Sr. No. |
Publications |
NAAS Ratings |
Impact Factor |
1. |
Bai, B.K., Kaur, B., Kaur, S., Kaur, J., Sharma, A., Sri, T., Chhunaja, P. and Kaur, S. (2025). Unveiling leaf rust resistance introgressed from non-progenitor wild species Aegilops kotschyi into hexaploid wheat. Scientific Reports. (Accepted) |
11 |
4.996 |
2. |
Patel, E., Das, P., Hazra, S., Sharma, M., Chhabra, G., Gill, B.S., Sharma, S., Kaur, A., Singla, D. and Sandhu, J.S. (2025). Mutation in soybean Lox 2 PLAT/LH2 domain through CRISPR/Cas9 reduces seed lipoxygenase activity: responsible for undesirable flavour. Transgenic Research, 34. https://doi.org/10.1007/s11248-025-00447-8 |
8.70 |
2.7 |
3. |
Jan, F., Parthiban, M., Kaur, S., Khan, M.A., Sheikh, F.A., Wani, F.J., Saad, A.A., Singh, Y., Kumar, U., Gupta, V., Thudi, M., Saini, D.K., Kumar, S., Varshney, R.K. and Mir, R.R. (2025). Do different wheat ploidy levels respond differently against stripe rust infection: interplay between reactive oxygen species (ROS) and the antioxidant defense system? Plant Physiology and Biochemistry, 219, 109259. https://doi.org/10.1016/j.plaphy.2024.109259 |
12.50 |
5.7 |
4. |
Kaur, A., Sharma, M., Bhatia, S.K., Sharma, S.P., Gill, R., Kaur, G. and Sarao, N.K. (2025). Quantitative trait loci mapping for Fusarium wilt using genotyping by sequencing based genetic map in melon (Cucumis melo L.). Scientia Horticulturae, 343(2), 114050. https://doi.org/10.1016/j.scienta.2025.114050 |
10.34 |
4.2 |
5. |
Kaur, A., Dhillon, G.S., Dhaliwal, S.K., Kaur, B., Garg, M., Chhuneja, P., Singh, K., Srivastava, P., Sharma, A. and Kaur, S. (2025). Genomic dissection of terminal heat tolerance in synthetic hexaploid derived nested introgression libraries of wheat (Triticum aestivum L.). Functional and Integrative Genomics, 25, 98. https://doi.org/10.1007/s10142-025-01604-2 |
8.90 |
3.1 |
6. |
Rasool, S., Babbar, A., Kumari, S., Javed, S., Lore, J.S., Kaur, R., Sidhu, N., Vikal, Y., Singh, K. and Neelam, K. (2025). Molecular mapping and transfer of sheath blight resistance QTLs from PAU-shb8 to cultivated rice PR-121. Molecular Genetics and Genomics, 300, 21. https://doi.org/10.1007/s00438-024-02220-8 |
9.10 |
2.2 |
7. |
Sharma, N., Deol, J.K., Kaur, G., Kaur, A., Sharma, S.P. and Sarao, N.K. (2025). Exploring the role of advanced genomics in melon breeding: a review. Plant Molecular Biology Reporter. https://doi.org/10.1007/s11105-025-01552-y |
8.10 |
1.4 |
8. |
Singathiya, P., Dhall, R., Manchanda, P., Kumari, P., Garg, R. and Samyappan, P. (2025). Utilizing parthenocarpic gynoecious Beit Alpha cucumber inbreds for their heterotic potential under different poly-net house environments. Scientific Reports, 15. |
11 |
4.996 |
9. |
Ghane, A., Malhotra, P.K., Sanghera, S.K., Verma, N.S., Jamwal, L., Kashyap, L. and Wani, S.H. (2024). CRISPR/Cas technology: fueling the future of biofuel production with sugarcane. Functional & Integrative Genomics, 24, 205. https://doi.org/10.1007/s10142-024-01487-9 |
8.9 |
3.1 |
10. |
Sharma, A.S., Kalia, A., Sharma, A., Sidhu, M.S., Sanghera, G.S., Chhabra, G., Sharma, M., Singh, M., Patel, E., Das, P., Hazra, S., Kaur, A., Singla, D. and Sandhu, J.S. (2024). Expression of Trichoderma spp. endochitinase gene improves red rot disease resistance in transgenic sugarcane. PLoS ONE, 19(9), e0310306. https://doi.org/10.1371/journal.pone.0310306 |
9.80 |
3.24 |
11. |
Cavalet-Giorsa, E., González-Muñoz, A.A., Athiyannan, N.K. et al. (2024). Origin and evolution of the bread wheat D genome. Nature, 633, 848–855. |
