32 results on '"Soppe, Wim J.J."'
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2. Transcriptome and Degradome Sequencing Reveals Dormancy Mechanisms of Cunninghamia lanceolata Seeds
3. Sequence Polymorphisms at the REDUCED DORMANCY5 Pseudophosphatase Underlie Natural Variation in Arabidopsis Dormancy
4. Arabidopsis Paired Amphipathic Helix Proteins SNL1 and SNL2 Redundantly Regulate Primary Seed Dormancy via Abscisic Acid—Ethylene Antagonism Mediated by Histone Deacetylation
5. The Time Required for Dormancy Release in Arabidopsis Is Determined by DELAY OF GERMINATION1 Protein Levels in Freshly Harvested Seeds
6. The Conserved Splicing Factor SUA Controls Alternative Splicing of the Developmental Regulator ABI3 in Arabidopsis
7. FLOWERING INITIATION AND METHYLATION OF DNA IN ARABIDOPSIS
8. Ectopic expression of the Arabidopsis florigen gene FLOWERING LOCUS T in seeds enhances seed dormancy via the GA and DOG1 pathways
9. The absence of histone H2B monoubiquitination in the Arabidopsis hub1 (rdo4) mutant reveals a role for chromatin remodeling in seed dormancy ([W]) ([OA])
10. Seed dormancy back on track; its definition and regulation by DOG1
11. DNA methylation controls histone H3 lysine 9 methylation and heterochromatin assembly in Arabidopsis
12. REVERSAL OF RDO5 1, a Homolog of Rice Seed Dormancy4, Interacts with bHLH57 and Controls ABA Biosynthesis and Seed Dormancy in Arabidopsis
13. Control of FWA gene silencing in Arabidopsis thaliana by SINE-related direct repeats
14. Ectopic expression of the Arabidopsis florigen gene FLOWERING LOCUST in seeds enhances seed dormancy via the GA and DOG1 pathways.
15. ETR1/RDO3 Regulates Seed Dormancy by Relieving the Inhibitory Effect of the ERF12-TPL Complex on DELAY OF GERMINATION1 Expression
16. Redox Changes During the Cell Cycle in the Embryonic Root Meristem ofArabidopsis thaliana
17. Alternative splicing enhances transcriptome complexity in desiccating seeds
18. Redox Changes During the Cell Cycle in the Embryonic Root Meristem of Arabidopsis thaliana.
19. Secondary dormancy inBrassica napusis correlated with enhancedBnaDOG1transcript levels
20. DELAY OF GERMINATION1 requires PP2C phosphatases of the ABA signalling pathway to control seed dormancy.
21. REDUCED DORMANCY5Encodes a Protein Phosphatase 2C That Is Required for Seed Dormancy inArabidopsis
22. ArabidopsisPaired Amphipathic Helix Proteins SNL1 and SNL2 Redundantly Regulate Primary Seed Dormancy via Abscisic Acid–Ethylene Antagonism Mediated by Histone Deacetylation
23. Control and consequences of chromatin compaction during seed maturation inArabidopsis thaliana
24. The Absence of Histone H2B Monoubiquitination in theArabidopsis hub1(rdo4) Mutant Reveals a Role for Chromatin Remodeling in Seed Dormancy
25. Secondary dormancy in Brassica napus is correlated with enhanced BnaDOG1 transcript levels.
26. Control of FWA gene silencing in Arabidopsis thaliana by SINE-related direct repeats
27. The Late Flowering Phenotype of fwa Mutants Is Caused by Gain-of-Function Epigenetic Alleles of a Homeodomain Gene
28. REDUCED DORMANCY5 Encodes a Protein Phosphatase 2C That Is Required for Seed Dormancy in Arabidopsis.
29. Time Required for Dormancy Release in Arabidopsis Is Determined by DELAY OF GERMINATION1 Protein Levels in Freshly Harvested Seeds.
30. Conserved Splicing Factor SUA Controls Alternative Splicing of the Developmental Regulator ABI3 in Arabidopsis.
31. Histone modifications in Arabidopsis--high methylation of H3 lysine 9 is dispensable for constitutive heterochromatin.
32. Control and consequences of chromatin compaction during seed maturation in Arabidopsis thaliana
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