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Frontiers in Plant Science|November 1, 2017
Genetic Loci Governing Grain Yield and Root Development under Variable Rice Cultivation ConditionsMargaret Catolos, Nitika Sandhu, Shalabh Dixit, et al.
The Plant Genome|November 22, 2021
DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgroundsJacobo Sanchez, Pushpinder Pal Kaur, Isaiah C M Pabuayon, et al.
Frontiers in Plant Science|February 13, 2025
Unveiling genetic basis of seedling emergence from deep soil depth under dry direct- seeded conditions in rice (<i>Oryza sativa</i> L.)Vagish Mishra, Shilpi Dixit, Swati Tyagi, et al.
Scientific Reports|February 24, 2019
Epistatic interactions of major effect drought QTLs with genetic background loci determine grain yield of rice under drought stressShailesh Yadav, Nitika Sandhu, Ratna Rani Majumder, et al.
Plant Biotechnology Journal|July 30, 2020
More and more of less and less: Is genomics-based breeding of dry direct-seeded rice (DDSR) varieties the need of hour?Deepti B Sagare, Ragavendran Abbai, Abhinav Jain, et al.
TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|July 11, 2026
Natural genetic variations underlying iron and zinc uptake efficiency in rice under direct-seeded cultivation conditionsOm Prakash Raigar, Gaurav Augustine, Neha Kumari, et al.
Frontiers in Plant Science|March 5, 2019
Evaluating the Performance of Rice Genotypes for Improving Yield and Adaptability Under Direct Seeded Aerobic Cultivation ConditionsNitika Sandhu, Ram Baran Yadaw, Bedanand Chaudhary, et al.
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