20.00 |
69.504 |
12. |
Sidhu, G.S., Kumar, D., Sharma, V., Singh, J. and Malhotra, P.K. (2024). An efficient protocol for direct in vitroregeneration in ‘Daisy’ and ‘W. Murcott’: commercially important mandarins. Applied Fruit Science. https://doi.org/10.1007/s10341-024-01140-6 |
7.30 |
2.5 |
13. |
Kaur, P., Neelam, K., Sarao, P.S., Saini, N.S., Dhir, Y.W., Khanna, R., Vikal, Y. and Singh, K. (2024). Mapping of a novel recessive brown planthopper resistance gene bph46 from wild rice (Oryza nivara). Euphytica, 220(4), 61. |
7.90 |
1.7 |
14. |
Kaur, S., Chawla, N., Jindal, S.K., Mohanpuria, P., Jain, S. and Sharma, U. (2024). Biochemical and gene expression profiling of oxalate biosynthesis in cherry tomato (Solanum lycopersicum var. cerasiforme) in Indo-Gangetic Plains of India. Food Bioscience, 61, 104952. https://doi.org/10.1016/j.fbio.2024.104952 |
11.20 |
5.9 |
15. |
Krishnan, N.J., Kaur, S., Kumar, U., Singh, R., Dhillon, G.S., Bhati, P.K. and Chhuneja, P. (2024). Mapping heat tolerance QTLs in Triticum durum–Aegilops speltoides backcross introgression lines for enhanced thermotolerance. Frontiers in Plant Science, 15, 1485914. https://doi.org/10.3389/fpls.2024.1485914 |
11.60 |
4.8 |
16. |
Manchanda, P., Kaur, H., Dev, A.V., Mankoo, R.K., Kalia, A. and Sharma, S.P. (2024). Determination of phenolics, flavonoids, and radical scavenging activity in different potato tissues and in vitro callus cultures of Punjab Potato-101, Kufri Pukhraj, and Lady Rosetta. Food Analytical Methods, 18(4), 595–605. |
4.58 |
3.0 |
17. |
Neelam, K., Aggarwal, S.K., Kumari, S., Kumar, K., Kaur, A., Babbar, A., Lore, J.S., Kaur, R., Khanna, R. and Vikal, Y. (2024). Molecular mapping and transfer of quantitative trait loci (QTL) for sheath blight resistance from wild rice Oryza nivara to cultivated rice (Oryza sativa L.). Genes, 15(7), 919. |
9.50 |
3.2 |
18. |
Sharma, S., Malhotra, P.K., Goyal, M., Sharma, V., Mittal, A., Yadav, I.S., Sanghera, G.S. and Chhuneja, P. (2024). Characterization of sugarcane mutants developed through gamma irradiations for their lignin content and caffeic acid-O-methyl transferase (COMT) gene mutations. International Journal of Radiation Biology, 100(4), 619–626. |
8.60 |
2.4 |
19. |
Sharma, N., Sarao, N.K., Mohanpuria, P. and Sharma, A. (2024). Effective Agrobacterium-mediated genetic transformation of okra (Abelmoschus esculentus L.) and generation of RNAi plants resistant to Begomovirus infecting okra. The Journal of Horticultural Science and Biotechnology, 99(2), 146–159. https://doi.org/10.1080/14620316.2023.2251978 |
7.90 |
2.1 |
20. |
Sidhu, G.S., Dhaliwal, H.S., Gaikwad, P.N. and Vishal (2024). Polyembryony and morpho-genetic characterization of zygotic seedlings through microsatellite markers in ten polyembryonic citrus rootstocks. Seed Science and Technology, 52, 85–107. |
7.40 |
1.7 |
21. |
Sidhu, G.S., Kumar, D., Sharma, V., Singh, J. and Malhotra, P.K. (2024). An efficient protocol for direct in vitroregeneration in ‘Daisy’ and ‘W. Murcott’: commercially important mandarins. Applied Fruit Science, 66, 1619–1629. |
7.30 |
2.5 |
22. |
Sidhu, G.S., Mohanpuria, P., Gaikwad, P.N., Kaur, G. and Kaur, H. (2024). Polyembryony: a potential horticultural trait, reveals complex mechanism, role of molecular markers and their application in fruit crops. Botanical Review. https://doi.org/10.1007/s12229-024-09300-9 |
10 |
5.7 |
23. |
