Spatiotemporal Seed Development Analysis Provides Insight into Primary Dormancy Induction and Evolution of the Lepidium DELAY OF GERMINATION1 Genes

Autor(en): Graeber, Kai
Voegele, Antje
Buettner-Mainik, Annette
Sperber, Katja
Mummenhoff, Klaus 
Leubner-Metzger, Gerhard
Stichwörter: ABSCISIC-ACID; ARABIDOPSIS-THALIANA; DESICCATION TOLERANCE; ENDOSPERM RUPTURE; FLOWERING-TIME; FRUIT-DEVELOPMENT; GLOBAL ANALYSIS; LEPIDIUM-SATIVUM; MULTIPLE SEQUENCE ALIGNMENT; NATURAL VARIATION; Plant Sciences
Erscheinungsdatum: 2013
Herausgeber: OXFORD UNIV PRESS INC
Enthalten in: PLANT PHYSIOLOGY
Band: 161
Ausgabe: 4
Startseite: 1903
Seitenende: 1917
Zusammenfassung: 
Seed dormancy is a block to the completion of germination of an intact viable seed under favorable conditions and is an adaptive and agronomically important trait. Thus, elucidating conserved features of dormancy mechanisms is of great interest. The worldwide-distributed genus Lepidium (Brassicaceae) is well suited for cross-species comparisons investigating the origin of common or specific early-life-history traits. We show here that homologs of the seed dormancy-specific gene DELAY OF GERMINATION1 (DOG1) from Arabidopsis (Arabidopsis thaliana) are widespread in the genus Lepidium. The highly dormant Lepidium papillosum is a polyploid species and possesses multiple structurally diversified DOG1 genes (LepaDOG1), some being expressed in seeds. We used the largely elongated and well-structured infructescence of L. papillosum for studying primary dormancy induction during seed development and maturation with high temporal resolution. Using simultaneous germination assays and marker protein expression detection, we show that LepaDOG1 proteins are expressed in seeds during maturation prior to dormancy induction. Accumulation of LepaDOG1 takes place in seeds that gain premature germinability before and during the seed-filling stage and declines during the late maturation and desiccation phase when dormancy is induced. These analyses of the Lepidium DOG1 genes and their protein expression patterns highlight similarities and species-specific differences of primary dormancy induction mechanism(s) in the Brassicaceae.
ISSN: 00320889
DOI: 10.1104/pp.112.213298

Zur Langanzeige

Seitenaufrufe

4
Letzte Woche
2
Letzter Monat
2
geprüft am 09.06.2024

Google ScholarTM

Prüfen

Altmetric