Barley Grain Maturation and Germination: Metabolic Pathway and Regulatory Network Commonalities and Differences Highlighted by New MapMan/PageMan Profiling Tools

Созревание и прорастание зерна ячменя: общие черты и различия метаболических путей и регуляторных сетей, выявленные с помощью новых инструментов профилирования MapMan/PageMan
Nese Sreenivasulu, Björn Usadel, Andreas Winter, Volodymyr Radchuk, Uwe Scholz, Nils Stein, Winfriede Weschke, Marc Strickert, Timothy J. Close, Mark Stitt, Andreas Graner, Ulrich Wobus
2008-02-15

MapMan/PageMan profilingbarley grain maturationgibberellin and abscisic acid signalingseed germinationtranscriptome analysis
Plant seeds prepare for germination already during seed maturation. We performed a detailed transcriptome analysis of barley (Hordeum vulgare) grain maturation, desiccation, and germination in two tissue fractions (starchy endosperm/aleurone and embryo/scutellum) using the Affymetrix Barley1 GeneChip. To aid data evaluation, Arabidopsis thaliana MapMan and PageMan tools were adapted to barley. The analyses allow a number of conclusions: (1) Cluster analysis revealed a smooth transition in transcription programs between late seed maturation and germination within embryo tissues, but not in the endosperm/aleurone. (2) More than 12,000 transcripts are stored in the embryo of dry barley grains, many of which are presumably activated during germination. (3) Transcriptional activation of storage reserve mobilization events occurs at an early stage of germination, well before radicle protrusion. (4) Key genes of gibberellin (GA) biosynthesis are already active during grain maturation at a time when abscisic acid peaks suggesting the formation of an endogenous store of GA in the aleurone. This GA probably acts later during germination in addition to newly synthesized GA. (5) Beside the well-known role of GA in gene activation during germination spatiotemporal expression data and cis-element searches in homologous rice promoters confirm an equally important gene-activating role of abscisic acid during this developmental period. The respective regulatory webs are linked to auxin and ethylene controlled networks. In summary, new bioinformatics PageMan and MapMan tools developed in barley have been successfully used to investigate in detail the transcriptome relationships between seed maturation and germination in an important crop plant.
1
Barley MapMan and PageMan tools were adapted from Arabidopsis to enable detailed transcriptome profiling across grain maturation, desiccation, and germination.
2
Dry barley embryos store more than 12,000 transcripts, many of which are likely activated during germination.
3
Embryo transcription programs transition smoothly from late maturation to germination, whereas endosperm/aleurone transcription shows no comparable continuity.
4
Gibberellin biosynthesis begins during maturation despite peak abscisic acid, while abscisic acid also has a major gene-activating role during germination alongside gibberellin, auxin, and ethylene networks.
5
Storage-reserve mobilization genes are transcriptionally activated early in germination, before radicle protrusion.

Barley (Hordeum vulgare) grains during maturation, desiccation, and germination, including starchy endosperm/aleurone and embryo/scutellum tissues

Transcriptome relationships and regulatory mechanisms linking maturation and germination, including metabolic pathway activation and hormone-regulated gene expression

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2008-02-15
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Nese Sreenivasulu
Björn Usadel
Andreas Winter
Volodymyr Radchuk
Uwe Scholz
Nils Stein
Winfriede Weschke
Marc Strickert
Timothy J. Close
Mark Stitt
Andreas Graner
Ulrich Wobus
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