Vishal, Sidhu, G.S., Gaikwad, P., Mann, S.S., Gill, M.S. and Manchanda, P. (2024). Optimized protocol for high-frequency papaya propagation: morpho-stereomicroscopic analysis and genetic fidelity assessment. Plant Cell, Tissue and Organ Culture, 156, 81. |
9.00 |
2.4 |
24. |
Pavani, G., Malhotra, PK., and Verma, SK. (2023) Flowering in sugarcane: insights from the grasses. 3 Biotech. 13:154. https://doi.org/10.1007/s13205-023-03573-4 |
8.89 |
2.9 |
25. |
Kaur, S., Bishnoi, R., Priyadarshini, P., Singla, D., Chhuneja, P. (2023) DSP: database of disease susceptibility genes in plants. Functional and Integrative Genomics 23:204. https://doi.org/10.1007/s10142-023-01132-x |
8.9 |
3.1 |
26. |
Bishnoi, R., Kaur, S., Sandhu, JS., Singla, D. (2023) Genome engineering of disease susceptibility genes for enhancing resistance in plants. Functional and Integrative Genomics 23:207. |
8.9 |
3.1 |
27. |
Singh, J., Sharma, A., Sharma, V., Gaikwad, NP., Sidhu, GS., Kaur, G., Kaur, N., Jindal, T., Chhuneja, P., Rattanpal, HS. (2023) Comprehensive genome-wide identification and transferability of chromosome-specific highly variable microsatellite markers from citrus species. Scientific Reports 13, 10919. https://doi.org/10.1038/s41598-023-37024-0 |
11 |
4.996 |
28. |
Boden, SA., McIntosh, RA., Uauy, C., Krattinger, SG., Dubcovsky,J., Rogers,WJ., Xia,XC., Badaeva,ED., Bentley,AR., Brown-Guedira,G., Caccamo,M., Cattivelli,L., Chhuneja,P., Cockram,J., Contreras-Moreira,B., Dreisigacker,S., Edwards,D., González,FG., Guzmán,C., Ikeda,TM., Karsai,I., Nasuda,S., Pozniak,C., Prins,R., Sen,TZ., Silva,P., Simkova,H., Zhang Y & the Wheat Initiative (2023) Updated guidelines for gene nomenclature in wheat. Theoretical and Applied Genetics 136:72. https://doi.org/10.1007/s00122-023-04253-w |
11.57 |
4.4 |
29. |
Sandhu, N., Sethi,M., Kaur,H., Dhillon,A., Kumar,A., Kaur,A., Kaur,S., Singh,V., Bentley,AR., Chhuneja,P. (2023) Mining natural genetic variations for nitrogen use efficiency utilizing nested synthetic hexaploid wheat introgression libraries. Environmental and Experimental Botany 212,105394. https://doi.org/10.1016/j.envexpbot.2023.105394. |
12.03 |
4.7 |
30. |
Singh, B., Bhatia, D., Narang, D., Kaur, R., Chhuneja, P. (2023) High-resolution genetic mapping of QTL governing resistance to corn leaf aphid, Rhopalosiphum maidis (Fitch) in barley. Cereal Research Communications 51, 379–389. https://doi.org/10.1007/s42976-022-00317-7 |
7.24 |
1.9 |
31. |
Harmanpreet,K., Singh,GS., Amandeep,M., Yadav, IS., Meenakshi,M., Singla, D., Singh, N., Chhuneja, P. (2023) Comparative transcriptomics in alternate bearing cultivar Dashehari reveals the genetic model of flowering in mango. Frontiers in Genetics 13:1061168. doi: 10.3389/fgene.2022.1061168 |
10.77 |
3.7 |
32. |
Sharma,A., Arif,MAR., Shamshad,M., Rawale,KS., Brar,A., Burgueño,J., Shokat,S., Kaur,R., Vikram,P., Srivastava,P., Sandhu,N., Singh,J., Kaur,S., Chhuneja,P., Singh, S. (2023) Preliminary dissection of grain yield and related traits at differential nitrogen levels in diverse pre-breeding wheat germplasm through association mapping. Molecular Biotechnology 65:1 116-130 https://doi.org/10.1007/s12033-022-00535-8 |
8.86 |
2.5 |
33. |
Padhy, AK., Sharma,A., Sharma,H., Srivastava,P., Singh,S., Kaur,P., Kaur,J., Kaur,S., Chhuneja,P., Bains, NS. (2023) Combining high carotenoid, grain protein content and rust resistance in wheat for food and nutritional security. Frontiers in Genetics 14:1075767 https://doi.org/10.3389/fgene.2023.1075767 |
10.77 |
3.7 |
34. |
