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1.
J Exp Bot ; 67(20): 5887-5900, 2016 10.
Article in English | MEDLINE | ID: mdl-27639093

ABSTRACT

Programmed cell death (PCD) is a ubiquitous genetically regulated process consisting of the activation of finely controlled signalling pathways that lead to cellular suicide. PCD can be part of a developmental programme (dPCD) or be triggered by environmental conditions (ePCD). In plant cells, as in animal cells, extensive chromatin condensation and degradation of the nuclear DNA are among the most conspicuous features of cells undergoing PCD. Changes in chromatin condensation could either reflect the structural changes required for internucleosomal fragmentation of nuclear DNA or relate to large-scale chromatin rearrangements associated with a major transcriptional switch occurring during cell death. The aim of this review is to give an update on plant PCD processes from a chromatin point of view. The first part will be dedicated to chromatin conformational changes associated with cell death observed in various developmental and physiological conditions, whereas the second part will be devoted to histone dynamics and DNA modifications associated with critical changes in genome expression during the cell death process.


Subject(s)
Apoptosis/physiology , Chromatin/physiology , DNA, Plant/physiology , Plant Physiological Phenomena , Plants/metabolism
2.
Science ; 361(6403)2018 08 17.
Article in English | MEDLINE | ID: mdl-30115782

ABSTRACT

The coordinated expression of highly related homoeologous genes in polyploid species underlies the phenotypes of many of the world's major crops. Here we combine extensive gene expression datasets to produce a comprehensive, genome-wide analysis of homoeolog expression patterns in hexaploid bread wheat. Bias in homoeolog expression varies between tissues, with ~30% of wheat homoeologs showing nonbalanced expression. We found expression asymmetries along wheat chromosomes, with homoeologs showing the largest inter-tissue, inter-cultivar, and coding sequence variation, most often located in high-recombination distal ends of chromosomes. These transcriptionally dynamic genes potentially represent the first steps toward neo- or subfunctionalization of wheat homoeologs. Coexpression networks reveal extensive coordination of homoeologs throughout development and, alongside a detailed expression atlas, provide a framework to target candidate genes underpinning agronomic traits in wheat.


Subject(s)
Gene Expression Regulation, Plant , Polyploidy , Transcription, Genetic , Triticum/genetics , Bread , Gene Expression Profiling , Gene Expression Regulation, Developmental , Genome, Plant , RNA, Plant/genetics , Sequence Analysis, RNA , Triticum/growth & development
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