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1. Anthoceros genomes illuminate the origin of land plants and the unique biology of hornworts

2. The Physcomitrella patens chromosome‐scale assembly reveals moss genome structure and evolution

4. Genetic Analysis of Physcomitrella patens Identifies ABSCISIC ACID NON-RESPONSIVE, a Regulator of ABA Responses Unique to Basal Land Plants and Required for Desiccation Tolerance

8. The Physcomitrella genome reveals evolutionary insights into the conquest of land by plants

13. Genomes and Databases

19. The Physcomitrella Genome Reveals Evolutionary Insights into the Conquest of Land by Plants

27. Anthoceros genomes illuminate the origin of land plants and the unique biology of hornworts

28. Anthoceros genomes illuminate the origin of land plants and the unique biology of hornworts

33. CLAVATA Was a Genetic Novelty for the Morphological Innovation of 3D Growth in Land Plants

39. CLAVATA was a genetic novelty for the morphological innovation of 3D growth in land plants

42. A ligand-independent origin of abscisic acid perception.

43. CLAVATA Was a Genetic Novelty for the Morphological Innovation of 3D Growth in Land Plants

46. MRE11 and RAD50, but not NBS1, are essential for gene targeting in the moss Physcomitrella patens

47. Anthocerosgenomes illuminate the origin of land plants and the unique biology of hornworts

48. Chapter Eight: Evolution of ABA signaling pathways.

49. Genetic Analysis of Physcomitrella patens Identifies ABSCISIC ACID NON-RESPONSIVE, a Regulator of ABA Responses Unique to Basal Land Plants and Required for Desiccation Tolerance

50. Temporal and Spatial Determination of Germin Biosynthesis in Wheat Tissues

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