Kaur, H., Manchanda, P., Kumar,P., Dhall,RK., Chhuneja,P., Weng, Y. (2023) Genome-wide identification and characterization of parthenocarpic fruit set-related gene homologs in cucumber (Cucumis sativus L.). Scientific Reports 13:2403. https://doi.org/10.1038/s41598-023-29660-3 |
11 |
4.996 |
35. |
Sharma,M., Lore,JS., Kaur,A., Sandhu, JS. (2023) Transgenic rice expressing Trichoderma spp. endochitinase gene exhibits moderate resistance to sheath blight Plant Cell, Tissue and Organ Culture (PCTOC) 153:1 53-65 |
8.73 |
2.4 |
36. |
Patel,E., Kalia,A., Gill,BS., Kaur,A., Sandhu, JS (2023) Direct organogenesis from cortical cells of hypocotyl segments in soybean. In Vitro Cellular & Developmental Biology-Plant 59:1, 140-146 https://doi.org/10.1007/s11627-023-10329-5 |
8.6 |
2.1 |
37. |
Kaur,B., Garcha,KS., Sandhu,JS., Sharma,M., Dhatt, AS. (2023) Interspecific hybridization for transfer of hull-less seed trait from Cucurbita pepo to C. moschata Scientific Reports 13(1): 4627. https://doi.org/10.1038/s41598-023-29935-9 |
11 |
4.996 |
38. |
Karnatam,KS., Mythri,B., Nisa,WU., Sharma,H., Meena,TK., Rana,P., Vikal,Y., Gowda,M., Dhillon,BS., Sandhu., S.(2023) Silage maize as a potent candidate for sustainable animal husbandry development—perspectives and strategies for genetic enhancement. Frontiers in Genetics.14:1150132 https://doi.org/10.1007/s10722-023-01623-7 |
10.77 |
3.7 |
39. |
Rangari,SK., Sudha,MK., Kaur,H., Uppal,N., Singh,S., Vikal,Y., Sharma, P. (2023) DNA-free genome editing for ZmPLA1 gene via targeting immature embryos in tropical maize. GM Crops & Food. https://doi.org/10.1080/21645698.2023.2197303 |
9.1 |
3.118 |
40. |
Karnatam, KS., Chhabra,G., Saini,DK., Singh,R., Kaur,G., Praba,UP., Kumar,P., Goyal,S., Sharma, P., Ranjan,R., Sandhu,SK., Kumar,R., Vikal, Y (2023) Genome-wide meta-analysis of QTLs associated with root traits and implications for maize breeding. International Journal of Molecular Sciences 24:7, 6135, https://doi.org/10.3390/ijms24076135 |
12.21 |
4..9 |
41. |
Ahmed, H.I., Heuberger, M., Schoen, A., Koo, D.H., Quiroz-Chavez, J., Adhikari, L., Raupp, J., Cauet, S., Rodde, N., Cravero, C., Callot, C., Lazo, G.R., Kathiresan, N., Sharma, P.K., Moot, I., Yadav, I.S., Singh, L., Saripalli, G., Rawat, N., Datla, R., Athiyannan, N., Ramirez-Gonzalez, R.H., Uauy, C., Wicker, T., Tiwari, V.K., Abrouk, M., Poland, J. and Krattinger, S.G. (2023). Einkorn genomics sheds light on history of the oldest domesticated wheat. , 620(7975), 830–838. |
64 |
20 |
42. |
Boden, S.A., McIntosh, R.A., Uauy, C., Krattinger, S.G., Dubcovsky, J., Rogers, W.J., Xia, X.C., Badaeva, E.D., Bentley, A.R., Brown Guedira, G., Caccamo, M., Cattivelli, L., Chhuneja, P., Cockram, J., Contreras Moreira, B., Dreisigacker, S., Edwards, D., González, F.G., Guzmán, C., Ikeda, T.M., Karsai, I., Nasuda, S., Pozniak, C., Prins, R., Sen, T.Z., Silva, P., Simkova, H. and Zhang, Y. (2023). Updated guidelines for gene nomenclature in wheat. Theoretical and Applied Genetics, 136, 72. |
11.57 |
4.4 |
43. |
E Patel, P Kumar, P Priyadarshini, D Singla, JS Sandhu† (2023) Molecular docking and dynamic simulation studies of isoflavones inhibiting Lox-2 activity for reducing beany flavor in soybean seeds. Journal of Biomolecular Structure and Dynamics https://doi.org/10.1080/07391102.2023. 2275179 |
11.24 |
5.235 |
44. |
Chhabra, G., Sharma, M., Kalia, A., Kaur, A. and Sandhu, J.S. (2023). Monitoring dissociation of chimerism through real-time PCR and scanning electron microscopy following in planta transformation of rough lemon (Citrus jambhiriLush.). Plant Biotechnology Reports. https://doi.org/10.1007/s11816-023-00877-y |
