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1. Rice circadian clock regulator Nhd1 controls the expression of the sucrose transporter gene OsSUT1 and impacts carbon–nitrogen balance

2. The transcription factor OsWRKY10 inhibits phosphate uptake via suppressing OsPHT1;2 expression under phosphate-replete conditions in rice

3. Knockout of amino acid transporter gene OsLHT1 accelerates leaf senescence and enhances resistance to rice blast fungus

4. Effect of reducing nitrite levels on the physicochemical, microbiological, proteolytic, and volatile profile of Cantonese sausage

6. Rice circadian clock regulator Nhd1 controls sucrose transporter OsSUT1 expression and impacts carbon-nitrogen balance

7. Two ADP‐glucose pyrophosphorylase subunits, OsAGPL1 and OsAGPS1, modulate phosphorus homeostasis in rice

8. The rice transcription factor Nhd1 regulates root growth and nitrogen uptake by activating nitrogen transporters

9. OsWRKY21 and OsWRKY108 function redundantly to promote phosphate accumulation through maintaining the constitutive expression of OsPHT1;1 under phosphate‐replete conditions

10. Oryza sativa Lysine‐Histidine‐type Transporter 1 functions in root uptake and root‐to‐shoot allocation of amino acids in rice

11. OsNAR2.1 Interaction with OsNIT1 and OsNIT2 Functions in Root-growth Responses to Nitrate and Ammonium

12. The rice phosphate transporter OsPHT1;7 plays a dual role in phosphorus redistribution and anther development

13. The role of nitric oxide in the mechanism of lactic acid bacteria substituting for nitrite

14. Application of Weissella cibaria X31 or Weissella confusa L2 as a starter in low nitrite dry-fermented sausages

15. Rice OsLHT1 Functions in Leaf-to-Panicle Nitrogen Allocation for Grain Yield and Quality

16. Maintenance of phosphate homeostasis and root development are coordinately regulated by MYB1, an R2R3-type MYB transcription factor in rice

17. The OsAMT1.1 gene functions in ammonium uptake and ammonium–potassium homeostasis over low and high ammonium concentration ranges

18. Nitrogen Mediates Flowering Time and Nitrogen Use Efficiency via Floral Regulators in Rice

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

20. Rice nitrate transporter OsNPF2.4 functions in low-affinity acquisition and long-distance transport

21. Alteration of nutrient allocation and transporter genes expression in rice under N, P, K, and Mg deficiencies

22. Improving rice tolerance to potassium deficiency by enhancing OsHAK16p:WOX11-controlled root development

23. Phosphate transporter OsPht1;8 in rice plays an important role in phosphorus redistribution from source to sink organs and allocation between embryo and endosperm of seeds

24. Genome-wide investigation and expression analysis suggest diverse roles and genetic redundancy of Pht1 family genes in response to Pi deficiency in tomato

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