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  1. Isolation and analysis of a stromule-overproducing Arabidopsis mutant suggest the role of PARC6 in plastid morphology maintenance in the leaf epidermis
  2. The Arabidopsis minD mutation causes aberrant FtsZ1 ring placement and moderate heterogeneity of chloroplasts in the leaf epidermis
  3. The Arabidopsis minE mutation causes new plastid and FtsZ1 localization phenotypes in the leaf epidermis
  4. Visualization of plastid movement in the pollen tube ofArabidopsis thaliana
  5. Regulation of leucoplast morphology in roots
  6. Chemical induction of rapid and reversible plastid filamentation in Arabidopsis thaliana roots
  7. Involvement ofAtMinE1in Plastid Morphogenesis in Various Tissues ofArabidopsis thaliana
  8. Further Evaluation of the Localization and Functionality of Hemagglutinin Epitope- and Fluorescent Protein-Tagged AtMinD1 inArabidopsis thaliana
  9. Live Imaging of Chloroplast FtsZ1 Filaments, Rings, Spirals, and Motile Dot Structures in the AtMinE1 Mutant and Overexpressor of Arabidopsis thaliana
  10. The Assembly of the FtsZ Ring at the Mid-Chloroplast Division Site Depends on a Balance Between the Activities of AtMinE1 and ARC11/AtMinD1
  11. The leaf morphologies of the subtropical rheophyte Solenogyne mikadoi and its temperate relative S. bellioides (Asteraceae) are affected differently by plant hormones and their biosynthesis inhibitors
  12. Two minD Genes in Physcomitrella patens Are Functionally Redundant
  13. A Chloroplast Protein Homologous to the Eubacterial Topological Specificity Factor MinE Plays a Role in Chloroplast Division
  14. Reduced Expression of the Arabidopsis minE Gene Affects Size and Number of Chloroplasts.
  15. Delta-9 fatty acid desaturase gene containing a carboxyl-terminal cytochrome b5 domain from the red alga Cyanidioschyzon merolae
  16. Checkpoint control on mitochondrial division inCyanidioschyzon merolae