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1. Phytochrome-dependent responsiveness to root-derived cytokinins enables coordinated elongation responses to combined light and nitrate cues.

2. Local light signaling at the leaf tip drives remote differential petiole growth through auxin-gibberellin dynamics.

3. The bHLH network underlying plant shade-avoidance.

4. Three Auxin Response Factors Promote Hypocotyl Elongation.

5. Far-Red Light Detection in the Shoot Regulates Lateral Root Development through the HY5 Transcription Factor.

7. Interactions between auxin, microtubules and XTHs mediate green shade- induced petiole elongation in arabidopsis.

8. Antiphase light and temperature cycles affect PHYTOCHROME B-controlled ethylene sensitivity and biosynthesis, limiting leaf movement and growth of Arabidopsis.

9. Perception of low red:far-red ratio compromises both salicylic acid- and jasmonic acid-dependent pathogen defences in Arabidopsis.

10. Ethylene promotes hyponastic growth through interaction with ROTUNDIFOLIA3/CYP90C1 in Arabidopsis.

11. Low red/far-red ratios reduce Arabidopsis resistance to Botrytis cinerea and jasmonate responses via a COI1-JAZ10-dependent, salicylic acid-independent mechanism.

12. Auxin transport through PIN-FORMED 3 (PIN3) controls shade avoidance and fitness during competition.

13. Light quality-mediated petiole elongation in Arabidopsis during shade avoidance involves cell wall modification by xyloglucan endotransglucosylase/hydrolases.

14. Auxin and ethylene regulate elongation responses to neighbor proximity signals independent of gibberellin and della proteins in Arabidopsis.

15. DELLA protein function in growth responses to canopy signals.

16. Neighbor detection at the leaf tip adaptively regulates upward leaf movement through spatial auxin dynamics

17. Ethylene-induced differential petiole growth in Arabidopsis thaliana involves local microtubule reorientation and cell expansion

18. Perception of low red : Far-red ratio compromises both salicylic acid- and jasmonic acid-dependent pathogen defences in Arabidopsis

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