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1. Extensive de novo activity stabilizes epigenetic inheritance of CG methylation in Arabidopsis transposons

2. Histone H1 prevents non-CG methylation-mediated small RNA biogenesis in Arabidopsis heterochromatin

3. DNA methylation is maintained with high fidelity in the honey bee germline and exhibits global non-functional fluctuations during somatic development

4. An evolutionary case for functional gene body methylation in plants and animals

5. DDM1 and Lsh remodelers allow methylation of DNA wrapped in nucleosomes

6. Deposition of histone variant H2A.Z within gene bodies regulates responsive genes.

7. EMF1 and PRC2 cooperate to repress key regulators of Arabidopsis development.

8. Genetic and functional diversification of small RNA pathways in plants.

9. Unified establishment and epigenetic inheritance of DNA methylation through cooperative MET1 activity

10. Extensive de novo activity stabilizes epigenetic inheritance of CG methylation in Arabidopsis transposons

13. DNA methylation is maintained with high fidelity in the honey bee germline and exhibits global non-functional fluctuations during somatic development

14. Divergence among rice cultivars reveals roles for transposition and epimutation in ongoing evolution of genomic imprinting

15. Epigenetic inheritance mediates phenotypic diversity in natural populations

17. FACT complex is required for DNA demethylation at heterochromatin during reproduction in Arabidopsis

18. DNA demethylation by ROS1a in rice vegetative cells promotes methylation in sperm

19. Mechanism for DNA transposons to generate introns on genomic scales

20. DNA methylation and histone H1 cooperatively repress transposable elements and aberrant intragenic transcripts

22. Evolution and function of genomic imprinting in plants

23. Maximum DNA Methylation Fidelity in the Germline Tolerates Global Non-Functional Gene Body Methylation Dynamics During Development

25. The FACT complex is required for DNA demethylation at heterochromatin during reproduction in Arabidopsis

26. DNA Methylation and Histone H1 Jointly Repress Transposable Elements and Aberrant Intragenic Transcripts

27. DNA methylation as a system of plant genomic immunity

28. Dnmt1-Independent CG Methylation Contributes to Nucleosome Positioning in Diverse Eukaryotes

29. Imprinted expression of genes and small RNA is associated with localized hypomethylation of the maternal genome in rice endosperm

30. DDM1 and Lsh remodelers allow methylation of DNA wrapped in nucleosomes

31. Arabidopsis male sexual lineage exhibits more robust maintenance of CG methylation than somatic tissues

32. DNA demethylation is initiated in the central cells of Arabidopsis and rice

33. Regulation of biological accuracy, precision, and memory by plant chromatin organization

34. Regulation of imprinted gene expression in Arabidopsis endosperm

35. Histone H2A.Z and DNA methylation are mutually antagonistic chromatin marks

36. DNA demethylation in the Arabidopsis genome

37. Epigenetic inheritance in Arabidopsis: selective silence

38. Role of the DRM and CMT3 Methyltransferases in RNA-Directed DNA Methylation

39. Genetic and cellular networks regulating cell fate at the shoot apical meristem

40. The nucleosome remodeler DDM1 allows DNA methyltransferases to access H1-containing heterochromatin

41. DNA methylation, H2A.Z, and the regulation of constitutive expression

42. Active DNA demethylation in plant companion cells reinforces transposon methylation in gametes

43. Balancing parental contributions in plant embryonic gene activation

44. Evolution of eukaryotic DNA methylation and the pursuit of safer sex

45. Genome-wide evolutionary analysis of eukaryotic DNA methylation

46. S05-02. Regulation of gene imprinting in arabidopsis

47. Genome-wide demethylation of Arabidopsis endosperm

48. The evolving functions of DNA methylation

49. Genome-wide analysis of DNA methylation patterns

50. DNA demethylation by the base‐excision DNA repair pathway in Arabidopsis

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