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1. Parameters of Starch Granule Genesis in Chloroplasts of Arabidopsis thaliana

2. Reduced starch granule number per chloroplast in the dpe2/phs1 mutant is dependent on initiation of starch degradation.

3. Reduction of the cytosolic phosphoglucomutase in Arabidopsis reveals impact on plant growth, seed and root development, and carbohydrate partitioning.

4. Correction of frameshift mutations in the atpB gene by translational recoding in chloroplasts of Oenothera and tobacco

5. Identification of Two Arabidopsis thaliana Plasma Membrane Transporters Able to Transport Glucose 1-Phosphate

6. A photosynthesis operon in the chloroplast genome drives speciation in evening primroses

7. Knock-down of the plastid-encoded acetyl-CoA carboxylase gene uncovers functions in metabolism and development

8. Correction of frameshift mutations in the atpB gene by translational recoding in chloroplasts of Oenothera and tobacco

9. Starch Synthase 4 and Plastidal Phosphorylase Differentially Affect Starch Granule Number and Morphology

10. Chloroplast nucleoids are highly dynamic in ploidy, number, and structure during angiosperm leaf development

11. EARLY STARVATION1 specifically affects the phosphorylation action of starch-related dikinases

13. Reduction of the plastidial phosphorylase in potato (Solanum tuberosum L.) reveals impact on storage starch structure during growth at low temperature

14. Reduced starch granule number per chloroplast in the dpe2/phs1 mutant is dependent on initiation of starch degradation

15. Reduction of the cytosolic phosphoglucomutase in Arabidopsis reveals impact on plant growth, seed and root development, and carbohydrate partitioning

16. Loss of cytosolic phosphoglucose isomerase affects carbohydrate metabolism in leaves and is essential for fertility of arabidopsis

17. The first Russian case of pregnancy after orthotopic transplantation of vitrified ovarian tissue

18. Carbon transitions from either Calvin cycle or transitory starch to heteroglycans as revealed by (14) C-labeling experiments using protoplasts from Arabidopsis

19. Starch-related carbon fluxes in roots and leaves of Arabidopsis thaliana

20. Starch-related cytosolic heteroglycans in roots from Arabidopsis thaliana

21. Glucose-1-phosphate transport into protoplasts and chloroplasts from leaves of Arabidopsis

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