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1. LYSINE KETOGLUTARATE REDUCTASE TRANS-SPLICING RELATED 1 is involved in temperature-dependent root growth in rice

2. Role of a vacuolar iron transporter OsVIT2 in the distribution of iron to rice grains

3. Fine regulation system for distribution of boron to different tissues in rice

4. A transporter for delivering zinc to the developing tiller bud and panicle in rice

5. Effects of polygalacturonase overexpression on pectin distribution in the elongation zones of roots under aluminium stress

6. Breeding for low cadmium barley by introgression of a Sukkula-like transposable element

7. <scp>OsNRAMP1</scp> transporter contributes to cadmium and manganese uptake in rice

8. Diel magnesium fluctuations in chloroplasts contribute to photosynthesis in rice

9. Node-Localized Transporters of Phosphorus Essential for Seed Development in Rice

10. Plant Nutrition for Human Nutrition: Hints from Rice Research and Future Perspectives

11. The ZIP Transporter Family Member OsZIP9 Contributes To Root Zinc Uptake in Rice under Zinc-Limited Conditions

12. Cell-Type-Dependent but CME-Independent Polar Localization of Silicon Transporters in Rice

13. Plastic transport systems of rice for mineral elements in response to diverse soil environmental changes

14. Zinc transport in rice: how to balance optimal plant requirements and human nutrition

15. Bioimaging of multiple elements by high‐resolution <scp>LA</scp> ‐ <scp>ICP</scp> ‐ <scp>MS</scp> reveals altered distribution of mineral elements in the nodes of rice mutants

16. The tonoplast-localized transporter OsHMA3 plays an important role in maintaining Zn homeostasis in rice

17. OsPHT1;3 Mediates Uptake, Translocation, and Remobilization of Phosphate under Extremely Low Phosphate Regimes

18. A nodule‐localized phosphate transporter Gm <scp>PT</scp> 7 plays an important role in enhancing symbiotic N 2 fixation and yield in soybean

19. Lateral roots but not root hairs contribute to high uptake of manganese and cadmium in rice

20. Two metallothionein genes highly expressed in rice nodes are involved in distribution of Zn to the grain

21. Retrotransposon Insertion and DNA Methylation Regulate Aluminum Tolerance in European Barley Accessions

22. Functional characterization of an aluminum (Al)-inducible transcription factor, ART2, revealed a different pathway for Al tolerance in rice

23. Effective reduction of cadmium accumulation in rice grain by expressing OsHMA3 under the control of the OsHMA2 promoter

24. Engineering rice with lower grain arsenic

25. Preferential Distribution of Boron to Developing Tissues Is Mediated by the Intrinsic Protein OsNIP3

26. Structural basis for high selectivity of a rice silicon channel Lsi1

27. OsHKT1;5 mediates Na + exclusion in the vasculature to protect leaf blades and reproductive tissues from salt toxicity in rice

28. The Tonoplast-Localized Transporter MTP8.2 Contributes to Manganese Detoxification in the Shoots and Roots of Oryza sativa L

29. A Magnesium Transporter OsMGT1 Plays a Critical Role in Salt Tolerance in Rice

30. Vascular Cambium-Localized AtSPDT Mediates Xylem-to-Phloem Transfer of Phosphorus for Its Preferential Distribution in Arabidopsis

31. OsCASP1 Is Required for Casparian Strip Formation at Endodermal Cells of Rice Roots for Selective Uptake of Mineral Elements

32. A Vacuolar Phytosiderophore Transporter Alters Iron and Zinc Accumulation in Polished Rice Grains

33. Molecular Mechanism of Cadmium Accumulation in Rice

34. OsFRDL1expressed in nodes is required for distribution of iron to grains in rice

35. Isolation and characterization of a rice line with high Cd accumulation for potential use in phytoremediation

36. Oryza sativa H+ -ATPase (OSA) is Involved in the Regulation of Dumbbell-Shaped Guard Cells of Rice

37. A Cation-Chloride Cotransporter Gene Is Required for Cell Elongation and Osmoregulation in Rice

38. Functional Analysis of a MATE GeneOsFRDL2Revealed its Involvement in Al-Induced Secretion of Citrate, but a Lower Contribution to Al Tolerance in Rice

39. Silicon decreases both uptake and root-to-shoot translocation of manganese in rice

40. A member of cation diffusion facilitator family, MTP11, is required for manganese tolerance and high fertility in rice

41. Transport System of Mineral Elements in Rice

42. A <scp>GDSL</scp> ‐motif esterase/acyltransferase/lipase is responsible for leaf water retention in barley

43. In Silico Simulation Modeling Reveals the Importance of the Casparian Strip for Efficient Silicon Uptake in Rice Roots

44. OsNRT2.4 encodes a dual-affinity nitrate transporter and functions in nitrate-regulated root growth and nitrate distribution in rice

45. Silicon reduces cadmium accumulation by suppressing expression of transporter genes involved in cadmium uptake and translocation in rice

46. A Model of Silicon Dynamics in Rice: An Analysis of the Investment Efficiency of Si Transporters

47. Node-controlled allocation of mineral elements in Poaceae

48. ePro-ClearSee: a simple immunohistochemical method that does not require sectioning of plant samples

49. The node, a hub for mineral nutrient distribution in graminaceous plants

50. Overexpression of OsHMA3 enhances Cd tolerance and expression of Zn transporter genes in rice

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