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1 to 10 of 19 Results
Oct 25, 2016
Neha Gujaria; Ashish Kumar; Preeti Dauthal; Anuja Dubey; Pavana J Hiremath; BhanuPrakash Amindala; Andrew D Farmer; Mangla Bhide; Trushar Shah; Pooran M.Gaur; Hari D. Upadhyaya; Sabhyata Bhatia; Douglas R. Cook; Gregory D May; Rajeev K. Varshney, 2016, "Transcript map of Chickpea (Cicer arietinum L.)", https://doi.org/10.21421/D2/TOYQD2, ICRISAT Dataverse, V1
A transcript map has been constructed by the development and integration of genic molecular markers (GMMs) including single nucleotide polymorphism (SNP), genic microsatellite or simple sequence repeat (SSR) and intron spanning region (ISR)-based markers, on an inter-specific map...
Oct 25, 2016
Punna Ramu; S. P. Deshpande; S. Senthilvel; B. Jayashree; C. Billot; M. Deu; L. Ananda Reddy; C. T. Hash, 2016, "SSR and QTL map of Sorghum", https://doi.org/10.21421/D2/QTQI9R, ICRISAT Dataverse, V1
Genetic map of sorghum consisting of SSRs and QTLs CMap Visualization Links: SorghumMarkers-QTLs Sorghum SSR Markers DOI: doi:10.1007/s11032-009-9365-9
Oct 25, 2016
Bhimana Gautami; Daniel Foncéka; Manish K. Pandey; Márcio C. Moretzsohn; Venkataswamy Sujay; Hongde Qin; Yanbin Hong; Issa Faye; Xiaoping Chen; BhanuPrakash Amindala; Trushar M. Shah; Makanahally V. C. Gowda; Shyam N. Nigam; Xuanqiang Liang; Dave A. Hoisington; Baozhu Guo; David J. Bertioli; Jean-Francois Rami; Rajeev K. Varshney, 2016, "Reference consensus genetic map of Groundnut", https://doi.org/10.21421/D2/WG4WCF, ICRISAT Dataverse, V1
A reference consensus genetic map was developed from 10 RILs and one BC population using the marker segregation data. This map comprised of 897 marker loci including 895 SSR and 2 cleaved amplified polymorphic sequence (CAPS). CMap Visualization Links: Reference consensus genetic...
Mar 17, 2018
Santisree Parankusam; Pooja B Mathur; Kiran K Sharma, 2018, "Quantitative proteomic data of chickpea leaves primed with nitric oxide donor for stress tolerance", https://doi.org/10.21421/D2/UY20HC, ICRISAT Dataverse, V1, UNF:6:EwZr0DmQGqXI4PT1On1+Xw==
Nitric oxide (NO) has emerged as a central regulator of various growth and developmental events in plants, such as seed germination, root growth, floral transition, senescence and stress defenses. However, the molecular mechanisms and targets of nitric oxide (NO) aren't fully kno...
Oct 25, 2016
Deepa Jaganathan; Mahendar Thudi; Sandip Kale; Sarwar Azam; Manish Roorkiwal; Pooran M.Gaur; P. B. Kavi Kishor; Henry Nguyen; Tim Sutton; Rajeev K. Varshney, 2016, "Intra-specific genetic map data of ICC 4958 x ICC 1882 by Genotyping-by-sequencing approach", https://doi.org/10.21421/D2/HQ8RJV, ICRISAT Dataverse, V1
To enhance the marker density in the “QTL-hotspot” region, harboring several QTLs for drought tolerance-related traits identified on linkage group 04 (CaLG04) in chickpea recombinant inbred line (RIL) mapping population ICC 4958 × ICC 1882, a genotyping-by-sequencing approach was...
Oct 25, 2016
B. N. Gnanesh; Abhishek Bohra; M. Sharma; M. Byregowda; S. Pande; V. Wesley; Rachit K Saxena; K.B. Saxena; P. B. Kavi Kishor; Rajeev K. Varshney, 2016, "Intra-specific genetic map data from ICP 8863 × ICPL 20097 and TTB 7 × ICP 7035 populations", https://doi.org/10.21421/D2/L3GSS7, ICRISAT Dataverse, V1
The datset contains over 3000 SSR markers details on parental genotypes of each mapping population. Intra-specific genetic maps comprising of 11 linkage groups and 120 and 78 SSR loci were developed for ICP 8863 × ICPL 20097 and TTB 7 × ICP 7035 populations, respectively. Composi...
Oct 25, 2016
Spurthi N. Nayak; Hongyan Zhu; Nicy Varghese; Subhojit Datta; Hong-Kyu Choi; Ralf Horres; Ruth Jüngling; Jagbir Singh; P. B. Kavi Kishor; S. Sivaramakrishnan; Dave A. Hoisington; Günter Kahl; Peter Winter; Douglas R. Cook; Rajeev K. Varshney, 2016, "Inter-specific genetic map of C. arietinum ICC 4958 × C. reticulatum PI 489777", https://doi.org/10.21421/D2/KCPPYA, ICRISAT Dataverse, V1
311 SSRs and 71 gene based SNPs were developed from mapping population of C. arietinum ICC 4958 × C. reticulatum PI 489777 CMap Visualization Links: ICC 4958 X PI 489777 DOI: doi:10.1007/s00122-010-1265-1
Oct 25, 2016
Bhimana Gautami; Manish K. Pandey; V. Vadez; S. N. Nigam; P. Ratnakumar; L. Krishnamurthy; T. Radhakrishnan; Makanahally V. C. Gowda; M. L. Narasu; Dave A. Hoisington; S. J. Knapp; Rajeev K. Varshney, 2016, "Individual and consensus QTL maps of Groundnut from ICGS76 X CSMG84-1, ICGS44 X ICGS76 and TAG24 X ICGV86031", https://doi.org/10.21421/D2/SQSI3T, ICRISAT Dataverse, V1
With the aim of understanding the genetic basis and identification of quantitative trait loci (QTL) for drought tolerance, two new recombinant inbred line (RIL) mapping populations, namely ICGS 76 × CSMG 84-1 (RIL-2) and ICGS 44 × ICGS 76 (RIL-3), were used. CMap Visualization Li...
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 18, 2019
Santosh P Deshpande, s.deshpande@cgiar.org; Laavanya Rayaprolu, rayaprolulaavanya@gmail.com; Rajeev Gupta, G.Rajeev@cgiar.org; Abhishek Rathore, a.rathore@cgiar.org, 2019, "Genome-wide association study for major biofuel traits in Sorghum minicore collection", https://doi.org/10.21421/D2/GGXBNP, ICRISAT Dataverse, V1
This dataset includes the research work carried out in evaluating biofuel traits in sorghum mini core accessions. The imputed genotypic data have been previously reported (Morris et al., 2013). GBS reads were processed by using default parameters of the TASSEL-5.2 pipeline. The t...
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