Resultados de búsqueda - Singh, Vikas K.
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Seeking crops with balanced parts for the ideal whole por Abbai, Ragavendran, Singh, Vikas K., Snowdon, Rod J., Kumar, Arvind, Schnurbusch, Thorsten
Publicado 2020Enlace del recurso
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Can genomics deliver climate-change ready crops? por Varshney, Rajeev K., Singh, Vikas K., Kumar, Arvind, Powell, Wayne, Sorrells, Mark E.
Publicado 2018Enlace del recurso
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5Gs for crop genetic improvement por Varshney, Rajeev K., Sinha, Pallavi, Singh, Vikas K., Kumar, Arvind, Zhang, Qifa, Bennetzen, Jeffrey L.
Publicado 2020Enlace del recurso
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Molecular profiling of Rf3 and Rf4 genes, fertility restoration, and combining ability for yield traits of climate resilient advanced breeding lines of rice (Oryza sativa L.) por Priyadarshi, Rahul, Pranesh, K. J., Venkateshwarulu, Challa, Singh, Arun K., Singh, Vikas K., Kumar, Arvind
Publicado 2025Enlace del recurso
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Development of breeding lines with multiple stress tolerance to cold, drought, and high-temperature stress in rice (Oryza sativa L.) por Priyadarshi, Rahul, Yadav, Shailesh, Pettem, Mamatha, Venkateshwarlu, Challa, Pranesh, K. J., Singh, Vikas K., Kumar, Arvind
Publicado 2025Enlace del recurso
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New insights into QTNs and potential candidate genes governing rice yield via a multi-model genome-wide association study por Sachdeva, Supriya, Singh, Rakesh, Maurya, Avantika, Singh, Vikas K., Singh, Uma Maheshwar, Kumar, Arvind, Singh, Gyanendra Pratap
Publicado 2024Enlace del recurso
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Marker-assisted improvement of the elite maintainer line of rice, IR 58025B for wide compatibility (S5(n)) gene por Priyadarshi, Rahul, Arremsetty, Hari P. S., Singh, Akhilesh K., Khandekar, Durga, Ulaganathan, Kandasamy, Shenoy, Vinay, Sinha, Pallavi, Singh, Vikas K.
Publicado 2018Enlace del recurso
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Genome-wide association studies for identification of QTLs and key candidate genes to improve grain quality in rice (Oryza sativa L.) por Sachdeva, Supriya, Singh, Rakesh, Bharadwaj, Rakesh, Jain, Antil, Singh, Vikas K., Singh, Uma Maheshwar, Kumar, Arvind, Singh, Gyanendra Pratap
Publicado 2025Enlace del recurso
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Superior haplotypes for haplotype-based breeding for drought tolerance in pigeonpea (Cajanus cajan L.) por Sinha, Pallavi, Singh, Vikas K., Saxena, Rachit K., Khan, Aamir W., Abbai, Ragavendran, Chitikineni, Annapurna, Desai, Aarthi, Molla, Johiruddin, Upadhyaya, Hari D., Kumar, Arvind, Varshney, Rajeev K.
Publicado 2020Enlace del recurso
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Superior haplotypes of key drought-responsive genes reveal opportunities for the development of climate-resilient rice varieties por Singh, Preeti, Sundaram, Krishna T., Vinukonda, Vishnu Prasanth, Venkateshwarlu, Challa, Paul, Pronob J., Pahi, Bandana, Gurjar, Anoop, Singh, Uma Maheshwar, Kalia, Sanjay, Kumar, Arvind, Singh, Vikas K., Sinha, Pallavi
Publicado 2024Enlace del recurso
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Epigenetics and epigenomics: underlying mechanisms, relevance, and implications in crop improvement por Agarwal, Gaurav, Kudapa, Himabindu, Ramalingam, Abirami, Choudhary, Divya, Sinha, Pallavi, Garg, Vanika, Singh, Vikas K., Patil, Gunvant B., Pandey, Manish K., Nguyen, Henry T., Guo, Baozhu, Sunkar, Ramanjulu, Niederhuth, Chad E., Varshney, Rajeev K.
Publicado 2020Enlace del recurso
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Celebrating Professor Rajeev K. Varshney's transformative research odyssey from genomics to the field on his induction as Fellow of the Royal Society por Garg, Vanika, Barmukh, Rutwik, Annapurna Chitikineni, Roorkiwal, Manish, Ojiewo, Chris O., Abhishek Bohra, Thudi, Mahendar, Singh, Vikas K., Kudapa, Himabindu, Saxena, Rachit K., Fountain, Jake C., Mir, Reyazul Rouf, Chellapilla Bharadwaj, Xiaoping Chen, Liu Xin, Pandey, Manish K.
Publicado 2024Enlace del recurso
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Enhancing crop resilience through elite pre‐breeding lines with key traits for dry direct‐seeded rice por Paul, Pronob J., Patil, Suyash B., Vipparla, Abhilash K., Sagare, Deepti B., Jain, Abhinav, Balaraju, E., Venkateswarlu, Challa, Alam, Shamshad, Anandan, A., Dash, Sushant, Sah, Rameshwar, MS, Anantha, Gireesh, C., Kalia, Sanjay, Singh, Uma Maheshwar, Kumar, Arvind, Bhosale, Sankalp, Sinha, Pallavi, Singh, Vikas K.
