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        <dc:title>Stability Performance of Inductively Coupled Plasma Mass Spectrometry-Phenotyped Kernel Minerals Concentration and Grain Yield in Maize in Different Agro-Climatic Zones</dc:title>
        <dc:creator>Mallikarjuna, M G</dc:creator>
        <dc:creator>Thirunavukkarasu, N</dc:creator>
        <dc:creator>Hossain, F</dc:creator>
        <dc:creator>Bhat, J S</dc:creator>
        <dc:creator>Jha, S K</dc:creator>
        <dc:creator>Rathore, A</dc:creator>
        <dc:creator>Agrawal, P K</dc:creator>
        <dc:creator>Pattanayak, A</dc:creator>
        <dc:creator>Reddy, S S</dc:creator>
        <dc:creator>Gularia, S K</dc:creator>
        <dc:creator>Singh, A M</dc:creator>
        <dc:creator>Manjaiah, K M</dc:creator>
        <dc:creator>Gupta, H S</dc:creator>
        <dc:subject>Maize</dc:subject>
        <dc:subject>Climate Change</dc:subject>
        <dc:description>Deficiency of iron and zinc causes micronutrient malnutrition or hidden hunger, which&#13;
severely affects ~25% of global population. Genetic biofortification of maize has emerged&#13;
as cost effective and sustainable approach in addressing malnourishment of iron and zinc&#13;
deficiency. Therefore, understanding the genetic variation and stability of kernel micronutrients&#13;
and grain yield of the maize inbreds is a prerequisite in breeding micronutrient-rich high&#13;
yielding hybrids to alleviate micronutrient malnutrition. We report here, the genetic variability&#13;
and stability of the kernel micronutrients concentration and grain yield in a set of 50 maize&#13;
inbred panel selected from the national and the international centres that were raised at six&#13;
different maize growing regions of India. Phenotyping of kernels using inductively coupled&#13;
plasma mass spectrometry (ICP-MS) revealed considerable variability for kernel minerals&#13;
concentration (iron: 18.88 to 47.65 mg kg–1; zinc: 5.41 to 30.85 mg kg–1; manganese: 3.30&#13;
to17.73 mg kg–1; copper: 0.53 to 5.48 mg kg–1) and grain yield (826.6 to 5413 kg ha–1). Significant&#13;
positive correlation was observed between kernel iron and zinc within (r = 0.37 to r =&#13;
0.52, p &lt; 0.05) and across locations (r = 0.44, p &lt; 0.01). Variance components of the additive&#13;
main effects and multiplicative interactions (AMMI) model showed significant genotype&#13;
and genotype × environment interaction for kernel minerals concentration and grain yield.&#13;
Most of the variation was contributed by genotype main effect for kernel iron (39.6%), manganese&#13;
(41.34%) and copper (41.12%), and environment main effects for both kernel zinc&#13;
(40.5%) and grain yield (37.0%). Genotype main effect plus genotype-by-environment interaction&#13;
(GGE) biplot identified several mega environments for kernel minerals and grain&#13;
yield. Comparison of stability parameters revealed AMMI stability value (ASV) as the better&#13;
representative of the AMMI stability parameters. Dynamic stability parameter GGE distance&#13;
(GGED) showed strong and positive correlation with both mean kernel concentrations and&#13;
grain yield. Inbreds (CM-501, SKV-775, HUZM-185) identified from the present investigation&#13;
will be useful in developing micronutrient-rich as well as stable maize hybrids without&#13;
compromising grain yield.</dc:description>
        <dc:publisher>Public Library of Science</dc:publisher>
        <dc:date>2015-09-25</dc:date>
        <dc:type>Article</dc:type>
        <dc:type>PeerReviewed</dc:type>
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        <dc:language>en</dc:language>
        <dc:identifier>http://oar.icrisat.org/9034/1/journal.pone.0139067.pdf</dc:identifier>
        <dc:identifier>  Mallikarjuna, M G and Thirunavukkarasu, N and Hossain, F and Bhat, J S and Jha, S K and Rathore, A and Agrawal, P K and Pattanayak, A and Reddy, S S and Gularia, S K and Singh, A M and Manjaiah, K M and Gupta, H S  (2015) Stability Performance of Inductively Coupled Plasma Mass Spectrometry-Phenotyped Kernel Minerals Concentration and Grain Yield in Maize in Different Agro-Climatic Zones.  PLoS ONE.  01-24.  ISSN 1932-6203     </dc:identifier>
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