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PMID: 16771774 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Gene expression patterns reveal tissue-specific signaling networks controlling programmed cell death and ABA- regulated maturation in developing barley seeds.

The Plant journal : for cell and molecular biology ·Vol. 47 ·No. 2 ·2006-07-00 ·Pages 310-27

Sreenivasulu N, Radchuk V, Strickert M, Miersch O, Weschke W, Wobus U

Abstract

Gene expression patterns covering over 10,000 seed-expressed sequences were analyzed by macroarray technology in maternal tissue (mainly pericarp) and filial endosperm and embryo during barley seed development from anthesis until late maturation. Defined sets of genes showing distinct expression patterns characterized both tissue type and major developmental phases. The analysis focused on regulatory networks involved in programmed cell death (PCD) and abscisic acid (ABA)-mediated maturation. These processes were similar in the different tissues, but typically involved the expression of alternative members of a common gene family. The analysis of co-expressed gene sets and the identification of cis regulatory elements in orthologous rice gene 'promoter' regions suggest that PCD in the pericarp is mediated by distinct classes of proteases and is under the hormonal control of both jasmonic acid (JA) and ethylene via ethylene-responsive element binding protein (EREBP) transcription factors (TFs). On the other hand, PCD in endosperm apparently involves only the ethylene pathway, but employs distinct gene family members from those active in the pericarp, and a different set of proteases and TFs. JA biosynthetic genes are hardly activated. Accordingly, JA levels are high in the pericarp but low in the endosperm during middle and late developmental stages. Similarly, genes acting in the deduced ABA biosynthetic pathway and signaling network differ between endosperm and embryo. ABA in the endosperm appears to exert an influence over storage product synthesis via SNF1 kinase. In the embryo, ABA seems to influence the acquisition of desiccation tolerance via ABA response element binding factors, but the data also suggest the existence of an ABA-independent but interactive pathway acting via the dehydration-responsive element binding (DREB) 2A TF.

MeSH Terms
Abscisic Acid/metabolism Amino Acid Motifs Apoptosis/genetics,physiology Calcium/metabolism Cluster Analysis Cyclopentanes/metabolism Ethylenes/metabolism Gene Expression Profiling Hordeum/cytology,embryology,metabolism Lipid Metabolism MADS Domain Proteins/physiology Membrane Proteins/genetics,metabolism Oligonucleotide Array Sequence Analysis Oxylipins Peptide Hydrolases/genetics,metabolism,physiology Plant Proteins/genetics,metabolism Protein Kinases/physiology Seeds/genetics,growth & development,metabolism Signal Transduction Transcription Factors/genetics,metabolism
Chemicals
Cyclopentanes Ethylenes MADS Domain Proteins Membrane Proteins Oxylipins Plant Proteins Transcription Factors oleosin protein, Hordeum vulgare jasmonic acid Abscisic Acid ethylene Protein Kinases Peptide Hydrolases Calcium
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Sreenivasulu Nese
Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Gatersleben, D-06466, Germany.
Radchuk Volodymyr
Strickert Marc
Miersch Otto
Weschke Winfriede
Wobus Ulrich
Article Info
Journal
The Plant journal : for cell and molecular biology
Abbr.
Plant J
ISSN
0960-7412
Published
2006-07-00
Epub
2006-00-08
Pages
310-27
Language
English
Region
England
NLM ID
9207397
Subset
IM
Corrections
ErratumIn
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