8.50 |
1.6 |
45. |
Kaur, H., Manchanda, P., Kumar, P., Dhall, R.K., Chhuneja, P. and Weng, Y. (2023). Genome wide identification and characterization of parthenocarpic fruit set-related gene homologs in cucumber (Cucumis sativus L.). Scientific Reports, 13, 2403. |
9.8 |
3.8 |
46. |
Kaur, J., Sidhu, M.K., Sarao, N.K. and Dhatt, A.S. (2023). Development of partially fertile cross between Solanum melongena and Solanum sisymbriifolium through embryo rescue technique. Indian Journal of Genetics and Plant Breeding, 83(3). https://doi.org/10.31742/ISGPB.83.3.14 |
7.00 |
1.0 |
47. |
Kaur, K., Neelam, K., Singh, J., Malik, P. and Singh, K. (2023). Uncovering natural allelic and structural variants of OsCENH3 gene by targeted resequencing and in silico mining in genus Oryza. Scientific Reports, 13(1), 830. |
11 |
4.996 |
48. |
Kaur, S., Singh, S., Mohanpuria, P., Govindaswamy, M., Sidhu, G.S., Yue, Z. and Li, Z. (2023). RNA interference mediated silencing of NOA and V-ATPase subunit D genes results in deformities and mortality in Bactrocera dorsalis(Hendel 1912). Journal of Applied Entomology. https://doi.org/10.1111/jen.13198 |
7.90 |
2 |
49. |
Singh, M., Kaur, A., Taggar, G.K., Singh, I., Singh, S., Kaur, K. and Sandhu, J.S. (2023). Inheritance and expression analysis of cry1Ab gene in transgenic pigeonpea tolerant to Maruca pod borer. Crop Breeding and Applied Biotechnology, 23(4), e458723412. |
7.48 |
1.3 |
50. |
Maan, S.S., Brar, J.S., Mittal, A., Gill, M.I.S., Arora, N.K., Sohi, H.S., Chhuneja, P., Dhillon, G.S., Singh, N. and Thakur, S. (2023). Construction of a genetic linkage map and QTL mapping of fruit quality traits in guava (Psidium guajava L.). Frontiers in Plant Science, 14, 1123274. https://doi.org/10.3389/fpls.2023.1123274. |
11.60 |
4.1 |
51. |
Kaur, H., Sidhu, G.S., Mittal, A., Yadav, I.S., Mittal, M., Singla, D., Singh, N. and Chhuneja, P. (2023). Comparative transcriptomics in alternate bearing cultivar Dashehari reveals the genetic model of flowering in mango. Frontiers in Genetics, 13, 1061168. https://doi.org/10.3389/fgene.2022.1061168 |
9.7 |
2.8 |
52. |
Patel, E., Kumar, P., Priyadarshini, P., Singla, D. and Sandhu, J.S. (2023). Molecular docking and dynamic simulation studies of isoflavones inhibiting Lox-2 activity for reducing beany flavor in soybean seeds. Journal of Biomolecular Structure and Dynamics. https://doi.org/10.1080/07391102.2023.2275179 |
10.4 |
5.235 |
53. |
Sharma, N., Sarao, N.K., Mohanpuria, P. and Sharma, A. (2023). Effective Agrobacterium-mediated genetic transformation of okra (Abelmoschus esculentus L.) and generation of RNAi plants resistant to Begomovirus infecting okra. The Journal of Horticultural Science and Biotechnology, 99(2), 1–1. |
7.92 |
1.7 |
54. |
Singh, G., Pathak, M., Pathak, D. and Sarao, N.K. (2023). Identification of SSR markers through bulk segregant analysis and inheritance of resistance to yellow vein mosaic disease in okra (Abelmoschus esculentus L. Moench). Virus Disease, 34(2). https://doi.org/10.1007/s13337-023-00844-9 |
5.83 |
2.082 |
55. |
Maan, S.S., Brar, J.S., Mittal, A., Gill, M.S., Arora, N.K., Sohi, H.S., Chhuneja, P., Dhillon, G.S., Singh, N. and Thakur, S. (2023). Construction of a genetic linkage map and QTL mapping of fruit quality traits in guava (Psidium guajava L.). Frontiers in Plant Science, 14, 1123274. |
11.60 |
4.8 |
56. |
