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1. A silicon transporter gene required for healthy growth of rice on land

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

3. Polar localization of a rice silicon transporter requires isoleucine at both C- and N-termini as well as positively charged residues

6. A Golgi‐localized glycosyltransferase, <scp>OsGT14;1</scp> , is required for growth of both roots and shoots in rice

7. Changes in the Distribution of Pectin in Root Border Cells Under Aluminum Stress

8. <scp>NRAMP6</scp> and <scp>NRAMP1</scp> cooperatively regulate root growth and manganese translocation under manganese deficiency in Arabidopsis

9. A pericycle‐localized silicon transporter for efficient xylem loading in rice

10. A heavy metal P-type ATPase OsHMA4 prevents copper accumulation in rice grain

11. A GDSL‐motif esterase/acyltransferase/lipase is responsible for leaf water retention in barley

12. Effectiveness of Create ML in microscopy image classifications: a simple and inexpensive deep learning pipeline for non-data scientists

13. FE UPTAKE-INDUCING PEPTIDE1 maintains Fe translocation by controlling Fe deficiency response genes in the vascular tissue of Arabidopsis

14. Metalloid transporters and their regulation in plants

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

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

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

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

19. Buckwheat FeNramp5 Mediates High Manganese Uptake in Roots

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

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

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

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

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

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

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

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

28. A crucial role for a node-localized transporter, HvSPDT, in loading phosphorus into barley grains

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

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

31. Decrosslinking enables visualization of RNA-guided endonuclease-in situ labeling signals for DNA sequences in plant tissues

32. A transcription factor OsbHLH156 regulates Strategy II iron acquisition through localising IRO2 to the nucleus in rice

33. Boron uptake in rice is regulated post-translationally via a clathrin-independent pathway

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

35. Effectiveness of Create ML in microscopy image classifications: a simple and inexpensive deep learning pipeline for non-data scientists

36. 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

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

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

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

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

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

42. Chromosome dynamics visualized with an anti-centromeric histone H3 antibody in Allium.

43. Comparative genome-wide transcriptional analysis of Al-responsive genes reveals novel Al tolerance mechanisms in rice.

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

45. The Putative Peptide Gene FEP1 Regulates Iron Deficiency Response in Arabidopsis

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

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

49. Engineering rice with lower grain arsenic

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

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