126 results on '"Soppe, Wim J. J."'
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2. Seed dormancy back on track; its definition and regulation by DOG1
3. The Arabidopsis pre‐mRNA 3′ end processing related protein FIP1 promotes seed dormancy via the DOG1 and ABA pathways
4. Epigenetic Signalling During the Life of Seeds
5. "REDUCED DORMANCY5" Encodes a Protein Phosphatase 2C That Is Required for Seed Dormancy in Arabidopsis
6. The Arabidopsispre‐mRNA 3′ end processing related protein FIP1 promotes seed dormancy via the DOG1 and ABA pathways.
7. Seed maturation in Arabidopsis thaliana is characterized by nuclear size reduction and increased chromatin condensation
8. Natural Modifiers of Seed Longevity in the Arabidopsis Mutants Abscisic Acid Insensitive3-5 (Abi3-5) and Leafy Cotyledon1-3 (Lec1-3)
9. Molecular Networks Regulating Arabidopsis Seed Maturation, After-Ripening, Dormancy and Germination
10. The Absence of Histone H2B Monoubiquitination in the Arabidopsis hub1 (rdo4) Mutant Reveals a Role for Chromatin Remodeling in Seed Dormancy
11. HISTONE DEACETYLASE 9 represses seedling traits in Arabidopsis thaliana dry seeds
12. The Diverse Roles of FLOWERING LOCUS C in Annual and Perennial Brassicaceae Species
13. Epigenetic Signalling During the Life of Seeds
14. Chromatin Dynamics During Seed Dormancy
15. The Diverse Roles of FLOWERING LOCUS C in Annual and Perennial Brassicaceae Species
16. Factors affecting the inhibition by antisense RNA of granule-bound starch synthase gene expression in potato
17. Field evaluation of transgenic potato plants expressing an antisense granule-bound starch synthase gene: increase of the antisense effect during tuber growth
18. Histone modifications in Arabidopsis – high methylation of H3 lysine 9 is dispensable for constitutive heterochromatin
19. Dynamic hydrolase labelling as a marker for seed quality in Arabidopsis seeds
20. Seed traits are pleiotropically regulated by the flowering time gene PERPETUAL FLOWERING 1 ( PEP1 ) in the perennial Arabis alpina
21. Seed traits are pleiotropically regulated by the flowering time gene PERPETUAL FLOWERING 1 (PEP1) in the perennial Arabis alpina
22. Dynamic hydrolase labelling as a marker for seed quality in Arabidopsis seeds
23. DELAY OF GERMINATION1 requires PP2C phosphatases of the ABA signalling pathway to control seed dormancy
24. Arabidopsis seed germination speed is controlled by SNL histone deacetylase-binding factor-mediated regulation of AUX1
25. Alternative splicing enhances transcriptome complexity in desiccating seeds
26. Identification of the Arabidopsis REDUCED DORMANCY 2 gene uncovers a role for the polymerase associated factor 1 complex in seed dormancy
27. Seed Dormancy in Arabidopsis Requires Self-Binding Ability of DOG1 Protein and the Presence of Multiple Isoforms Generated by Alternative Splicing
28. Transcriptome and Degradome Sequencing Reveals Dormancy Mechanisms of Cunninghamia lanceolata Seeds.
29. Sequence Polymorphisms at the REDUCED DORMANCY5 Pseudophosphatase Underlie Natural Variation in Arabidopsis Dormancy.
30. Molecular mechanisms of seed dormancy
31. A novel role for histone methyltransferase KYP/SUVH4 in the control ofArabidopsisprimary seed dormancy
32. DOG1 expression is predicted by the seed-maturation environment and contributes to geographical variation in germination in Arabidopsis thaliana
33. Natural modifiers of seed longevity in the Arabidopsis mutantsabscisic acid insensitive3‐5(abi3‐5) andleafy cotyledon1‐3(lec1‐3)
34. Chromatin Dynamics During Seed Dormancy.
35. Histone modifications inArabidopsis- high methylation of H3 lysine 9 is dispensable for constitutive heterochromatin
36. HISTONE DEACETYLASE 9 represses seedling traits in Arabidopsis thaliana dry seeds.
37. A novel role for histone methyltransferase KYP/SUVH4 in the control of Arabidopsis primary seed dormancy.
38. Identification of the Arabidopsis REDUCED DORMANCY 2 Gene Uncovers a Role for the Polymerase Associated Factor 1 Complex in Seed Dormancy.
39. The Absence of Histone H2B Monoubiquitination in the Arabidopsis hub1 (rdo4) Mutant Reveals a Role for Chromatin Remodeling in Seed Dormancy.
40. DNA methylation controls histone H3 lysine 9 methylation and heterochromatin assembly in Arabidopsis.
41. The early-flowering mutant efs is involved in the autonomous promotion pathway of Arabidopsis thaliana
42. The MKK3-MPK7 cascade phosphorylates ERF4 and promotes its rapid degradation to release seed dormancy in Arabidopsis.
43. Ectopic expression of the Arabidopsis florigen gene FLOWERING LOCUS T in seeds enhances seed dormancy via the GA and DOG1 pathways.
44. REVERSAL OF RDO5 1, a Homolog of Rice Seed Dormancy4, Interacts with bHLH57 and Controls ABA Biosynthesis and Seed Dormancy in Arabidopsis.
45. ETR1/RDO3 Regulates Seed Dormancy by Relieving the Inhibitory Effect of the ERF12-TPL Complex on DELAY OF GERMINATION1 Expression.
46. Redox Changes During the Cell Cycle in the Embryonic Root Meristem of Arabidopsis thaliana.
47. Arabidopsis paired amphipathic helix proteins SNL1 and SNL2 redundantly regulate primary seed dormancy via abscisic acid-ethylene antagonism mediated by histone deacetylation.
48. The time required for dormancy release in Arabidopsis is determined by DELAY OF GERMINATION1 protein levels in freshly harvested seeds.
49. Control and consequences of chromatin compaction during seed maturation in Arabidopsis thaliana.
50. The conserved splicing factor SUA controls alternative splicing of the developmental regulator ABI3 in Arabidopsis.
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