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        <dc:title>Stay-green QTLs effects on water extraction, transpiration efficiency and seed yield depend on recipient parent background</dc:title>
        <dc:creator>Vadez, V</dc:creator>
        <dc:creator>Deshpande, S P</dc:creator>
        <dc:creator>Kholova, J</dc:creator>
        <dc:creator>Hammer, G L</dc:creator>
        <dc:creator>Borrell, A K</dc:creator>
        <dc:creator>Talwar, H S</dc:creator>
        <dc:creator>Hash, C T</dc:creator>
        <dc:subject>Sorghum</dc:subject>
        <dc:description>A stay-green phenotype enhances the adaptation of sorghum to terminal&#13;
drought conditions, although the underlying physiological mechanisms leading to the&#13;
expression of stay-green remain unclear. Differences in tillering and leaf area at anthesis,&#13;
transpiration efficiency (TE), water extraction, harvest index (HI) and yield under both&#13;
terminal drought and fully-irrigated conditions were assessed in 29 introgression lines&#13;
(IL) developed targeting stay-green QTLs Stg1, Stg2, Stg3, Stg4, StgA, and StgB in S35&#13;
background, and 16 IL developed targeting Stg1, Stg3, Stg4, and StgB in R16&#13;
background. Transpiration efficiency was increased by StgB in the R16 background,&#13;
whereas there was no effect on this trait in the S35 background. Water extraction was&#13;
increased by Stg1 in the S35 background, whereas there was no effect in the R16&#13;
background. StgB modified the proportion of water extracted before and after anthesis in&#13;
the S35 background. While tillering and leaf area at anthesis were decreased by Stg1 and&#13;
Stg3 in the S35 background, there was no such effect in R16. By contrast, yield data&#13;
under fully-irrigated conditions showed higher tiller grain yield in Stg1, Stg2, and Stg3&#13;
ILs. While yield differences were mostly explained by harvest index (HI) variation, the&#13;
substantial yield variation unexplained by HI was closely related to TE in the S35&#13;
background (R2 = 0.29), and more so in the R16 background (R2 = 0.72), while it was&#13;
closely related to total water extracted in the S35 background (R2 = 0.41), but not in the&#13;
R16 background. These data indicate the potential for several stay-green QTLs to affect&#13;
traits related to plant water use and capture. However, they also show that these effects&#13;
depend on the interaction between genetic background and individual QTLs.</dc:description>
        <dc:publisher>CSIRO Publishing</dc:publisher>
        <dc:date>2011</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/613/1/Vadez_et_al_-_FPB_Manuscript_-_Revised__2_.pdf</dc:identifier>
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        <dc:language>en</dc:language>
        <dc:identifier>http://oar.icrisat.org/613/2/FP11073_-_galley_proof.pdf</dc:identifier>
        <dc:identifier>  Vadez, V and Deshpande, S P and Kholova, J and Hammer, G L and Borrell, A K and Talwar, H S and Hash, C T  (2011) Stay-green QTLs effects on water extraction, transpiration efficiency and seed yield depend on recipient parent background.  Functional Plant Biology, 38 (7).  pp. 553-566.  ISSN 1445-4408     </dc:identifier>
        <dc:relation>http://dx.doi.org/10.1071/FP11073</dc:relation></oai_dc:dc>
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