bcmb 321

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Across
  1. 5. Protein complex degrades polyubiquitinated proteins.
  2. 6. The phase in the plant life cycle produces haploid spores.
  3. 9. The plant hormone promotes plant growth via cytokinesis.
  4. 11. The inactive form of PhyB.
  5. 12. Gene responsible for meristem formation.
  6. 13. Pfr promotes the degradation of these transcription factors.
  7. 15. Red and far red-light photoreceptor.
  8. 16. These cells divide and form two sperm cells that are stored in the pollen tube.
  9. 17. Plants grow toward or away from the light source.
  10. 19. The chromophores of this photoreceptor are FAD and pterin.
  11. 20. GAs are not transported in a ____ way.
  12. 22. Auxin exits the cytoplasm via this carrier.
  13. 23. These cells are located at the chalazal end of the embryo sac.
  14. 25. Plants continuously form new organs and tissues through this process.
  15. 27. The actions caused by blue light receptors are not ______.
  16. 28. The process in which two gametes fuse to form a zygote.
  17. 30. Auxin moves from apical end to _______end.
  18. 32. A gaseous hormone regulates stress responses.
Down
  1. 1. These two cells guide the pollen tube during fertilization.
  2. 2. The plant hormone promotes seed dormancy.
  3. 3. The expression of CLV3 inhibits _____.
  4. 4. Cells can differentiate into any type of cell.
  5. 7. This photoreceptor is responsible for stomatal opening and chloroplast movement.
  6. 8. The precursor of auxin.
  7. 9. Mutation in WUS cause no expression of _____.
  8. 10. The phase in the plant life cycle produces haploid gametes.
  9. 14. E3 ubiquitin ligase inhibits photomorphogenesis.
  10. 15. Light mediated seedling.
  11. 18. The receptor gene increases anthocyanin production.
  12. 21. A product of double fertilization.
  13. 24. The arrangement of leaves on meristem.
  14. 26. Receptor of GAs.
  15. 28. Chromophore of phototropin.
  16. 29. Auxin enters the cytoplasm via this co-transporter.
  17. 31. The part of flower stores and produces pollen.