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1 to 10 of 106 Results
Oct 31, 2019
Santosh P Deshpande; Laavanya Rayaprolu; Rajeev Gupta; Abhishek, Rathore, 2019, "Genome-wide association study for major biofuel traits in Sorghum minicore collection", https://doi.org/10.21421/D2/GGXBNP, ICRISAT Dataverse, V2
This dataset includes the research work on the evaluation of sorghum mini-core accessions for biofuel traits. This raw sequence data obtained from Genotyping-By-Sequencing (GBS) was originally used for a publication Morris et al. (PNAS 2013:110-2 pp:453-458) by mapping the sequen...
application/gzip - 20.0 MB - MD5: 261c98db250650a3b6990ef35dd29385
application/gzip - 12.9 MB - MD5: dc8019e026f22a5d2449f76c06e68ec4
Sep 17, 2019
K N S Usha Kiranmayee; P B Kavi Kishor; C. T. Hash; Santosh, Deshpande, 2019, "Evaluation of QTLs for Shoot Fly (Atherigona soccata) Resistance using 1894 F2 population based on SSR marker data", https://doi.org/10.21421/D2/45YOFR, ICRISAT Dataverse, V1
Seedling leaf blade glossiness and trichome density are morphological traits associated with shoot fly resistance (SFR). A fine-mapping population was developed for shoot fly resistance by crossing introgression lines RSG04008-6 (susceptible) × J2614-11 (resistant). A total of 19...
Sep 17, 2019
K N S Usha Kiranmayee; C. T. Hash; S Sivasubramani; P Ramu; A Bhanu Prakash; Abhishek, Rathore; P B Kavi Kishor; Rajeev Gupta; Santosh, Deshpande, 2019, "Genotyping by Sequencing SNP data for the cross RSG04008-6 × J2614-11 in Sorghum", https://doi.org/10.21421/D2/TO4JWO, ICRISAT Dataverse, V1
This study was conducted to dissect the genetic basis of stay-green Quantitative Trait Loci (QTL) s and shoot fly resistance morphological QTLs on sorghum chromosome SBI-10 long arm (L) using high-density single nucleotide polymorphism (SNP) genetic markers. A fine-mapping popula...
Oct 17, 2018
Rajeev K. Varshney; Chengcheng Shi; Mahendar Thudi; Cedric Mariac; Jason Wallace; Peng Qi; He Zhang; Yusheng Zhao; Xiyin Wang; Abhishek, Rathore; Rakesh K. Srivastava; Annapurna Chitikineni; Guangyi Fan; Prasad Bajaj; Somashekhar Punnuri; Gupta SK; Hao Wang; Yong Jiang; Marie Couderc; Mohan A. V. S. K. Katta; Dev R. Paudel; K. D. Mungra; Wenbin Chen; Karen R. Harris-Shultz; Vanika Garg; Neetin Desai; Dadakhalandar Doddamani; Ndjido Ardo Kane; Joann A. Conner; Arindam Ghatak; Palak Chaturvedi; Sabarinath Subramaniam; Om Prakash Yadav; Cécile Berthouly-Salazar; Falalou Hamidou; Jianping Wang; Xinming Liang; Jérémy Clotault; Hari D. Upadhyaya; Philippe Cubry; Benedicte Rhone; Mame Codou Gueye; Ramanjulu Sunkar; Christian Dupuy; Francesca Sparvoli; Shifeng Cheng; R. S. Mahala; Bharat Singh; Rattan S. Yadav; Eric Lyons; Swapan K. Datta; C. T. Hash; Katrien M. Devos; Edward Buckler; Jeffrey L. Bennetzen; Andrew H. Paterson; Peggy Ozias-Akins; Stefania Grando; Jun Wang; Trilochan Mohapatra; Wolfram Weckwerth; Jochen C. Reif; Xin Liu; Yves Vigouroux; Xun Xu, 2018, "Data files related to Pearl millet draft genome assembly v1.1, scaffolds and annotations", https://doi.org/10.21421/D2/SY6VXQ, ICRISAT Dataverse, V1
The data files contains draft genome sequence of Pearl Millet along with its structural and functional annotation. The sequence of seven chromosomes are available in FASTA file "pearl_millet_v1.1.fa", whereas those assembled sequences (scaffolds) which could not be mapped to any...
application/gzip - 66.10 MB - MD5: 689a334fff90650c0c529564be2ad77c
application/gzip - 398.7 MB - MD5: 07b34fb928f55c4403583950a3d331ad
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