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19 results on '"Bouain N"'

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1. PDR9 allelic variation and MYB63 modulate nutrient-dependent coumarin homeostasis in Arabidopsis.

2. ARSK1 activates TORC1 signaling to adjust growth to phosphate availability in Arabidopsis.

3. Towards a Discovery of a Zinc-Dependent Phosphate Transport Road in Plants.

4. Plant growth stimulation by high CO 2 depends on phosphorus homeostasis in chloroplasts.

5. Interdependent iron and phosphorus availability controls photosynthesis through retrograde signaling.

6. Plant resilience to phosphate limitation: current knowledge and future challenges.

7. Interplay Between Silicon and Iron Signaling Pathways to Regulate Silicon Transporter Lsi1 Expression in Rice.

8. Systems genomics approaches provide new insights into Arabidopsis thaliana root growth regulation under combinatorial mineral nutrient limitation.

9. Getting to the Root of Plant Mineral Nutrition: Combinatorial Nutrient Stresses Reveal Emergent Properties.

10. Natural allelic variation of the AZI1 gene controls root growth under zinc-limiting condition.

11. Individual versus Combinatorial Effects of Silicon, Phosphate, and Iron Deficiency on the Growth of Lowland and Upland Rice Varieties.

12. LPCAT1 controls phosphate homeostasis in a zinc-dependent manner.

13. Phosphate, phytate and phytases in plants: from fundamental knowledge gained in Arabidopsis to potential biotechnological applications in wheat.

14. Phosphorus and Iron Deficiencies Influences Rice Shoot Growth in an Oxygen Dependent Manner: Insight from Upland and Lowland Rice.

15. Recent Advances in Understanding the Molecular Mechanisms Regulating the Root System Response to Phosphate Deficiency in Arabidopsis.

16. The Involvement of OsPHO1;1 in the Regulation of Iron Transport Through Integration of Phosphate and Zinc Deficiency Signaling.

17. Over-expression of the bacterial phytase US417 in Arabidopsis reduces the concentration of phytic acid and reveals its involvement in the regulation of sulfate and phosphate homeostasis and signaling.

18. Phosphate and zinc transport and signalling in plants: toward a better understanding of their homeostasis interaction.

19. Phosphate/zinc interaction analysis in two lettuce varieties reveals contrasting effects on biomass, photosynthesis, and dynamics of Pi transport.

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