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1. The rice LEC1-like transcription factor OsNF-YB9 interacts with SPK, an endosperm-specific sucrose synthase protein kinase, and functions in seed development.

2. Embryo CHH hypermethylation is mediated by RdDM and is autonomously directed in Brassica rapa.

3. The nucellus: between cell elimination and sugar transport.

4. Family plot: the impact of the endosperm and other extra-embryonic seed tissues on angiosperm zygotic embryogenesis.

5. Genetic Screens to Target Embryo and Endosperm Pathways in Arabidopsis and Maize.

6. Intra-Kernel Reallocation of Proteins in Maize Depends on VP1-Mediated Scutellum Development and Nutrient Assimilation.

7. EMB-7L is required for embryogenesis and plant development in maize involved in RNA splicing of multiple chloroplast genes.

8. Rice FLOURY ENDOSPERM10 encodes a pentatricopeptide repeat protein that is essential for the trans-splicing of mitochondrial nad1 intron 1 and endosperm development.

9. A stress-response-related inter-compartmental signalling pathway regulates embryonic cuticle integrity in Arabidopsis.

10. FERTILIZATION-INDEPENDENT SEED-Polycomb Repressive Complex 2 Plays a Dual Role in Regulating Type I MADS-Box Genes in Early Endosperm Development.

11. Auxin: a molecular trigger of seed development.

12. Defective Kernel 39 encodes a PPR protein required for seed development in maize.

13. Changes in mineral elements and starch quality of grains during the improvement of japonica rice cultivars.

14. Degree of pectin methyl esterification in endosperm cell walls is involved in embryo bending in Arabidopsis thaliana.

15. OsGCD1 is essential for rice fertility and required for embryo dorsal-ventral pattern formation and endosperm development.

16. The pentatricopeptide repeat protein EMP9 is required for mitochondrial ccmB and rps4 transcript editing, mitochondrial complex biogenesis and seed development in maize.

17. Embryology of Cardiopteris (Cardiopteridaceae, Aquifoliales), with emphasis on unusual ovule and seed development.

18. Rice caryopsis development II: Dynamic changes in the endosperm.

19. Seed size plasticity in response to embryonic lethality conferred by ectopic CYCD activation is dependent on plant architecture.

20. Endosperm and Nucellus Develop Antagonistically in Arabidopsis Seeds.

21. Disruption of endosperm development is a major cause of hybrid seed inviability between Mimulus guttatus and Mimulus nudatus.

22. The Dynamics of Transcript Abundance during Cellularization of Developing Barley Endosperm.

23. FLOURY ENDOSPERM7 encodes a regulator of starch synthesis and amyloplast development essential for peripheral endosperm development in rice.

24. Programmed cell death in seeds of angiosperms.

25. Activation of CYCD7;1 in the central cell and early endosperm overcomes cell-cycle arrest in the Arabidopsis female gametophyte, and promotes early endosperm and embryo development.

26. Do rice suspension-cultured cells treated with abscisic acid mimic developing seeds?

27. CLE19 expressed in the embryo regulates both cotyledon establishment and endosperm development in Arabidopsis.

28. Down-regulation of the cotton endo-1,4-β-glucanase gene KOR1 disrupts endosperm cellularization, delays embryo development, and reduces early seedling vigour.

29. A putative plant organelle RNA recognition protein gene is essential for maize kernel development.

30. Transcription factors SOD7/NGAL2 and DPA4/NGAL3 act redundantly to regulate seed size by directly repressing KLU expression in Arabidopsis thaliana.

31. The naked endosperm genes encode duplicate INDETERMINATE domain transcription factors required for maize endosperm cell patterning and differentiation.

32. The cereal starch endosperm development and its relationship with other endosperm tissues and embryo.

33. OsNF-YB1, a rice endosperm-specific gene, is essential for cell proliferation in endosperm development.

34. MYB118 represses endosperm maturation in seeds of Arabidopsis.

35. Rice fertilization-Independent Endosperm1 regulates seed size under heat stress by controlling early endosperm development.

36. The Theobroma cacao B3 domain transcription factor TcLEC2 plays a duel role in control of embryo development and maturation.

37. Central cell-derived peptides regulate early embryo patterning in flowering plants.

38. Endosperm breakdown in Arabidopsis requires heterodimers of the basic helix-loop-helix proteins ZHOUPI and INDUCER OF CBP EXPRESSION 1.

39. Embryo and endosperm, partners in seed development.

40. Functional delineation of rice MADS29 reveals its role in embryo and endosperm development by affecting hormone homeostasis.

41. Embryo defective12 encodes the plastid initiation factor 3 and is essential for embryogenesis in maize.

42. Functional genomics based understanding of rice endosperm development.

43. The Bsister MADS gene FST determines ovule patterning and development of the zygotic embryo and endosperm.

44. New insights into the variability of reproduction modes in European populations of Rubus subgen. Rubus: how sexual are polyploid brambles?

45. An Arabidopsis gene encoding a C2H2-domain protein with alternatively spliced transcripts is essential for endosperm development.

46. Embryo growth, testa permeability, and endosperm weakening are major targets for the environmentally regulated inhibition of Lepidium sativum seed germination by myrigalone A.

47. Parental genome imbalance in Brassica oleracea causes asymmetric triploid block.

48. Endosperm cellularization defines an important developmental transition for embryo development.

49. Embryology in Trithuria submersa (Hydatellaceae) and relationships between embryo, endosperm, and perisperm in early-diverging flowering plants.

50. Pleiotropy and its dissection through a metabolic gene Miniature1 (Mn1) that encodes a cell wall invertase in developing seeds of maize.

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