Yadav, I.S., Rawat, N., Chhuneja, P., Kaur, S., Uauy, C., Lazo, G., Gu, Y.Q., Doležel, J. and Tiwari, V.K. (2023). Comparative genomic analysis of 5Mg chromosome of Aegilops geniculata and 5Uu chromosome of Aegilops umbellulata reveal genic diversity in the tertiary gene pool. Frontiers in Plant Science, 14, 1144000. https://doi.org/10.3389/fpls.2023.1144000 |
11.60 |
4.8 |
57. |
Yadav, I.S., Sharma, A., Kaur, S., Nahar, N., Bhardwaj, S.C., Sharma, T.R. and Chhuneja, P. (2016). Comparative temporal transcriptome profiling of wheat near isogenic line carrying Lr57 under compatible and incompatible interactions. Frontiers in Plant Science, 7, 1943. https://doi.org/10.3389/fpls.2016.01943 |
11.60 |
4.8 |
58. |
Yadav, I.S., Singh, N., Wu, S., Raupp, J., Wilson, D.L., Rawat, N., Gill, B.S., Poland, J. and Tiwari, V.K. (2023). Exploring genetic diversity of wild and related tetraploid wheat species Triticum turgidum and Triticum timopheevii. Journal of Advanced Research, 48, 47–60. https://doi.org/10.1016/j.jare.2022.08.020 |
18.22 |
12.82 |
59. |
Sharma, A.B., Sidhu, A., Manchanda, P., Ahuja, R. (2022). 1,2,4?triazolyldithiocarbamate silver nano conjugate: potent seed priming agent against bakanae disease of rice (Oryzae sativa). European Journal of Plant Pathology162, 825-841DOI: 10.1007/s10658-021-02439-w |
7.91 |
2.0 |
60. |
Singh, G., Kaur, N., Khanna, R., Kaur, R., Gudi, S., Kaur, R., Sidhu, N., Vikal, Y., Mangat, G.S. (2022). 2Gs and plant architecture: breaking grain yield ceiling through breeding approaches for next wave of revolution in rice (Oryza sativa L.), Critical Reviews in Biotechnology, DOI: 10.1080/07388551.2022.2112648 |
14.43 |
9.5 |
61. |
Dhall, R.K., Hegde, S.N., Malhotra, P.K. (2022). Standardized protocol for in situ and in vitro maintenance of newly developed parthenocarpic gynoecious cucumber inbred. Braz Arch Biol Technol. 65, e22200792. |
6.8 |
1.1 |
62. |
Kaura, V., Malhotra, P.K., Mittal, A., Sanghera, G.S., Kaur, N., Bhardwaj, R.D. Cheema, R.S., Kaur, G. (2022). Physiological, biochemical, and gene expression responses of sugarcane under cold, drought and salt stresses. J. Plant Growth Regul. https://doi.org/10.1007/s00344-022-10850-8. |
10.17 |
3.5 |
63. |
Kaur, R., Kaur, R Sharma, Kumari N et al. (2022) Protein profiling in a set of wild rice species and rice cultivars: a stepping stone to protein quality improvement. Cereal Research Communications. https://doi.org/10.1007/s42976-022-00273-2. |
6.85 |
1.9 |
64. |
Kaur, P., Neelam, K., Sarao, P.S., Babbar, A., Kumar, K., Vikal, Y., Khanna, R., Kaur, R., Mangat, G.S., Singh, K. (2022) Molecular mapping and transfer of a novel brown planthopper resistance gene bph42 from Oryza rufipogon (Griff.) to cultivated rice (Oryza sativa L.). Molecular Biology Reports 49: 8597-8606 |
8.32 |
2.8 |
65. |
Malik, P., Huang, M., Neelam, K., Bhatia, D., Kaur, R., Yadav, B., Singh, J., Sneller, C., Singh, K. (2022). Genotyping-by-sequencing based Investigation of population structure and genome wide association studies for seven agronomically important traits in a set of 346 Oryza rufipogon accessions. Rice doi:10.1186/s12284-022-00582-4 |
10.78 |
0.397 |
66. |
Neelam, K., Kumar, K., Kaur, A., Kishore, A., Kaur, P., Babbar, A., Kaur, G., Kamboj, I., Lore, J.S., Vikal, Y., Mangat, G.S., Kaur, R., Khanna R., Singh, K. (2022) High resolution mapping of quantitative trait locus (QTLs) conferring resistance to false smut disease in rice. Journal of Applied Genetics 63:35-45. |
9.24 |
1.9 |
67. |
Kaur, R., Kaur, R., Sharma, N. Neelam, K., Khanna, R., Singh, G. (2022) Protein profiling in a set of wild rice species and rice cultivars: a stepping stone to protein quality improvement. Cereal Research Communications DOI: https://doi.org/10.1007/s42976-022-00273-2. |
