In this work, pollen mother cells (PMCs) isolated in Arabidopsis thaliana by laser-capture microdissection (LCM) were subjected to transcription profiling by microarray (LMM). PMCs covering all meiotic stages, from leptotene to tetrad, were collected in an Atmcc1 characterized by overexpression of a GCN5-like histone acetylase (AtMCC1). A total of 150 genes showed differential expression in Atmcc1 PMCs as compared to the wild type. Histone hyperacetylation affected the transcription of genes belonging to categories such as the meiotic and mitotic cycle, the ubiquitinproteasome-system, and the chromatin structure. We also discuss the putative role of ASK1 and RAD51C upregulation in the meiotic defects observed in Atmcc1. PMCLMM experiments allowed identification of candidate AtMCC1 targets with known and potential function in meiosis, providing data for further investigation on plant meiosis. © 2012 Korean Society of Plant Biologists and Springer-Verlag Berlin Heidelberg.

Transcription profiling of laser microdissected microsporocytes in an Arabidopsis mutant (Atmcc1) with enhanced histone acetylation / Barra, Lucia; Aiese-Cigliano, Riccardoa; Cremona, Gaetanaa; de Luca, Pasquale; Zoppoli, Pietro; Bressan, Ray A.. - In: JOURNAL OF PLANT BIOLOGY. - ISSN 1226-9239. - 55:4(2012), pp. 281-289. [10.1007/s12374-011-0268-z]

Transcription profiling of laser microdissected microsporocytes in an Arabidopsis mutant (Atmcc1) with enhanced histone acetylation

Zoppoli, Pietro;
2012

Abstract

In this work, pollen mother cells (PMCs) isolated in Arabidopsis thaliana by laser-capture microdissection (LCM) were subjected to transcription profiling by microarray (LMM). PMCs covering all meiotic stages, from leptotene to tetrad, were collected in an Atmcc1 characterized by overexpression of a GCN5-like histone acetylase (AtMCC1). A total of 150 genes showed differential expression in Atmcc1 PMCs as compared to the wild type. Histone hyperacetylation affected the transcription of genes belonging to categories such as the meiotic and mitotic cycle, the ubiquitinproteasome-system, and the chromatin structure. We also discuss the putative role of ASK1 and RAD51C upregulation in the meiotic defects observed in Atmcc1. PMCLMM experiments allowed identification of candidate AtMCC1 targets with known and potential function in meiosis, providing data for further investigation on plant meiosis. © 2012 Korean Society of Plant Biologists and Springer-Verlag Berlin Heidelberg.
2012
Transcription profiling of laser microdissected microsporocytes in an Arabidopsis mutant (Atmcc1) with enhanced histone acetylation / Barra, Lucia; Aiese-Cigliano, Riccardoa; Cremona, Gaetanaa; de Luca, Pasquale; Zoppoli, Pietro; Bressan, Ray A.. - In: JOURNAL OF PLANT BIOLOGY. - ISSN 1226-9239. - 55:4(2012), pp. 281-289. [10.1007/s12374-011-0268-z]
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/898560
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 7
  • ???jsp.display-item.citation.isi??? 6
social impact