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Scaglione, Jamie B.,Akey, David L.,Sullivan, Rachel,Kittendorf, Jeffrey D.,Rath, Christopher M.,Kim, Eung-Soo,Smith, Janet L.,Sherman, David H. WILEY-VCH Verlag 2010 Angewandte Chemie Vol.49 No.33
<B>Graphic Abstract</B> <P>A narrow tunnel: Biochemical and structural analysis of the tautomycetin thioesterase (TE) has provided the first high-resolution structure of a linear-chain-terminating TE in polyketide biosynthesis, showing the enzyme to be stereoselective with a constrained substrate chamber relative to macrolactone-forming thioesterases. <img src='wiley_img_2010/14337851-2010-49-33-ANIE201000032-content.gif' alt='wiley_img_2010/14337851-2010-49-33-ANIE201000032-content'> </P>
( Hwa Young Heo ),( Jamie Sherman ) 한국육종학회 2013 Plant Breeding and Biotechnology Vol.1 No.4
To utilize the favorable gene(s) from winter wheat for genetic improvement of spring wheat, this study was carried out to identify the quantitative trait loci (QTL) associated with grain protein content (GPC) and grain hardness (GH) by analysis of recombinant inbred lines (RILS) derived from a cross between spring wheat and spring version of winter wheat. A genetic map of 334 loci was constructed which covered 1575.30cM on all 21 chromosomes. Two QTLs on 3B and 5B chromosome were detected for GPC. A QTL identified barc77 on chromosome 3B had additive effect of 0.17 and the other QTL identified by gwm499 on chromosome 5B had additive effect of 0.19. There were two major QTLs for GH identified on Chromosome 1B and chromosome 5A. The QTL on 1B was localized within a 18.7cM region flanked by wmc719 and wmc367-1 with 1.75 additive effect. The QTL on chromosome 5A flanked by SNP markers, IWA6573 and IWA2363, had additive effect of 1.44.
Identification of Microsatellite Markers Linked to Photoperiod Insensitive Gene Ppd-D1a in Wheat
Heo, Hwa-Young,Talbert, Luther,Blake, Nancy,Sherman, Jamie,Suh, Sae-Jung,Kim, Dea-Wook,Kim, Si-Ju The Korean Society of Crop Science 2007 Korean journal of crop science Vol.52 No.1
To facilitate breeding of lines with either the Ppd-D1a or ppd-d1a, we screened 342 $F_2$ progenies from a cross between Laura (photoperiod insensitive, Ppd-D1a) spring wheat and SWP5304 (photoperiod sensitive, ppd-d1a) for their time to heading under 10 hour day length, and with a set of 37 microsatellite primers previously mapped to chromosome 2D. Bulk segregant analysis was used to identify tow linked microsatellite loci. The Ppd-D1a locus was flanked by Xgwm484 with 13.7 cM distance and Xgwm455 with 27 cM. These markers may be useful in selection of the desired photoperiod sensitivity in segregating populations grown in Northern latitude.
Identification of Microsatellite Markers Linked to Photoperiod Insensitive Gene Ppd-D1a in Wheat
Hwa-Young Heo,Luther Talbert,Nancy Blake,Jamie Sherman,Sae-Jung Suh,Dea-Wook Kim,Si-Ju Kim 韓國作物學會 2007 Korean journal of crop science Vol.52 No.1
To facilitate breeding of lines with either the Ppd-D1a or ppd-d1a, we screened 342 F2 progenies from a cross between Laura (photoperiod insensitive, Ppd-D1a) spring wheat and SWP5304 (photoperiod sensitive, ppd-d1a) for their time to heading under 10 hour day length, and with a set of 37 microsatellite primers previously mapped to chromosome 2D. Bulk segregant analysis was used to identify tow linked microsatellite loci. The Ppd-D1a locus was flanked by Xgwm484 with 13.7 cM distance and Xgwm455 with 27 cM. These markers may be useful in selection of the desired photoperiod sensitivity in segregating populations grown in Northern latitude.