748 results on '"Pandey, Manish K."'
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2. Introduction: Frontier Technologies for Crop Improvement
3. Genomic Selection in Crop Improvement
4. Forward Breeding for Efficient Selection
5. Bioinformatics for Plant Genetics and Breeding Research
6. Aspergillus flavus pangenome (AflaPan) uncovers novel aflatoxin and secondary metabolite associated gene clusters
7. Correction: High-throughput diagnostic markers for foliar fungal disease resistance and high oleic acid content in groundnut
8. High-throughput diagnostic markers for foliar fungal disease resistance and high oleic acid content in groundnut
9. Optimizing speed breeding and seed/pod chip based genotyping techniques in pigeonpea: A way forward for high throughput line development
10. A genomic variation map provides insights into peanut diversity in China and associations with 28 agronomic traits
11. Population Genomics of Peanut
12. Selection strategy for augementation of seed yield in mungbean (Vigna radiata L. Wilczek)
13. High-density bin-based genetic map reveals a 530-kb chromosome segment derived from wild peanut contributing to late leaf spot resistance
14. Designing future peanut: the power of genomics-assisted breeding
15. Bioinformatics for Plant Genetics and Breeding Research
16. Introduction: Frontier Technologies for Crop Improvement
17. Forward Breeding for Efficient Selection
18. Genomic Selection in Crop Improvement
19. Identification and application of a candidate gene AhAftr1 for aflatoxin production resistance in peanut seed (Arachis hypogaea L.)
20. Crop type discrimination using Geo-Stat Endmember extraction and machine learning algorithms
21. Long non-coding RNA-mediated epigenetic response for abiotic stress tolerance in plants
22. Enhancing climate change resilience in agricultural crops
23. BSA‑seq and genetic mapping identified candidate genes for branching habit in peanut
24. Improved pea reference genome and pan-genome highlight genomic features and evolutionary characteristics
25. Integration of Genomics Approaches in Abiotic Stress Tolerance in Groundnut (Arachis hypogaea L.): An Overview
26. Genetic Enhancement of Groundnut: Current Status and Future Prospects
27. Recent Advances in Genetics, Genomics, and Breeding for Nutritional Quality in Groundnut
28. Applications of nanotechnology for disease management in plants
29. Seeing from space makes sense: Novel earth observation variables accurately map species distributions over Himalaya
30. A Deep Learning Approach for Classification of Medicare Beneficiaries Based on Gender and being Affected with Cancer
31. Genomic insights into the genetic signatures of selection and seed trait loci in cultivated peanut
32. Chromosome-length genome assemblies of six legume species provide insights into genome organization, evolution, and agronomic traits for crop improvement
33. The genome sequence of segmental allotetraploid peanut Arachis hypogaea
34. Genetic mapping of drought tolerance traits phenotyped under varying drought stress environments in peanut (Arachis hypogaea L.)
35. Synergistic evaluation of Sentinel 1 and 2 for biomass estimation in a tropical forest of India
36. Genome‐wide association study reveals the genetic basis of amino acids contents variations in Peanut (Arachis hypogaea L.).
37. Plant Metabolomics for Crop Improvement
38. Linkage-Mapping and Genome-wide Association Study Identified Two Peanut Late Leaf Spot Resistance Loci, PLLSR-1 and PLLSR-2, Using a Nested Association Mapping
39. Current Status and Future Prospects of Next-Generation Data Management and Analytical Decision Support Tools for Enhancing Genetic Gains in Crops
40. Plant Genetics and Molecular Biology: An Introduction
41. Celebrating Professor Rajeev K. Varshney's transformative research odyssey from genomics to the field on his induction as Fellow of the Royal Society.
42. Climate-Smart Groundnuts for Achieving High Productivity and Improved Quality: Current Status, Challenges, and Opportunities
43. Genetic mapping of tolerance to iron deficiency chlorosis in peanut (Arachis hypogaea L.)
44. Genome-Wide Mapping of Quantitative Trait Loci for Yield-Attributing Traits of Peanut
45. The Plant Genome special section: Grain quality and nutritional genomics for breeding next‐generation crops
46. Long non-coding RNA-mediated epigenetic response for abiotic stress tolerance in plants
47. Genome-based trait prediction in multi- environment breeding trials in groundnut
48. Epigenetics and epigenomics: underlying mechanisms, relevance, and implications in crop improvement
49. Chromatin spatial organization of wild type and mutant peanuts reveals high-resolution genomic architecture and interaction alterations
50. History and Impact of the International Peanut Genome Initiative: The Exciting Journey Toward Peanut Whole-Genome Sequencing
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