Cargando…

The DME demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection

The flowering plant life cycle consists of alternating haploid (gametophyte) and diploid (sporophyte) generations, where the sporophytic generation begins with fertilization of haploid gametes. In Arabidopsis, genome-wide DNA demethylation is required for normal development, catalyzed by the DEMETER...

Descripción completa

Detalles Bibliográficos
Autores principales: Kim, Seohyun, Park, Jin-Sup, Lee, Jaehoon, Lee, Kiseok Keith, Park, Ok-Sun, Choi, Hee-Seung, Seo, Pil Joon, Cho, Hyung-Taeg, Frost, Jennifer M., Fischer, Robert L., Choi, Yeonhee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8307533/
https://www.ncbi.nlm.nih.gov/pubmed/34266952
http://dx.doi.org/10.1073/pnas.2026806118
_version_ 1783728071978778624
author Kim, Seohyun
Park, Jin-Sup
Lee, Jaehoon
Lee, Kiseok Keith
Park, Ok-Sun
Choi, Hee-Seung
Seo, Pil Joon
Cho, Hyung-Taeg
Frost, Jennifer M.
Fischer, Robert L.
Choi, Yeonhee
author_facet Kim, Seohyun
Park, Jin-Sup
Lee, Jaehoon
Lee, Kiseok Keith
Park, Ok-Sun
Choi, Hee-Seung
Seo, Pil Joon
Cho, Hyung-Taeg
Frost, Jennifer M.
Fischer, Robert L.
Choi, Yeonhee
author_sort Kim, Seohyun
collection PubMed
description The flowering plant life cycle consists of alternating haploid (gametophyte) and diploid (sporophyte) generations, where the sporophytic generation begins with fertilization of haploid gametes. In Arabidopsis, genome-wide DNA demethylation is required for normal development, catalyzed by the DEMETER (DME) DNA demethylase in the gamete companion cells of male and female gametophytes. In the sporophyte, postembryonic growth and development are largely dependent on the activity of numerous stem cell niches, or meristems. Analyzing Arabidopsis plants homozygous for a loss-of-function dme-2 allele, we show that DME influences many aspects of sporophytic growth and development. dme-2 mutants exhibited delayed seed germination, variable root hair growth, aberrant cellular proliferation and differentiation followed by enhanced de novo shoot formation, dysregulation of root quiescence and stomatal precursor cells, and inflorescence meristem (IM) resurrection. We also show that sporophytic DME activity exerts a profound effect on the transcriptome of developing Arabidopsis plants, including discrete groups of regulatory genes that are misregulated in dme-2 mutant tissues, allowing us to potentially link phenotypes to changes in specific gene expression pathways. These results show that DME plays a key role in sporophytic development and suggest that DME-mediated active DNA demethylation may be involved in the maintenance of stem cell activities during the sporophytic life cycle in Arabidopsis.
format Online
Article
Text
id pubmed-8307533
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-83075332021-07-28 The DME demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection Kim, Seohyun Park, Jin-Sup Lee, Jaehoon Lee, Kiseok Keith Park, Ok-Sun Choi, Hee-Seung Seo, Pil Joon Cho, Hyung-Taeg Frost, Jennifer M. Fischer, Robert L. Choi, Yeonhee Proc Natl Acad Sci U S A Biological Sciences The flowering plant life cycle consists of alternating haploid (gametophyte) and diploid (sporophyte) generations, where the sporophytic generation begins with fertilization of haploid gametes. In Arabidopsis, genome-wide DNA demethylation is required for normal development, catalyzed by the DEMETER (DME) DNA demethylase in the gamete companion cells of male and female gametophytes. In the sporophyte, postembryonic growth and development are largely dependent on the activity of numerous stem cell niches, or meristems. Analyzing Arabidopsis plants homozygous for a loss-of-function dme-2 allele, we show that DME influences many aspects of sporophytic growth and development. dme-2 mutants exhibited delayed seed germination, variable root hair growth, aberrant cellular proliferation and differentiation followed by enhanced de novo shoot formation, dysregulation of root quiescence and stomatal precursor cells, and inflorescence meristem (IM) resurrection. We also show that sporophytic DME activity exerts a profound effect on the transcriptome of developing Arabidopsis plants, including discrete groups of regulatory genes that are misregulated in dme-2 mutant tissues, allowing us to potentially link phenotypes to changes in specific gene expression pathways. These results show that DME plays a key role in sporophytic development and suggest that DME-mediated active DNA demethylation may be involved in the maintenance of stem cell activities during the sporophytic life cycle in Arabidopsis. National Academy of Sciences 2021-07-20 2021-07-15 /pmc/articles/PMC8307533/ /pubmed/34266952 http://dx.doi.org/10.1073/pnas.2026806118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Kim, Seohyun
Park, Jin-Sup
Lee, Jaehoon
Lee, Kiseok Keith
Park, Ok-Sun
Choi, Hee-Seung
Seo, Pil Joon
Cho, Hyung-Taeg
Frost, Jennifer M.
Fischer, Robert L.
Choi, Yeonhee
The DME demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection
title The DME demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection
title_full The DME demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection
title_fullStr The DME demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection
title_full_unstemmed The DME demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection
title_short The DME demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection
title_sort dme demethylase regulates sporophyte gene expression, cell proliferation, differentiation, and meristem resurrection
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8307533/
https://www.ncbi.nlm.nih.gov/pubmed/34266952
http://dx.doi.org/10.1073/pnas.2026806118
work_keys_str_mv AT kimseohyun thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT parkjinsup thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT leejaehoon thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT leekiseokkeith thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT parkoksun thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT choiheeseung thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT seopiljoon thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT chohyungtaeg thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT frostjenniferm thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT fischerrobertl thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT choiyeonhee thedmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT kimseohyun dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT parkjinsup dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT leejaehoon dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT leekiseokkeith dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT parkoksun dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT choiheeseung dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT seopiljoon dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT chohyungtaeg dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT frostjenniferm dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT fischerrobertl dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection
AT choiyeonhee dmedemethylaseregulatessporophytegeneexpressioncellproliferationdifferentiationandmeristemresurrection