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In all three domains of life, genes with related functions can be enriched in specific genomic regions, known as the gene clusters. In eukaryotes, histone, piRNA, and rDNA (ribosomal DNA) clusters are among the most notable clusters which play fundamental roles in chromatin formation, genome integri...
ORGANISM(S): Caenorhabditis elegans 
2025-01-29 | PXD055895 | Pride
An AT-hook transcription factor promotes transcription of histone, spliced-leader, and piRNA clusters [mRNA-Seq]
An AT-hook transcription factor promotes transcription of histone, spliced-leader, and piRNA clusters [ChIP-Seq]
An AT-hook transcription factor promotes transcription of histone, spliced-leader, and piRNA clusters [smllRNA-seq]
In all three domains of life, genes with related functions can be organized into specific genomic regions known as gene clusters. In eukaryotes, histone, piRNA, and rDNA (ribosomal DNA) clusters are among the most notable clusters which play fundamental roles in chromatin formation, genome integrity...
ORGANISM(S): Caenorhabditis elegans 
2025-01-28 | GSE277643 | GEO
In all three domains of life, genes with related functions can be organized into specific genomic regions known as gene clusters. In eukaryotes, histone, piRNA, and rDNA (ribosomal DNA) clusters are among the most notable clusters which play fundamental roles in chromatin formation, genome integrity...
ORGANISM(S): Caenorhabditis elegans 
2025-01-28 | GSE277642 | GEO
In all three domains of life, genes with related functions can be organized into specific genomic regions known as gene clusters. In eukaryotes, histone, piRNA, and rDNA (ribosomal DNA) clusters are among the most notable clusters which play fundamental roles in chromatin formation, genome integrity...
ORGANISM(S): Caenorhabditis elegans 
2025-01-28 | GSE277641 | GEO
AT-hook transcription factors repress petiole growth by antagonizing PIF4 [ChIP-seq]
AT-hook transcription factors repress petiole growth by antagonizing PIF4 [RNA-seq]
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