Publicado 2025Enlace del recurso
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Genome‐wide analysis of epigenetic and transcriptional changes associated with heterosis in pigeonpea por Sinha, Pallavi, Singh, Vikas K., Saxena, Rachit K., Kale, Sandip M., Li, Yuqi, Garg, Vanika, Meifang, Tang, Khan, Aamir W., Kim, Kyung Do, Chitikineni, Annapurna, Saxena, K.B., Sameer Kumar, C.V., Liu, Xin, Xu, Xun, Jackson, Scott, Powell, Wayne, Nevo, Eviatar, Searle, Iain R., Lodha, Mukesh, Varshney, Rajeev K.
Publicado 2020Enlace del recurso
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Genomic resources in plant breeding for sustainable agriculture por Thudi, Mahendar, Palakurthi, Ramesh, Schnable, James C., Chitikineni, Annapurna, Dreisigacker, Susanne, Mace, Emma, Srivastava, Rakesh K., Satyavathi, C. Tara, Odeny, Damaris, Tiwari, Vijay K., Lam, Hon-Ming, Hong, Yan Bin, Singh, Vikas K., Li, Guowei, Xu, Yunbi, Chen, Xiaoping, Kaila, Sanjay, Nguyen, Henry, Sivasankar, Sobhana, Jackson, Scott A., Close, Timothy J., Shubo, Wan, Varshney, Rajeev K.
Publicado 2021Enlace del recurso
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Author Correction: A chickpea genetic variation map based on the sequencing of 3,366 genomes por Varshney, Rajeev K., Roorkiwal, Manish, Shuai Sun, Bajaj, Prasad, Annapurna Chitikineni, Thudi, Mahendar, Singh, Narendra P., Xiao Du, Upadhyaya, Hari D., Khan, Aamir, Yue Wang, Vanika Garg, Guangyi Fan, Cowling, Wallace A., Crossa, José, Gentzbittel, Laurent, Voss-Fels, Kai Peter, Valluri, Vinod Kumar, Sinha, Pallavi, Singh, Vikas K., Ben, Cécile, Rathore, Abhishek, Punna, Ramu, Muneendra K. Singh, Tar’an, Bunyamin, Chellapilla, Bharadwaj, Yasin, Mohammad, Pithia, Motisagar S., Singh, Servejeet, Soren, Khela Ram, Kudapa, Himabindu, Jarquín, Diego, Cubry, Philippe, Hickey, Lee T., Dixit, Girish Prasad, Thuillet, Anne-Céline, Hamwieh, Aladdin, Kumar, Shiv, Deokar, Amit, Chaturvedi, Sushil Kumar, Francis, Aleena, Howard, Réka, Chattopadhyay, Debasis, Edwards, David, Lyons, Eric, Vigouroux, Yves, Hayes, Ben J., Wettberg, Eric von, Datta, Swapan K., Huanming Yang, Nguyen, Henry T., Jian Wang, Siddique, Kadambot H.M., Mohapatra, Trilochan, Bennetzen, Jeffrey L., Xun Xu, Xin Liu
Publicado 2022Enlace del recurso
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A chickpea genetic variation map based on the sequencing of 3,366 genomes por Varshney, Rajeev K., Roorkiwal, Manish, Sun, Shuai, Bajaj, Prasad, Chitikineni, Annapurna, Thudi, Mahendar, Singh, Narendra P., Du, Xiao, Upadhyaya, Hari D., Khan, Aamir W., Wang, Yue, Garg, Vanika, Fan, Guangyi, Cowling, Wallace A., Crossa, José, Gentzbittel, Laurent, Voss-Fels, Kai Peter, Valluri, Vinod Kumar, Sinha, Pallavi, Singh, Vikas K., Ben, Cécile, Rathore, Abhishek, Punna, Ramu, Singh, Muneendra K., Tar’an, Bunyamin, Bharadwaj, Chellapilla, Yasin, Mohammad, Pithia, Motisagar S., Singh, Servejeet, Soren, Khela Ram, Kudapa, Himabindu, Jarquín, Diego, Cubry, Philippe, Hickey, Lee T., Dixit, Girish Prasad, Thuillet, Anne-Céline, Hamwieh, Aladdin, Kumar, Shiv, Deokar, Amit A., Chaturvedi, Sushil K., Francis, Aleena, Howard, Réka, Chattopadhyay, Debasis, Edwards, David, Lyons, Eric, Vigouroux, Yves, Hayes, Ben J., von Wettberg, Eric, Datta, Swapan K., Yang, Huanming, Nguyen, Henry T., Wang, Jian, Siddique, Kadambot H. M., Mohapatra, Trilochan, Bennetzen, Jeffrey L., Xu, Xun, Liu, Xin
Publicado 2021Enlace del recurso
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