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1. Cryptochromes are the dominant photoreceptors mediating heliotropic responses of Arabidopsis inflorescences.

2. Trading direct for indirect defense? Phytochrome B inactivation in tomato attenuates direct anti-herbivore defenses whilst enhancing volatile-mediated attraction of predators.

3. Fruit-localized photoreceptors increase phenolic compounds in berry skins of field-grown Vitis vinifera L. cv. Malbec.

4. Phytochrome B increases drought tolerance by enhancing ABA sensitivity in Arabidopsis thaliana.

5. Phytochrome A increases tolerance to high evaporative demand.

6. Phototropins but not cryptochromes mediate the blue light-specific promotion of stomatal conductance, while both enhance photosynthesis and transpiration under full sunlight.

7. Melatonin levels, determined by LC-ESI-MS/MS, fluctuate during the day/night cycle in Vitis vinifera cv Malbec: evidence of its antioxidant role in fruits.

8. Phytochrome B enhances photosynthesis at the expense of water-use efficiency in Arabidopsis.

9. PHYTOCHROME KINASE SUBSTRATE4 modulates phytochrome-mediated control of hypocotyl growth orientation.

10. PHYTOCHROME KINASE SUBSTRATE1 regulates root phototropism and gravitropism.

11. Promotion of photomorphogenesis by COP1.

12. A growth regulatory loop that provides homeostasis to phytochrome a signaling.

13. Increased phytochrome B alleviates density effects on tuber yield of field potato crops.

14. Light, phytochrome signalling and photomorphogenesis in Arabidopsis.

15. Brassinosteroid mutants uncover fine tuning of phytochrome signaling.

16. Ultraviolet B radiation enhances a phytochrome-B-mediated photomorphogenic response in Arabidopsis.

17. Functional significance and induction by solar radiation of ultraviolet-absorbing sunscreens in field-grown soybean crops.

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