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Jyotirmaya Mathan

Showing results (1-10 of 11) with videos related to

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Development (Cambridge, England)|September 15, 2016
Enhancing crop yield by optimizing plant developmental featuresJyotirmaya Mathan, Juhi Bhattacharya, Aashish Ranjan
Physiologia Plantarum|September 17, 2020
Sucrose transport in response to drought and salt stress involves ABA-mediated induction of OsSWEET13 and OsSWEET15 in riceJyotirmaya Mathan, Anuradha Singh, Aashish Ranjan
Journal of Experimental Botany|February 15, 2021
Sucrose transport and metabolism control carbon partitioning between stem and grain in riceJyotirmaya Mathan, Anuradha Singh, Aashish Ranjan
Plant Cell Reports|February 14, 2025
Revisiting development and physiology of wild rice relatives for crop improvement and climate resilienceJyotirmaya Mathan, Aditi Dwivedi, Aashish Ranjan
Journal of Experimental Botany|June 29, 2021
High photosynthesis rate in two wild rice species is driven by leaf anatomy mediating high Rubisco activity and electron transport rateJyotirmaya Mathan, Anuradha Singh, Vikram Jathar, et al.
Non-Coding RNA|February 23, 2024
The Emerging Role of Non-Coding RNAs (ncRNAs) in Plant Growth, Development, and Stress Response SignalingAmit Yadav, Jyotirmaya Mathan, Arvind Kumar Dubey, et al.
Functional & Integrative Genomics|May 1, 2025
Integration of metabolite and transcriptome profiles of cultivated and wild rice to unveil gene regulatory networks and key genes determining rice source and sink strengthAnuradha Singh, Jyotirmaya Mathan, Aditi Dwivedi, et al.
Methods in Molecular Biology (Clifton, N.J.)|April 22, 2024
Measuring Nonfoliar PhotosynthesisAlexandra L Milliken, Mengjie Fan, Jyotirmaya Mathan, et al.
Genome|July 23, 2019
Production and cytological characterization of a synthetic amphiploid derived from a cross between <i>Oryza sativa</i> and <i>Oryza punctata</i>Kishor Kumar, Kumari Neelam, Gurpreet Singh, et al.
The New Phytologist|November 12, 2025
Extensive photophysiological variation in wild barley is linked to environmental originMatthieu Breil-Aubert, Katie Shaw, Jessica Royles, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Development (Cambridge, England)|September 15, 2016
Enhancing crop yield by optimizing plant developmental featuresJyotirmaya Mathan, Juhi Bhattacharya, Aashish Ranjan
Physiologia Plantarum|September 17, 2020
Sucrose transport in response to drought and salt stress involves ABA-mediated induction of OsSWEET13 and OsSWEET15 in riceJyotirmaya Mathan, Anuradha Singh, Aashish Ranjan
Journal of Experimental Botany|February 15, 2021
Sucrose transport and metabolism control carbon partitioning between stem and grain in riceJyotirmaya Mathan, Anuradha Singh, Aashish Ranjan
Plant Cell Reports|February 14, 2025
Revisiting development and physiology of wild rice relatives for crop improvement and climate resilienceJyotirmaya Mathan, Aditi Dwivedi, Aashish Ranjan
Journal of Experimental Botany|June 29, 2021
High photosynthesis rate in two wild rice species is driven by leaf anatomy mediating high Rubisco activity and electron transport rateJyotirmaya Mathan, Anuradha Singh, Vikram Jathar, et al.
Non-Coding RNA|February 23, 2024
The Emerging Role of Non-Coding RNAs (ncRNAs) in Plant Growth, Development, and Stress Response SignalingAmit Yadav, Jyotirmaya Mathan, Arvind Kumar Dubey, et al.
Functional & Integrative Genomics|May 1, 2025
Integration of metabolite and transcriptome profiles of cultivated and wild rice to unveil gene regulatory networks and key genes determining rice source and sink strengthAnuradha Singh, Jyotirmaya Mathan, Aditi Dwivedi, et al.
Methods in Molecular Biology (Clifton, N.J.)|April 22, 2024
Measuring Nonfoliar PhotosynthesisAlexandra L Milliken, Mengjie Fan, Jyotirmaya Mathan, et al.
Genome|July 23, 2019
Production and cytological characterization of a synthetic amphiploid derived from a cross between <i>Oryza sativa</i> and <i>Oryza punctata</i>Kishor Kumar, Kumari Neelam, Gurpreet Singh, et al.
The New Phytologist|November 12, 2025
Extensive photophysiological variation in wild barley is linked to environmental originMatthieu Breil-Aubert, Katie Shaw, Jessica Royles, et al.
Pageof 2