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Table of Contents
1. Maize Genome Genome diversity in Maize
2. Maize biodiversity: state of the art and future perspective for breeding
3. European maize landraces made accessible for plant breeding and genome-based studies
4.Maize genome analysis to elucidate evolution with time
5. QTL mapping for high temperature stress in Maize
6. QTL mapping advances for European Corn Borer Resistance in maize
7. GWAS for maize yield Improvement
8. Transcriptional Factor; a molecular switch to adapt Abiotic Stress mechanism in maize
9. Gene expression Divergence in Maize
10. Physiological and Biochemical Responses of Maize under Drought Stress
11. Fungal Pathogen Induced Modulation of Structural and Functional Proteins in Zea mays
12.Maize improvement using recent Omics approaches
13. Molecular Genetic Approaches to Maize Improvement.
14. Genomic selection in maize improvement
15. Genetic engineering for improvement of qualitative and quantitative traits in Maize
16. Potential of phenomics in climate resilient maize breeding
17. Current Genomic Approaches for biotic stress tolerance in Maize
18. Genomics approaches for ascertaining Drought stress responses in Maize
19. Genotyping advances for Heat stress Tolerance in Maize
20. Biofortification in Maize through Marker Assisted Breeding
21. Molecular breeding approaches to improve NUE in Maize
22. Molecular breeding (QTL mapping) for Phosphorus Use Efficiency in Maize
23. Maize improvement for water use efficiency: Advances in Recent molecular marker technology
24. Genome editing Advances for Maize Improvement.
2. Maize biodiversity: state of the art and future perspective for breeding
3. European maize landraces made accessible for plant breeding and genome-based studies
4.Maize genome analysis to elucidate evolution with time
5. QTL mapping for high temperature stress in Maize
6. QTL mapping advances for European Corn Borer Resistance in maize
7. GWAS for maize yield Improvement
8. Transcriptional Factor; a molecular switch to adapt Abiotic Stress mechanism in maize
9. Gene expression Divergence in Maize
10. Physiological and Biochemical Responses of Maize under Drought Stress
11. Fungal Pathogen Induced Modulation of Structural and Functional Proteins in Zea mays
12.Maize improvement using recent Omics approaches
13. Molecular Genetic Approaches to Maize Improvement.
14. Genomic selection in maize improvement
15. Genetic engineering for improvement of qualitative and quantitative traits in Maize
16. Potential of phenomics in climate resilient maize breeding
17. Current Genomic Approaches for biotic stress tolerance in Maize
18. Genomics approaches for ascertaining Drought stress responses in Maize
19. Genotyping advances for Heat stress Tolerance in Maize
20. Biofortification in Maize through Marker Assisted Breeding
21. Molecular breeding approaches to improve NUE in Maize
22. Molecular breeding (QTL mapping) for Phosphorus Use Efficiency in Maize
23. Maize improvement for water use efficiency: Advances in Recent molecular marker technology
24. Genome editing Advances for Maize Improvement.