6.85 |
1.9 |
68. |
Kumar, K., Mandal, S. N., Pradhan, B., Kaur, P., Kaur, K., Neelam, K. (2022) From Evolution to Revolution: Accelerating Crop Domestication through Genome Editing. Plant Cell Physiology. 00(00): 1–17 |
– |
4.0 |
69. |
Aggarwal, S.K., Malik, P., Neelam, K., Kumar, K., Kaur, R., Lore, J.S., Singh K. (2022) Genome-wide association mapping for identification of sheath blight resistance loci from wild rice Oryza rufipogon. Euphytica DOI: https://doi.org/10.1007/s10681-022-03091-z |
7.9 |
0.397 |
70. |
Yadav, I.S., Bhardwaj, S.C., Kaur. J., Singla, D., Kaur, S., Kaur, H., Rawat, N., Tiwari, V.K., Saunders, D., Uauy, C., Chhuneja, P., (2022). Whole genome resequencing and comparative genome analysis of three Puccinia striiformis f. sp. tritici pathotypes prevalent in India. PLoS One. 17:e0261697. doi.org/10.1371/journal.pone.0261697 |
9.24 |
3.24 |
71. |
Kaur, G., Pathak, M., Singla, D., Chhabra, G., Chhuneja, P., Sarao, N.K., (2022). Quantitative Trait Loci Mapping for Earliness, Fruit, and Seed Related Traits Using High Density Genotyping-by-Sequencing-Based Genetic Map in Bitter Gourd (Momordica charantia L.). Front Plant Sci. 12,1–13. doi: 10.3389/fpls.2021.799932 |
11.75 |
4.8 |
72. |
Gupta, M., Choudhary, M., Singh, A., Sheoran, S., Singla, D., Rakshit, S., (2022). Meta-QTL analysis for mining of candidate genes and constitutive gene network development for fungal disease resistance in maize (Zea mays L.). Crop J. doi.org/10.1016/j.cj.2022.07.020 |
10.41 |
|
73. |
Singla, D., Yadav, S.I., (2022). GAAP: A GUI-based Genome Assembly and Annotation Package. Curr Genomics. 23,77–82. doi.org/10.2174/1389202923666220128155537 |
9.89 |
1.4 |
74. |
Sharma, K., Dhingra, M., Kaur, R., Singh, S., Kaur, A., Kaur, S. and Sharma, A. (2022). Evaluation of Triticum durum–Aegilops tauschii derived primary synthetics as potential sources of drought stress tolerance for wheat improvement. Cereal Research Communications. https://doi.org/10.1007/s42976-022-00265-2 |
6.85 |
1.9 |
75. |
Singh, L., Dhillon, G. S., Kaur, S., Dhaliwal, S.K., Kaur, A., Malik, P., Kumar, A., Gill, R.K. and Kaur, S*. (2022). Genome wide association study for yield and yield-related traits in diverse black gram panel (Vigna mungo L. Hepper) reveals novel putative alleles for future breeding programs. Frontier in Genetics 13:849016. doi: 10.3389/fgene.2022.849016 |
10.6 |
3.7 |
76. |
Padhy, A. K., Kaur, P., Singh, B., Kaur, R., Bhatia, S., Shamshad, M., Sharma, M., Tanin, J. M., Kaur, S., Sharma, A. (2022). In silico characterization of Thinopyrum elongatum derived PsyE1 gene and validation in 7D/7E bread wheat introgression lines opens avenues for carotenoid biofortification in wheat”. Cereal Research communication. https://doi.org/10.1007/s42976-022-00279-w |
6.85 |
1.9 |
77. |
Kumar, S., Jacob, S. R., Mir, R. R., Vikas, V. K., Kulwal, P. L., Chandra, T., Kaur, S., Kumar, S., Kumar, S., Sharma, S., Singh, R., Prasad, S., Singh, A. M., Singh, A. M., Kumari, J., Saharan, M. S., Bhardwaj, S. C., Prasad, M., Singh, K. (2022). Indian Wheat Genomics Initiative for Harnessing the Potential of Wheat Germplasm for Breeding Disease Resistant, Nutrient Dense and Climate Resilient Cultivar. Frontiers in Genetics. 13:834366. doi: 10.3389/fgene.2022.834366 |
10.6 |
3.7 |
78. |
