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1. A phylogenetically conserved APETALA2/ETHYLENE RESPONSE FACTOR, ERF12, regulates Arabidopsis floral development

2. Clonal sector analysis and cell ablation confirm a function for DORNROESCHEN-LIKE in founder cells and the vasculature in Arabidopsis

3. Transcription of the WUSCHEL-RELATED HOMEOBOX 4 gene in Arabidopsis thaliana

4. Functional dissection of the DORNRÖSCHEN-LIKE enhancer 2 during embryonic and phyllotactic patterning

5. Specific chromatin changes mark lateral organ founder cells in the Arabidopsis inflorescence meristem

6. Histology versus phylogeny: Viewing plant embryogenesis from an evo-devo perspective

7. Histology versus phylogeny: Viewing plant embryogenesis from an evo-devo perspective

8. Stem Cell Regulation by Arabidopsis WOX Genes

9. The AP2-type transcription factors DORNRÖSCHEN and DORNRÖSCHEN-LIKE promote G1/S transition

10. Spatiotemporal control of axillary meristem formation by interacting transcriptional regulators

12. Cytokinin–auxin crosstalk in cell type specification

13. Arabidopsis floral phytomer development: auxin response relative to biphasic modes of organ initiation

14. WOX13-like genes are required for reprogramming of leaf and protoplast cells into stem cells in the moss Physcomitrella patens

15. The founder-cell transcriptome in the Arabidopsis apetala1 cauliflower inflorescence meristem

16. Symplesiomorphies in the<scp>WUSCHEL</scp>clade suggest that the last common ancestor of seed plants contained at least four independent stem cell niches

17. Stem Cell Fate versus Differentiation: the Missing Link

18. DORNRÖSCHEN, DORNRÖSCHEN-LIKE, and PUCHI redundantly control floral meristem identity and organ initiation in Arabidopsis

19. The invention of WUS-like stem cell-promoting functions in plants predates leptosporangiate ferns

20. Discrete Shoot and Root Stem Cell-Promoting WUS/WOX5 Functions Are an Evolutionary Innovation of Angiosperms

21. DORNRÖSCHEN is a direct target of the auxin response factor MONOPTEROS in the Arabidopsis embryo

22. BIM1, a bHLH protein involved in brassinosteroid signalling, controls Arabidopsis embryonic patterning via interaction with DORNRÖSCHEN and DORNRÖSCHEN-LIKE

23. WOX Gene Phylogeny in Poaceae: A Comparative Approach Addressing Leaf and Embryo Development

24. Transcription of the putative maize orthologue of the Arabidopsis DORNRÖSCHEN gene marks early asymmetry in the proembryo and during leaf initiation in the shoot apical meristem

25. Founder-cell-specific transcription of the DORNRÖSCHEN-LIKE promoter and integration of the auxin response

26. Nuclear import of the transcription factor SHOOT MERISTEMLESS depends on heterodimerization with BLH proteins expressed in discrete sub-domains of the shoot apical meristem of Arabidopsis thaliana

27. thick tassel dwarf1encodes a putative maize ortholog of theArabidopsis CLAVATA1leucine-rich repeat receptor-like kinase

28. Generation of dominant-negative effects on the heat shock response in Arabidopsis thaliana by transgenic expression of a chimaeric HSF1 protein fusion construct

29. Translational fusions with the engrailed repressor domain efficiently convert plant transcription factors into dominant-negative functions

30. The role ofDORNRÖSCHEN-LIKEin early floral organogenesis

31. Gene expression patterns in the maize caryopsis: clues to decisions in embryo and endosperm development

32. Transcriptional activation by the PHD finger is inhibited through an adjacent leucine zipper that binds 14-3-3 proteins

33. [Untitled]

34. The role of DORNROESCHEN (DRN) and DRN-LIKE (DRNL) in Arabidopsis embryonic patterning

35. The IBP genes of maize are expressed in non-meristematic, elongating cells of the seedling and in abortive floral organs

36. Live imaging of DORNRA-SCHEN and DORNRA-SCHEN-LIKE promoter activity reveals dynamic changes in cell identity at the microcallus surface of Arabidopsis embryonic suspensions

37. Transcription of theZea mays homeobox (ZmHox) genes is activated early in embryogenesis and restricted to meristems of the maize plant

38. DORNRÖSCHEN-LIKE expression marks Arabidopsis floral organ founder cells and precedes auxin response maxima

39. Patterning of the Maize Embryo and the Perspective of Evolutionary Developmental Biology

40. Plant development revolves around axes

41. The evolution of plant regulatory networks: what Arabidopsis cannot say for itself

42. The AP2 transcription factors DORNROSCHEN and DORNROSCHEN-LIKE redundantly control Arabidopsis embryo patterning via interaction with PHAVOLUTA

43. The shoot stem cell niche in angiosperms: expression patterns of WUS orthologues in rice and maize imply major modifications in the course of mono- and dicot evolution

44. Vectors with rare-cutter restriction enzyme sites for expression of open reading frames in transgenic plants

45. Pattern formation in the monocot embryo as revealed by NAM and CUC3 orthologues from Zea mays L

46. The maize duplicate genes narrow sheath1 and narrow sheath2 encode a conserved homeobox gene function in a lateral domain of shoot apical meristems

47. When negative is positive in functional genomics

48. The DORNROSCHEN/ENHANCER OF SHOOT REGENERATION1 gene of Arabidopsis acts in the control of meristem ccll fate and lateral organ development

49. The two homeodomains of the ZmHox2a gene from maize originated as an internal gene duplication and have evolved different target site specificities

50. ZmHox: a novel class of maize homeobox genes

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