TY - JOUR
T1 - Transcriptional dynamics and chromatin accessibility in the regulation of shade-responsive genes in Arabidopsis
AU - Paulišić, Sandi
AU - Boccaccini, Alessandra
AU - Dreos, René
AU - Ambrosini, Giovanna
AU - Guex, Nicolas
AU - Benstein, Ruben Maximilian
AU - Schmid, Markus
AU - Fankhauser, Christian
N1 - Publisher Copyright:
© The Author(s) 2025.
PY - 2025
Y1 - 2025
N2 - BackgroundOpen chromatin regions host DNA regulatory motifs that are accessible to transcription factors and the transcriptional machinery. In Arabidopsis, responses to light are heavily regulated at the transcriptional level. Shade, for example, can limit photosynthesis and is rapidly perceived by phytochromes as a reduction of red to far-red light ratio (LRFR). Under shade, phytochromes become inactive, enabling PHYTOCHROME INTERACTING FACTORs (PIFs), particularly PIF7, to promote genome-wide reprogramming essential for LRFR responses. An initial strong and fast regulation of shade-responsive genes is followed by attenuation of this response under prolonged shade.ResultsTo determine whether the transcriptional response to shade depends on chromatin accessibility, we use ATAC-seq to profile the chromatin of seedlings exposed to short (1 h) and long (25 h) simulated shade. We find that PIF7 binding sites are accessible for most early target genes before LRFR treatment. The transcription pattern of most acute shade-responsive genes correlates with a rapid increase in PIF levels and chromatin association at 1 h, and its decrease at 25 h of shade exposure. For a small subset of acutely responding genes, PIFs also modulate chromatin accessibility at their binding sites early and/or late in the response to shade.ConclusionsOur results suggest that in seedlings a state of open chromatin conformation allows PIFs to easily access and recognize their binding motifs, rapidly initiating gene expression triggered by shade. This transcriptional response primarily depends on a transient increase in PIF stability and gene occupancy, accompanied by changes in chromatin accessibility in a minority of genes.
AB - BackgroundOpen chromatin regions host DNA regulatory motifs that are accessible to transcription factors and the transcriptional machinery. In Arabidopsis, responses to light are heavily regulated at the transcriptional level. Shade, for example, can limit photosynthesis and is rapidly perceived by phytochromes as a reduction of red to far-red light ratio (LRFR). Under shade, phytochromes become inactive, enabling PHYTOCHROME INTERACTING FACTORs (PIFs), particularly PIF7, to promote genome-wide reprogramming essential for LRFR responses. An initial strong and fast regulation of shade-responsive genes is followed by attenuation of this response under prolonged shade.ResultsTo determine whether the transcriptional response to shade depends on chromatin accessibility, we use ATAC-seq to profile the chromatin of seedlings exposed to short (1 h) and long (25 h) simulated shade. We find that PIF7 binding sites are accessible for most early target genes before LRFR treatment. The transcription pattern of most acute shade-responsive genes correlates with a rapid increase in PIF levels and chromatin association at 1 h, and its decrease at 25 h of shade exposure. For a small subset of acutely responding genes, PIFs also modulate chromatin accessibility at their binding sites early and/or late in the response to shade.ConclusionsOur results suggest that in seedlings a state of open chromatin conformation allows PIFs to easily access and recognize their binding motifs, rapidly initiating gene expression triggered by shade. This transcriptional response primarily depends on a transient increase in PIF stability and gene occupancy, accompanied by changes in chromatin accessibility in a minority of genes.
KW - ATAC-seq
KW - Arabidopsis
KW - Chromatin accessibility
KW - PIF7
KW - Shade
KW - Transcription
KW - ATAC-seq
KW - Arabidopsis
KW - Chromatin accessibility
KW - PIF7
KW - Shade
KW - Transcription
UR - https://res.slu.se/id/publ/145028
UR - https://doi.org/10.1186/s13059-025-03901-2
U2 - 10.1186/s13059-025-03901-2
DO - 10.1186/s13059-025-03901-2
M3 - Journal article
C2 - 41372949
AN - SCOPUS:105024349820
SN - 1474-7596
VL - 26
JO - Genome Biology
JF - Genome Biology
IS - 1
M1 - 422
ER -