Prathibha M.D
Scientist
Division of Basic Sciences
Email
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- Saha, D., Choyal, P., Mishra, U.N., Dey, P., Bose, B., Prathibha, M.D., Gupta, N.K., Mehta, B.K., Kumar, P., Pandey, S. and Chauhan, J., 2022. Drought stress responses and inducing tolerance by seed priming approach in plants. Plant Stress, p.100066.
- Prathibha M.D., Pushpa D., Mohan Kumar M.V., Raju B.R., Mallikarjuna N.M., Sowmya HR., Rajanna M.P., Udaya kumar M. and Sheshshayee M.S. Introgression of drought adaptive traits through Marker assisted backcrossing - An evidence for physiological breeding in rice (Oryza sativa), 2019, Rice.
- Sheshshayee M.S, Preethi N.V, Rohini Sreevathsa, Sowmya H.R, Smitharani J.A, Pooja Bharti, Prathibha M.D. and Raju S.Y, Is Water Use Efficiency a relevant trait to improve drought tolerance? Current concepts and future opportunities.2018, Frontiers in Chemistry.
- Prathibha, M.D., Pushpa, D. and Rajashekar, R.B.H., 2015. Improving adaptability of IR-64 to aerobic condition through introgressing root and water use efficiency (WUE) by marker assisted backcross breeding (MABC). Trends in Biosciences, 8(21), pp.5937-5940.
- Saha, D., Parida, S., Kulkarni, C., Saha, P., Mishra, U.N., Dey, P., Kesawat, M.S., Prathibha, M.D., Singhal, R.K. and Anuragi, H., 2022. Crucial plant processes under excess of metals/metalloids and tolerance through omics approaches. In Metals Metalloids Soil Plant Water Systems (pp. 91-110). Academic Press.
- Prathibha, M.D., Rajanna, M.P. and Sheshshayee, M.S., 2015. Marker Assisted Introgression of Water Use Efficiency (WUE) and Root Traits by Novel Multi-parent Backcross Breeding Strategy (MABC) in Rice (Oryza sativa L.). ecialise Sp, 49(2), pp.296-298.
- Prathibha, M.D., Harsha, S.G., Geetha, G.A., Lokesha, A.N. and Shivashankara, K.S., 2023. Metabolomics as a Selection Tool for Abiotic Stress Tolerance in Crops. In Translating Physiological Tools to Augment Crop Breeding (pp. 311-335). Singapore: Springer Nature Singapore
- Basavaraj, P.S., Rane, J., Prathibha, M.D., Boraiah, K.M. and Kumar, M., 2023. Advances in High-Throughput Phenotyping of Maize (Zea Mays L.) for Climate Resilience. In Maize Improvement: Current Advances in Yield, Quality, and Stress Tolerance under Changing Climatic Scenarios (pp. 259-288). Cham: Springer International Publishing