Kaur S., Shamshad, M., Jindal S., Kaur A., Sharma A, Kaur S* (2022). RNA seq based transcriptomics study to investigate the genes governing nitrogen use efficiency in Indian wheat cultivars. Frontiers in Genetics. doi.org/10.3389/fgene.2022.853910 |
10.6 |
3.7 |
79. |
Sidhu, G.S., Rattanpal, H.S., Arora, A., and Singh, J. (2022). Effect of chemical mutagens and Phytophthora culture filtrate on survival and plant regeneration from callus of Citrus jambhiri Lush. Fruits. doi.org/10.17660/th2022/019 |
6.8 |
0.7 |
80. |
Gaurav, K., Arora, S., Silva, P., Sánchez-Martín, J., Horsnell, R., Chhuneja, P. and Wulff, B.H. (2022). Population genomic analysis of Aegilops tauschii identifies targets for bread wheat improvement. Nature Biotechnology, 40, 422–431. https://doi.org/10.1038/s41587-021-01058-4 [PubMed PMID: 34725503] |
20.00 |
33.1 |
81. |
International Wheat Genome Sequencing Consortium et al. (2014). A chromosome-based draft sequence of the hexaploid bread wheat (Triticum aestivum) genome. Science, 345(6194), 1251788–1–11. |
20.00 |
44.7 |
82. |
Manchanda, P., Kaur, H., Mankoo, R.K., Kaur, A., Kaur, J., Kaur, S. and Sidhu, G.S. (2022). Optimization of extraction of bioactive phenolics and their antioxidant potential from callus and leaf extracts of Citrus sinensis (L.) Osbeck, C. reticulata Blanco and C. maxima (Burm.) Merr. Journal of Food Measurement and Characterization, 17, 1343–1353. https://doi.org/10.1007/s11694-022-01695-6 |
8.9 |
2.9 |
83. |
Mittal, A., Yadav, I.S., Arora, N.K., Boora, R.S., Mittal, M., Kaur, P., Erskine, W., Chhuneja, P., Gill, M.I.S. and Singh, K. (2020). RNA-sequencing based gene expression landscape of guava cv. Allahabad Safeda and comparative analysis to colored cultivars. BMC Genomics, 21(1), 484. https://doi.org/10.1186/s12864-020-06883-6 |
10.40 |
3.5 |
84. |
Mohanpuria, P., Govindaswamy, M., Sidhu, G.S., Singh, S., Kaur, S., Singh, S. and Chhuneja, P. (2021). Ingestion of bacteria expressing dsRNA to maggots produces severe mortality and deformities in fruit fly, Bactrocera dorsalis(Hendel) (Diptera: Tephritidae). Egyptian Journal of Biological Pest Control, 31(1). https://doi.org/10.1186/s41938-020-00345-7. |
6.38 |
2.1 |
85. |
Steuernagel, B., Witek, K., Krattinger, S.G., Ramirez-Gonzalez, R.H., Schoonbeek, H.J., Yu, G., Baggs, E., Witek, A., Yadav, I., Krasileva, K.V., Jones, J.D., Uauy, C., Keller, B., Ridout, C.J. and Wulff, B.B. (2020). The NLR-Annotator tool enables annotation of the intracellular immune receptor repertoire. Plant Physiology. https://doi.org/10.1104/pp.19.01273 |
12.31 |
8 |
86. |
Thakur, S., Yadav, I.S., Jindal, M., Sharma, P.K., Dhillon, G.S., Boora, R.S., Arora, N.K., Gill, M.I.S., Chhuneja, P. and Mittal, A. (2021). Development of genome-wide functional markers using draft genome assembly of guava (Psidium guajava L.) cv. Allahabad Safeda to expedite molecular breeding. Frontiers in Plant Science, 12, 708332. https://doi.org/10.3389/fpls.2021.708332 |
11.60 |
4.8 |
87. |
The International Wheat Genome Sequencing Consortium (Singh, K., Chhuneja, P., Gupta, O.P., Jindal, S., Kaur, P., Malik, P., Sharma, P. and Yadav, B.) (2018). Shifting the limits in wheat research and breeding using a fully annotated reference genome. Science, 361(6403), eaar7191. https://doi.org/10.1126/science.aar7191 |
20.00 |
44.7 |
88. |
Arora, S., Mohanpuria, P., Sidhu, G.S., Yadav, I.S. and Kumari, V. (2018). Cloning and characterization of limonoid glucosyltransferase from Kinnow mandarin (Citrus reticulata Blanco). Food Technology and Biotechnology, 56(2), 228–237. https://doi.org/10.17113/ftb.56.02.18.5349 |
7.52 |
2.5 |