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1. Reveal the kernel dehydration mechanisms in maize based on proteomic and metabolomic analysis

2. QTL mapping for plant height and ear height using bi-parental immortalized heterozygous populations in maize

3. Maize Autophagy-Related Protein ZmATG3 Confers Tolerance to Multiple Abiotic Stresses

4. Time-resolved multiomics analysis of the genetic regulation of maize kernel moisture

5. Performance and stability of yield in response to plant density, year and location in maize hybrids of Northwest China

6. Genome-Wide Association Study for Maize Hybrid Performance in a Typical Breeder Population

7. Identification of the Maize LEA Gene Family and Its Relationship with Kernel Dehydration

8. Characterization of the Isocitrate Dehydrogenase Gene Family and Their Response to Drought Stress in Maize

9. Genome-Wide Association Analysis for Candidate Genes Contributing to Kernel-Related Traits in Maize

10. Genome-wide prediction in a hybrid maize population adapted to Northwest China

11. Genome-wide evolutionary characterization and expression analysis of SIAMESE-RELATED family genes in maize

12. Identification of Ear Morphology Genes in Maize (Zea mays L.) Using Selective Sweeps and Association Mapping

13. Genetic characterization of inbred lines from Shaan A and B groups for identifying loci associated with maize grain yield

14. Evaluation of Drought Tolerance in Maize Inbred Lines Selected from the Shaan A Group and Shaan B Group

15. Optimizing Sowing Date and Planting Density Can Mitigate the Impacts of Future Climate on Maize Yield: A Case Study in the Guanzhong Plain of China

16. Comparative transcriptomics reveals the difference in early endosperm development between maize with different amylose contents

17. Multi-Site Evaluation of Accumulated Temperature and Rainfall for Maize Yield and Disease in Loess Plateau

18. Response of Soil Temperature, Moisture, and Spring Maize (Zea mays L.) Root/Shoot Growth to Different Mulching Materials in Semi-Arid Areas of Northwest China

19. Evaluation of Yield-Based Low Nitrogen Tolerance Indices for Screening Maize (Zea mays L.) Inbred Lines

20. Transcriptome Dynamics during Maize Endosperm Development.

22. A cost‐effective tsCUT&Tag method for profiling transcription factor binding landscape

23. The Physiological Responses of Maize Seedlings with Different Amylose Content to Drought Stress

24. Genome assembly of KA105, a new resource for maize molecular breeding and genomic research.

26. Evaluation of Drought Tolerance in Maize Inbred Lines Selected from the Shaan A Group and Shaan B Group

28. The Physiological Responses of Maize Seedlings with Diferent Amylose Content to Drought Stress.

30. New insights into the response of maize to fluctuations in the light environment

31. Genome-wide prediction in a hybrid maize population adapted to Northwest China

32. Exogenous Melatonin Improves Drought Tolerance in Maize Seedlings by Regulating Photosynthesis and the Ascorbate–Glutathione Cycle

33. Genome-wide evolutionary characterization and expression analysis of SIAMESE-RELATED family genes in maize

34. The effect of amylose on kernel phenotypic characteristics, starch-related gene expression and amylose inheritance in naturally mutated high-amylose maize

35. Melatonin Alleviates Drought-Induced Damage of Photosynthetic Apparatus in Maize Seedlings

36. Transcriptome profiling provides insights into the molecular mechanisms of maize kernel and silk development

37. Optimizing Sowing Date and Planting Density Can Mitigate the Impacts of Future Climate on Maize Yield: A Case Study in the Guanzhong Plain of China

38. Response of Photosynthesis in Maize to Drought and Re-Watering

39. Biosynthesis, structure and functionality of starch granules in maize inbred lines with different kernel dehydration rate

40. Estimation of maize straw production and appropriate straw return rate in China

41. Genome-wide association study (GWAS) reveals genetic basis of ear-related traits in maize

42. Mining of candidate genes for nitrogen use efficiency in maize based on genome-wide association study

43. Response of Soil Temperature, Moisture, and Spring Maize (Zea mays L.) Root/Shoot Growth to Different Mulching Materials in Semi-Arid Areas of Northwest China

46. Genetic characterization of inbred lines from Shaan A and B groups for identifying loci associated with maize grain yield

47. High-amylose starch as a new ingredient to balance nutrition and texture of food

48. Quantifying maize grain yield losses caused by climate change based on extensive field data across China

49. Bivariate flow cytometric analysis and sorting of different types of maize starch grains

50. QTL mapping for leaf area in maize (Zea mays L.) under multi-environments

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