Publications of NIPGR Scientists

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    Development, characterization and cross-species transferability of genomic SSR markers in berseem (Trifolium alexandrinum L.), an important multi-cut annual forage legume
    (Springer, 2015) Verma, Priyanka; Chandra, Amaresh; Roy, Ajoy Kumar; Malaviya, Devendra Ram; Kaushal, Pankaj; Pandey, Dinesh; Bhatia, Sabhyata
    Egyptian clover (Trifolium alexandrinum), a multi-cut forage legume, is widely grown as an annual feed crop. Genetic improvement in this legume is largely hampered due to limited availability of genomic resources. Hence, a genomic library enriched for GA/CT motif was constructed to develop SSR primers. As a result, 667 SSR primer pairs were developed and 111 were validated in T. alexandrinum cv. Wardan s-99-1. Among these, 45 primer pairs were used for the analysis of genetic diversity among 86 Trifolium accessions, resulting in 220 alleles with an average of 4.88 alleles per locus. Polymorphic information content for these markers ranged from 0.040 to 0.819 with an average of 0.445. The observed and expected heterozygosity for individual loci ranged from 0.39 to 0.89 and 0.368 to 0.80 with an average of 0.675 and 0.659, respectively. The markers exhibited varied levels of cross-species transferability ranging from 93.33 % across T. resupinatum to 40.0 % across T. balansae. Phylogenetic relationships were analyzed using the unweighted pair group method with arithmetic averages (UPGMA)-based dendrogram which was able to establish the uniqueness of each genotype and grouped them into two major clusters. To the best of our knowledge, the SSR markers reported here are among the first to be reported in this important yet neglected forage legume. They were assessed to be highly efficient and polymorphic and found to be useful for distinguishing the closely related genotypes of Trifolium. This large resource of SSR markers would therefore facilitate new avenues for T. alexandrinum genomics.
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    Generation of expressed sequence tags under cadmium stress for gene discovery and development of molecular markers in chickpea
    (Springer, 2014) Gaur, Rashmi; Bhatia, Sabhyata; Gupta, Meetu
    Chickpea is the world's third most important legume crop and belongs to Fabaceae family but suffered from severe yield loss due to various biotic and abiotic stresses. Development of modern genomic tools such as molecular markers and identification of resistant genes associated with these stresses facilitate improvement in chickpea breeding towards abiotic stress tolerance. In this study, 1597 high-quality expressed sequence tags (ESTs) were generated from a cDNA library of variety Pusa 1105 root tissue after cadmium (Cd) treatment. Assembly of ESTs resulted in a total of 914 unigenes of which putative homology was obtained for 38.8 % of unigenes after BLASTX search. In terms of species distribution, majority of sequences found similarity with Medicago truncatula followed by Glycine max, Vitis vinifera and Populus trichocarpa and Pisum sativum sequences. Functional annotation was assigned using Blast2Go, and the Gene Ontology (GO) terms were categorized into biological process, molecular function and cellular component. Approximately 10.83 % of unigenes were assigned at least one GO term. Moreover, in the distribution of transcripts into various biological pathways, 20 of the annotated transcripts were assigned to ten pathways in KEGG database. A majority of the genes were found to be involved in sulphur and nitrogen metabolism. In the quantitative real-time PCR analysis, five of the transcription factors and three of the transporter genes were found to be highly expressed after Cd treatment. Besides, the utility of ESTs was demonstrated by exploiting them for the development of 83 genic molecular markers including EST-simple sequence repeats and intron targeted polymorphism that would assist in tagging of genes related to metal stress for future prospects.