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        <dc:title>Identification of trait-specific germplasm and developing a mini core collection for efficient use of foxtail millet genetic resources in crop improvement</dc:title>
        <dc:creator>Upadhyaya, H D</dc:creator>
        <dc:creator>Ravishankar, C R</dc:creator>
        <dc:creator>Narasimhudu, Y</dc:creator>
        <dc:creator>Sarma, N D R K</dc:creator>
        <dc:creator>Singh, S K</dc:creator>
        <dc:creator>Varshney, S K</dc:creator>
        <dc:creator>Reddy, V G</dc:creator>
        <dc:creator>Singh, Sube</dc:creator>
        <dc:creator>Parzies, H K</dc:creator>
        <dc:creator>Dwivedi, S L</dc:creator>
        <dc:creator>Nadaf, H L</dc:creator>
        <dc:creator>Sahrawat, K L</dc:creator>
        <dc:creator>Gowda, C L L</dc:creator>
        <dc:subject>Millets</dc:subject>
        <dc:description>Foxtail millet is an important staple crop in some parts of China, India and Japan, and a potential bioenergy&#13;
source. The grains are rich source of protein, fiber, minerals and vitamins. We had earlier reported&#13;
the development of a core collection (155 accessions) of foxtail millet. This study was initiated to identify&#13;
trait-specific germplasm for agronomic and nutritional traits, and to develop a mini core through multilocational&#13;
evaluation of the foxtail millet core collection. One hundred and fifty-five accessions together&#13;
with five controls (four common and one location-specific control) were evaluated for 21 descriptors at&#13;
five agro-ecologically diverse locations in India during the 2008 rainy season. The experiment was conducted&#13;
in an alpha design with three replications at Patancheru, and in an augmented design with one of&#13;
the five controls repeated after every nine-test entries at other locations. A number of diverse germplasm&#13;
accessions with agronomically (earliness and high grain yield) and nutritionally (high seed protein, calcium,&#13;
iron and zinc) superior traits were identified for use in foxtail millet breeding. The hierarchical&#13;
cluster analysis of data using phenotypic distances resulted in 25 clusters, from each cluster, ∼10% or&#13;
a minimum of one accession was selected to form a mini core, which comprised of 35 accessions. The&#13;
comparison of mean, variance, frequency distribution, diversity (H’) and phenotypic correlations revealed&#13;
that the mini core indeed captured adequate variability from the core collection. This mini core collection&#13;
is an ideal pool of diverse germplasm for studying population structure and diversity, and identifying new&#13;
sources of variation for use in breeding and genomics studies in foxtail millet.</dc:description>
        <dc:publisher>Elsevier</dc:publisher>
        <dc:date>2011</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/947/1/FCR_124_459-467__2011.pdf</dc:identifier>
        <dc:identifier>  Upadhyaya, H D and Ravishankar, C R and Narasimhudu, Y and Sarma, N D R K and Singh, S K and Varshney, S K and Reddy, V G and Singh, Sube and Parzies, H K and Dwivedi, S L and Nadaf, H L and Sahrawat, K L and Gowda, C L L  (2011) Identification of trait-specific germplasm and developing a mini core collection for efficient use of foxtail millet genetic resources in crop improvement.  Field Crops Research, 124 (3).  pp. 459-467.      </dc:identifier>
        <dc:relation>http://dx.doi.org/10.1016/j.fcr.2011.08.004</dc:relation></oai_dc:dc>
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