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Featured researches published by Qiuhong Wu.


PLOS ONE | 2015

High-Density Genetic Linkage Map Construction and QTL Mapping of Grain Shape and Size in the Wheat Population Yanda1817 × Beinong6

Qiuhong Wu; Y. Chen; Shenghui Zhou; Lin Fu; Jiao-Jiao Chen; Yao Xiao; Dong Zhang; Shuhong Ouyang; Xiaojie Zhao; Yu Cui; Deyun Zhang; Yong Liang; Zhenzhong Wang; Jingzhong Xie; Jinxia Qin; Guoxin Wang; Delin Li; Yinlian Huang; Meihua Yu; Ping Lu; Li-li Wang; Ling Wang; Hao Wang; Chen Dang; Jie Li; Yan Zhang; Huiru Peng; Cheng-Guo Yuan; Mingshan You; Qixin Sun

High-density genetic linkage maps are necessary for precisely mapping quantitative trait loci (QTLs) controlling grain shape and size in wheat. By applying the Infinium iSelect 9K SNP assay, we have constructed a high-density genetic linkage map with 269 F 8 recombinant inbred lines (RILs) developed between a Chinese cornerstone wheat breeding parental line Yanda1817 and a high-yielding line Beinong6. The map contains 2431 SNPs and 128 SSR & EST-SSR markers in a total coverage of 3213.2 cM with an average interval of 1.26 cM per marker. Eighty-eight QTLs for thousand-grain weight (TGW), grain length (GL), grain width (GW) and grain thickness (GT) were detected in nine ecological environments (Beijing, Shijiazhuang and Kaifeng) during five years between 2010–2014 by inclusive composite interval mapping (ICIM) (LOD≥2.5). Among which, 17 QTLs for TGW were mapped on chromosomes 1A, 1B, 2A, 2B, 3A, 3B, 3D, 4A, 4D, 5A, 5B and 6B with phenotypic variations ranging from 2.62% to 12.08%. Four stable QTLs for TGW could be detected in five and seven environments, respectively. Thirty-two QTLs for GL were mapped on chromosomes 1B, 1D, 2A, 2B, 2D, 3B, 3D, 4A, 4B, 4D, 5A, 5B, 6B, 7A and 7B, with phenotypic variations ranging from 2.62% to 44.39%. QGl.cau-2A.2 can be detected in all the environments with the largest phenotypic variations, indicating that it is a major and stable QTL. For GW, 12 QTLs were identified with phenotypic variations range from 3.69% to 12.30%. We found 27 QTLs for GT with phenotypic variations ranged from 2.55% to 36.42%. In particular, QTL QGt.cau-5A.1 with phenotypic variations of 6.82–23.59% was detected in all the nine environments. Moreover, pleiotropic effects were detected for several QTL loci responsible for grain shape and size that could serve as target regions for fine mapping and marker assisted selection in wheat breeding programs.


PLOS ONE | 2013

Comparative high-resolution mapping of the wax inhibitors Iw1 and Iw2 in hexaploid wheat.

Haibin Wu; Jinxia Qin; Jun Han; Xiaojie Zhao; Shuhong Ouyang; Yong Liang; Dong Zhang; Zhenzhong Wang; Qiuhong Wu; Jingzhong Xie; Yu Cui; Huiru Peng; Qixin Sun; Zhiyong Liu

The wax (glaucousness) on wheat leaves and stems is mainly controlled by two sets of genes: glaucousness loci (W1 and W2) and non-glaucousness loci (Iw1 and Iw2). The non-glaucousness (Iw) loci act as inhibitors of the glaucousness loci (W). High-resolution comparative genetic linkage maps of the wax inhibitors Iw1 originating from Triticum dicoccoides, and Iw2 from Aegilops tauschii were developed by comparative genomics analyses of Brachypodium, sorghum and rice genomic sequences corresponding to the syntenic regions of the Iw loci in wheat. Eleven Iw1 and eight Iw2 linked EST markers were developed and mapped to linkage maps on the distal regions of chromosomes 2BS and 2DS, respectively. The Iw1 locus mapped within a 0.96 cM interval flanked by the BE498358 and CA499581 EST markers that are collinear with 122 kb, 202 kb, and 466 kb genomic regions in the Brachypodium 5S chromosome, the sorghum 6S chromosome and the rice 4S chromosome, respectively. The Iw2 locus was located in a 4.1 to 5.4-cM interval in chromosome 2DS that is flanked by the CJ886319 and CJ519831 EST markers, and this region is collinear with a 2.3 cM region spanning the Iw1 locus on chromosome 2BS. Both Iw1 and Iw2 co-segregated with the BF474014 and CJ876545 EST markers, indicating they are most likely orthologs on 2BS and 2DS. These high-resolution maps can serve as a framework for chromosome landing, physical mapping and map-based cloning of the wax inhibitors in wheat.


