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        <dc:title>Translational genomics for achieving higher genetic gains in groundnut</dc:title>
        <dc:creator>Pandey, M K</dc:creator>
        <dc:creator>Pandey, A K</dc:creator>
        <dc:creator>Kumar, R</dc:creator>
        <dc:creator>Nwosu, C V</dc:creator>
        <dc:creator>Guo, B</dc:creator>
        <dc:creator>Wright, G C</dc:creator>
        <dc:creator>Bhat, R S</dc:creator>
        <dc:creator>Chen, X</dc:creator>
        <dc:creator>Bera, S K</dc:creator>
        <dc:creator>Yuan, M</dc:creator>
        <dc:creator>Jiang, H</dc:creator>
        <dc:creator>Faye, I</dc:creator>
        <dc:creator>Radhakrishnan, T</dc:creator>
        <dc:creator>Wang, X</dc:creator>
        <dc:creator>Liang, X</dc:creator>
        <dc:creator>Liao, B</dc:creator>
        <dc:creator>Zhang, X</dc:creator>
        <dc:creator>Varshney, R K</dc:creator>
        <dc:creator>Zhuang, W</dc:creator>
        <dc:subject>Groundnut</dc:subject>
        <dc:subject>Oilseeds</dc:subject>
        <dc:subject>Genetics and Genomics</dc:subject>
        <dc:subject>Food and Nutrition</dc:subject>
        <dc:description>Cultivated groundnut or peanut (Arachis hypogaea), an allopolyploid oilseed crop with a large and complex genome,&#13;
is one of the most nutritious food. This crop is grown in more than 100 countries, and the low productivity has remained&#13;
the biggest challenge in the semiarid tropics. Recently, the groundnut research community has witnessed fast progress and&#13;
achieved several key milestones in genomics research including genome sequence assemblies of wild diploid progenitors,&#13;
wild tetraploid and both the subspecies of cultivated tetraploids, resequencing of diverse germplasm lines, genome-wide&#13;
transcriptome atlas and cost-effective high and low-density genotyping assays. These genomic resources have enabled&#13;
high-resolution trait mapping by using germplasm diversity panels and multi-parent genetic populations leading to precise&#13;
gene discovery and diagnostic marker development. Furthermore, development and deployment of diagnostic markers have&#13;
facilitated screening early generation populations as well as marker-assisted backcrossing breeding leading to development&#13;
and commercialization of some molecular breeding products in groundnut. Several new genomics applications/technologies&#13;
such as genomic selection, speed breeding, mid-density genotyping assay and genome editing are in pipeline. The integration&#13;
of these new technologies hold great promise for developing climate-smart, high yielding and more nutritious groundnut&#13;
varieties in the post-genome era.</dc:description>
        <dc:publisher>Springer Verlag</dc:publisher>
        <dc:date>2020-04</dc:date>
        <dc:type>Article</dc:type>
        <dc:type>PeerReviewed</dc:type>
        <dc:format>application/pdf</dc:format>
        <dc:language>en</dc:language>
        <dc:identifier>http://oar.icrisat.org/11505/1/s00122-020-03592-2.pdf</dc:identifier>
        <dc:identifier>  Pandey, M K and Pandey, A K and Kumar, R and Nwosu, C V and Guo, B and Wright, G C and Bhat, R S and Chen, X and Bera, S K and Yuan, M and Jiang, H and Faye, I and Radhakrishnan, T and Wang, X and Liang, X and Liao, B and Zhang, X and Varshney, R K and Zhuang, W  (2020) Translational genomics for achieving higher genetic gains in groundnut.  Theoretical and Applied Genetics (TSI), 133 (5).  pp. 1679-1702.  ISSN 0040-5752     </dc:identifier>
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