 'emergent properties'
named entity 'chromatin immunoprecipitation'
named entity 'DNA replication'
named entity 'metadata'
named entity 'regulatory networks'
named entity 'modENCODE'
named entity 'higher organisms'
named entity 'control of gene expression'
named entity 'C. elegans'
named entity 'Caenorhabditis elegans'
named entity 'centromere'
named entity 'genome-wide'
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