Theoretical and Applied Genetics | 2015

Genetic and physical mapping of powdery mildew resistance gene MlHLT in Chinese wheat landrace Hulutou

Zhenzhong Wang; Hanwen Li; Deyun Zhang; Li Guo; Jiao-Jiao Chen; Y. Chen; Qiuhong Wu; Jingzhong Xie; Yan Zhang; Qixin Sun; Jan Dvorak; Ming-Cheng Luo; Zhiyong Liu


Theoretical and Applied Genetics | 2014

Comparative genetic mapping and genomic region collinearity analysis of the powdery mildew resistance gene Pm41

Zhenzhong Wang; Yu Cui; Y. Chen; Deyun Zhang; Yong Liang; Dong Zhang; Qiuhong Wu; Jingzhong Xie; Shuhong Ouyang; Delin Li; Yinlian Huang; Ping Lu; Guoxin Wang; Meihua Yu; Shenghui Zhou; Qixin Sun; Zhiyong Liu


Applied Thermal Engineering | 2014

Effects of refrigerant charge and structural parameters on the performance of a direct-expansion solar-assisted heat pump system

Dong Zhang; Qiuhong Wu; Jinping Li; Xiangqiang Kong


Euphytica | 2016

QTL mapping of flag leaf traits in common wheat using an integrated high-density SSR and SNP genetic linkage map

Qiuhong Wu; Zhenzhong Wang; Zhiyong Liu


Theoretical and Applied Genetics | 2015

Comparative fine mapping of the Wax 1 ( W1 ) locus in hexaploid wheat

Ping Lu; Jinxia Qin; Guoxin Wang; Li-li Wang; Zhenzhong Wang; Qiuhong Wu; Jingzhong Xie; Yong Liang; Yong Wang; Deyun Zhang; Qixin Sun; Zhiyong Liu


Theoretical and Applied Genetics | 2016

Fine genetic mapping of spot blotch resistance gene Sb3 in wheat (Triticum aestivum)

Ping Lu; Yong Liang; Delin Li; Zhengzhong Wang; Wenbin Li; Guoxin Wang; Yong Wang; Shenghui Zhou; Qiuhong Wu; Jingzhong Xie; Deyun Zhang; Y. Chen; Miaomiao Li; Yan Zhang; Qixin Sun; Chenggui Han; Zhiyong Liu


Crop Journal | 2017

RNA-seq analysis of Brachypodium distachyon responses to Barley stripe mosaic virus infection

Guoxin Wang; Ling Wang; Yu Cui; Meihua Yu; Chen Dang; Hao Wang; Xuejiao Jin; Lijie Yan; Qiuhong Wu; Dawei Li; Zhiyong Liu


Theoretical and Applied Genetics | 2015

Dynamic evolution of resistance gene analogs in the orthologous genomic regions of powdery mildew resistance gene MlIW170 in Triticum dicoccoides and Aegilops tauschii

Yong Liang; Deyun Zhang; Shuhong Ouyang; Jingzhong Xie; Qiuhong Wu; Zhenzhong Wang; Yu Cui; Ping Lu; Dong Zhang; Ziji Liu; Jie Zhu; Y. Chen; Yan Zhang; Ming-Cheng Luo; Jan Dvorak; Naxin Huo; Qixin Sun; Yongqiang Gu; Zhiyong Liu

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Zhiyong Liu

Chinese Academy of Sciences

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Jingzhong Xie

Chinese Academy of Sciences

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Deyun Zhang

China Agricultural University

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Ping Lu

Chinese Academy of Sciences

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Qixin Sun

China Agricultural University

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Y. Chen

Chinese Academy of Sciences

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Zhenzhong Wang

China Agricultural University

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Yan Zhang

China Agricultural University

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Yong Liang

China Agricultural University

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Dong Zhang

China Agricultural University

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