TY - UNPB
T1 - The MADS-box transcription factor PHERES1 controls imprinting in the endosperm by binding to domesticated transposons
AU - Batista, Rita
AU - Moreno Romero, Jordi
AU - Qiu, Yichun
AU - van Boven, Joram
AU - Santos-González, Juan
AU - Figueiredo, Duarte
AU - Köhler, Claudia
PY - 2019
Y1 - 2019
N2 - MADS-box transcription factors are ubiquitous in eukaryotic organisms and play major roles during plant development. Nevertheless, their function in seed development remains largely unknown. Here we show that the imprinted Arabidopsis thaliana MADS-box TF PHERES1 (PHE1) is a master regulator of paternally expressed imprinted genes, as well as of non-imprinted key regulators of endosperm development. PHE1 binding sites show distinct epigenetic modifications on maternal and paternal alleles, correlating with parental-specific transcriptional activity. Importantly, we show that the CArG-box-like DNA-binding motifs bound by PHE1 have been distributed by RC/Helitron transposable elements. Our data provide an example of molecular domestication of these elements, which by distributing PHE1 binding sites throughout the genome, have facilitated the recruitment of crucial endosperm regulators into a single transcriptional network.
AB - MADS-box transcription factors are ubiquitous in eukaryotic organisms and play major roles during plant development. Nevertheless, their function in seed development remains largely unknown. Here we show that the imprinted Arabidopsis thaliana MADS-box TF PHERES1 (PHE1) is a master regulator of paternally expressed imprinted genes, as well as of non-imprinted key regulators of endosperm development. PHE1 binding sites show distinct epigenetic modifications on maternal and paternal alleles, correlating with parental-specific transcriptional activity. Importantly, we show that the CArG-box-like DNA-binding motifs bound by PHE1 have been distributed by RC/Helitron transposable elements. Our data provide an example of molecular domestication of these elements, which by distributing PHE1 binding sites throughout the genome, have facilitated the recruitment of crucial endosperm regulators into a single transcriptional network.
UR - https://res.slu.se/id/publ/99991
U2 - 10.1101/616698
DO - 10.1101/616698
M3 - Preprint
BT - The MADS-box transcription factor PHERES1 controls imprinting in the endosperm by binding to domesticated transposons
PB - bioRxiv
ER -