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Genome-Wide Transcript Profiling of Endosperm without Paternal Contribution Identifies Parent-of-Origin–Dependent Regulation of AGAMOUS-LIKE36

Seed development in angiosperms is dependent on the interplay among different transcriptional programs operating in the embryo, the endosperm, and the maternally-derived seed coat. In angiosperms, the embryo and the endosperm are products of double fertilization during which the two pollen sperm cel...

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Autores principales: Shirzadi, Reza, Andersen, Ellen D., Bjerkan, Katrine N., Gloeckle, Barbara M., Heese, Maren, Ungru, Alexander, Winge, Per, Koncz, Csaba, Aalen, Reidunn B., Schnittger, Arp, Grini, Paul E.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3040660/
https://www.ncbi.nlm.nih.gov/pubmed/21379330
http://dx.doi.org/10.1371/journal.pgen.1001303
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author Shirzadi, Reza
Andersen, Ellen D.
Bjerkan, Katrine N.
Gloeckle, Barbara M.
Heese, Maren
Ungru, Alexander
Winge, Per
Koncz, Csaba
Aalen, Reidunn B.
Schnittger, Arp
Grini, Paul E.
author_facet Shirzadi, Reza
Andersen, Ellen D.
Bjerkan, Katrine N.
Gloeckle, Barbara M.
Heese, Maren
Ungru, Alexander
Winge, Per
Koncz, Csaba
Aalen, Reidunn B.
Schnittger, Arp
Grini, Paul E.
author_sort Shirzadi, Reza
collection PubMed
description Seed development in angiosperms is dependent on the interplay among different transcriptional programs operating in the embryo, the endosperm, and the maternally-derived seed coat. In angiosperms, the embryo and the endosperm are products of double fertilization during which the two pollen sperm cells fuse with the egg cell and the central cell of the female gametophyte. In Arabidopsis, analyses of mutants in the cell-cycle regulator CYCLIN DEPENDENT KINASE A;1 (CKDA;1) have revealed the importance of a paternal genome for the effective development of the endosperm and ultimately the seed. Here we have exploited cdka;1 fertilization as a novel tool for the identification of seed regulators and factors involved in parent-of-origin–specific regulation during seed development. We have generated genome-wide transcription profiles of cdka;1 fertilized seeds and identified approximately 600 genes that are downregulated in the absence of a paternal genome. Among those, AGAMOUS-LIKE (AGL) genes encoding Type-I MADS-box transcription factors were significantly overrepresented. Here, AGL36 was chosen for an in-depth study and shown to be imprinted. We demonstrate that AGL36 parent-of-origin–dependent expression is controlled by the activity of METHYLTRANSFERASE1 (MET1) maintenance DNA methyltransferase and DEMETER (DME) DNA glycosylase. Interestingly, our data also show that the active maternal allele of AGL36 is regulated throughout endosperm development by components of the FIS Polycomb Repressive Complex 2 (PRC2), revealing a new type of dual epigenetic regulation in seeds.
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spelling pubmed-30406602011-03-04 Genome-Wide Transcript Profiling of Endosperm without Paternal Contribution Identifies Parent-of-Origin–Dependent Regulation of AGAMOUS-LIKE36 Shirzadi, Reza Andersen, Ellen D. Bjerkan, Katrine N. Gloeckle, Barbara M. Heese, Maren Ungru, Alexander Winge, Per Koncz, Csaba Aalen, Reidunn B. Schnittger, Arp Grini, Paul E. PLoS Genet Research Article Seed development in angiosperms is dependent on the interplay among different transcriptional programs operating in the embryo, the endosperm, and the maternally-derived seed coat. In angiosperms, the embryo and the endosperm are products of double fertilization during which the two pollen sperm cells fuse with the egg cell and the central cell of the female gametophyte. In Arabidopsis, analyses of mutants in the cell-cycle regulator CYCLIN DEPENDENT KINASE A;1 (CKDA;1) have revealed the importance of a paternal genome for the effective development of the endosperm and ultimately the seed. Here we have exploited cdka;1 fertilization as a novel tool for the identification of seed regulators and factors involved in parent-of-origin–specific regulation during seed development. We have generated genome-wide transcription profiles of cdka;1 fertilized seeds and identified approximately 600 genes that are downregulated in the absence of a paternal genome. Among those, AGAMOUS-LIKE (AGL) genes encoding Type-I MADS-box transcription factors were significantly overrepresented. Here, AGL36 was chosen for an in-depth study and shown to be imprinted. We demonstrate that AGL36 parent-of-origin–dependent expression is controlled by the activity of METHYLTRANSFERASE1 (MET1) maintenance DNA methyltransferase and DEMETER (DME) DNA glycosylase. Interestingly, our data also show that the active maternal allele of AGL36 is regulated throughout endosperm development by components of the FIS Polycomb Repressive Complex 2 (PRC2), revealing a new type of dual epigenetic regulation in seeds. Public Library of Science 2011-02-17 /pmc/articles/PMC3040660/ /pubmed/21379330 http://dx.doi.org/10.1371/journal.pgen.1001303 Text en Shirzadi et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Shirzadi, Reza
Andersen, Ellen D.
Bjerkan, Katrine N.
Gloeckle, Barbara M.
Heese, Maren
Ungru, Alexander
Winge, Per
Koncz, Csaba
Aalen, Reidunn B.
Schnittger, Arp
Grini, Paul E.
Genome-Wide Transcript Profiling of Endosperm without Paternal Contribution Identifies Parent-of-Origin–Dependent Regulation of AGAMOUS-LIKE36
title Genome-Wide Transcript Profiling of Endosperm without Paternal Contribution Identifies Parent-of-Origin–Dependent Regulation of AGAMOUS-LIKE36
title_full Genome-Wide Transcript Profiling of Endosperm without Paternal Contribution Identifies Parent-of-Origin–Dependent Regulation of AGAMOUS-LIKE36
title_fullStr Genome-Wide Transcript Profiling of Endosperm without Paternal Contribution Identifies Parent-of-Origin–Dependent Regulation of AGAMOUS-LIKE36
title_full_unstemmed Genome-Wide Transcript Profiling of Endosperm without Paternal Contribution Identifies Parent-of-Origin–Dependent Regulation of AGAMOUS-LIKE36
title_short Genome-Wide Transcript Profiling of Endosperm without Paternal Contribution Identifies Parent-of-Origin–Dependent Regulation of AGAMOUS-LIKE36
title_sort genome-wide transcript profiling of endosperm without paternal contribution identifies parent-of-origin–dependent regulation of agamous-like36
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3040660/
https://www.ncbi.nlm.nih.gov/pubmed/21379330
http://dx.doi.org/10.1371/journal.pgen.1001303
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