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The DNA binding landscape of the maize AUXIN RESPONSE FACTOR family.


ABSTRACT: AUXIN RESPONSE FACTORS (ARFs) are plant-specific transcription factors (TFs) that couple perception of the hormone auxin to gene expression programs essential to all land plants. As with many large TF families, a key question is whether individual members determine developmental specificity by binding distinct target genes. We use DAP-seq to generate genome-wide in vitro TF:DNA interaction maps for fourteen maize ARFs from the evolutionarily conserved A and B clades. Comparative analysis reveal a high degree of binding site overlap for ARFs of the same clade, but largely distinct clade A and B binding. Many sites are however co-occupied by ARFs from both clades, suggesting transcriptional coordination for many genes. Among these, we investigate known QTLs and use machine learning to predict the impact of cis-regulatory variation. Overall, large-scale comparative analysis of ARF binding suggests that auxin response specificity may be determined by factors other than individual ARF binding site selection.

SUBMITTER: Galli M 

PROVIDER: S-EPMC6207667 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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The DNA binding landscape of the maize AUXIN RESPONSE FACTOR family.

Galli Mary M   Khakhar Arjun A   Lu Zefu Z   Chen Zongliang Z   Sen Sidharth S   Joshi Trupti T   Nemhauser Jennifer L JL   Schmitz Robert J RJ   Gallavotti Andrea A  

Nature communications 20181030 1


AUXIN RESPONSE FACTORS (ARFs) are plant-specific transcription factors (TFs) that couple perception of the hormone auxin to gene expression programs essential to all land plants. As with many large TF families, a key question is whether individual members determine developmental specificity by binding distinct target genes. We use DAP-seq to generate genome-wide in vitro TF:DNA interaction maps for fourteen maize ARFs from the evolutionarily conserved A and B clades. Comparative analysis reveal  ...[more]

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