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Your search keyword '"Etiolation radiation effects"' showing total 23 results

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23 results on '"Etiolation radiation effects"'

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1. The miR396-GRFs Module Mediates the Prevention of Photo-oxidative Damage by Brassinosteroids during Seedling De-Etiolation in Arabidopsis.

2. Light and Abscisic Acid Coordinately Regulate Greening of Seedlings.

3. Red and blue light differentially impact retrograde signalling and photoprotection in rice.

4. Regulation of Sugar and Storage Oil Metabolism by Phytochrome during De-etiolation.

5. Deetiolation Enhances Phototropism by Modulating NON-PHOTOTROPIC HYPOCOTYL3 Phosphorylation Status.

6. The Transcription Factors TCP4 and PIF3 Antagonistically Regulate Organ-Specific Light Induction of SAUR Genes to Modulate Cotyledon Opening during De-Etiolation in Arabidopsis.

7. Inhibition of TOR Represses Nutrient Consumption, Which Improves Greening after Extended Periods of Etiolation.

8. Phot2-regulated relocation of NPH3 mediates phototropic response to high-intensity blue light in Arabidopsis thaliana.

9. Ascorbate-mediated regulation of growth, photoprotection, and photoinhibition in Arabidopsis thaliana.

10. Dynamic interplay between photodamage and photoprotection in photosystem II.

11. EIN3 and PIF3 Form an Interdependent Module That Represses Chloroplast Development in Buried Seedlings.

12. Light behind the curtain: photoregulation of nuclear architecture and chromatin dynamics in plants.

13. Light regulation of mitochondrial alternative oxidase pathway during greening of etiolated wheat seedlings.

14. Ultraviolet radiation induces stress in etiolated Landoltia punctata, as evidenced by the presence of alanine, a universal stress signal: a ¹⁵N NMR study.

15. Arabidopsis DE-ETIOLATED1 represses photomorphogenesis by positively regulating phytochrome-interacting factors in the dark.

16. Effect of low-intensity white light mediated de-etiolation on the biosynthesis of polyphenols in tea seedlings.

17. UV-B inhibition of hypocotyl growth in etiolated Arabidopsis thaliana seedlings is a consequence of cell cycle arrest initiated by photodimer accumulation.

18. Blue light-induced proteomic changes in etiolated Arabidopsis seedlings.

19. Light induces jasmonate-isoleucine conjugation via OsJAR1-dependent and -independent pathways in rice.

20. Arabidopsis VQ MOTIF-CONTAINING PROTEIN29 represses seedling deetiolation by interacting with PHYTOCHROME-INTERACTING FACTOR1.

21. Both PHYTOCHROME RAPIDLY REGULATED1 (PAR1) and PAR2 promote seedling photomorphogenesis in multiple light signaling pathways.

22. Phototropin 1 and dim-blue light modulate the red light de-etiolation response.

23. Heat shock-induced fluctuations in clock and light signaling enhance phytochrome B-mediated Arabidopsis deetiolation.

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