Elimination of the yellow pigment gene PSY-E2 tightly linked to the Fusarium head blight resistance gene Fhb7 from Thinopyrum ponticum
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Ming Li | Hongwei Wang | Dong Li | Steven S. Xu | L. Kong | Y. Bao | Cunyao Bo | Lanfei Zhao | Guihua Bai | Yongchao Hao | Shoushen Xu | Xuefeng Li | Wenyang Ge | B. Hou | Wenwen Liu | Jun Guo | Yu Xuan | Ziming He | Biao Wang | Yi Han | Zengjun Qi | Biao Wang
[1] Hongwei Wang,et al. Development and validation of diagnostic markers for the wheat Fusarium head blight resistance gene Fhb7 , 2022, Crop Science.
[2] Z. Pretorius,et al. Chromosomal composition analysis and molecular marker development for the novel Ug99-resistant wheat–Thinopyrum ponticum translocation line WTT34 , 2021, Theoretical and Applied Genetics.
[3] E. Nevo,et al. Horizontal gene transfer of Fhb7 from fungus underlies Fusarium head blight resistance in wheat , 2020, Science.
[4] C. Xie,et al. Identification of a novel genomic region associated with resistance to Fusarium crown rot in wheat , 2020, Theoretical and Applied Genetics.
[5] J. Keilwagen,et al. Chromosome-scale genome assembly provides insights into rye biology, evolution, and agronomic potential , 2019, bioRxiv.
[6] Elizabeth A. Ainsworth,et al. Genetic strategies for improving crop yields , 2019, Nature.
[7] F. Rossini,et al. Equipping Durum Wheat—Thinopyrum ponticum Recombinant Lines With a Thinopyrum elongatum Major QTL for Resistance to Fusarium Diseases Through a Cytogenetic Strategy , 2019, Front. Plant Sci..
[8] S. Xue,et al. Mutation of a histidine-rich calcium-binding-protein gene in wheat confers resistance to Fusarium head blight , 2019, Nature Genetics.
[9] Shan Wang,et al. A deletion mutation in TaHRC confers Fhb1 resistance to Fusarium head blight in wheat , 2019, Nature Genetics.
[10] Hongjie Li,et al. Development of Perennial Wheat Through Hybridization Between Wheat and Wheatgrasses: A Review , 2018, Engineering.
[11] Kemal Kazan,et al. Fusarium crown rot caused by Fusarium pseudograminearum in cereal crops: recent progress and future prospects. , 2018, Molecular plant pathology.
[12] K. Hammond-Kosack,et al. A review of wheat diseases-a field perspective. , 2018, Molecular plant pathology.
[13] R. D'Ovidio,et al. Cytogenetic mapping of a major locus for resistance to Fusarium head blight and crown rot of wheat on Thinopyrum elongatum 7EL and its pyramiding with valuable genes from a Th. ponticum homoeologous arm onto bread wheat 7DL , 2017, Theoretical and Applied Genetics.
[14] J. Anderson,et al. Wheat Fhb1 encodes a chimeric lectin with agglutinin domains and a pore-forming toxin-like domain conferring resistance to Fusarium head blight , 2016, Nature Genetics.
[15] F. Ogbonnaya,et al. Resistance to Fusarium crown rot in wheat and barley: a review , 2015 .
[16] F. Han,et al. High-density mapping of the major FHB resistance gene Fhb7 derived from Thinopyrum ponticum and its pyramiding with Fhb1 by marker-assisted selection , 2015, Theoretical and Applied Genetics.
[17] P. Stephen Baenziger,et al. Management of Fusarium head blight of wheat and barley , 2015 .
[18] S. Neate,et al. Markers for seedling and adult plant crown rot resistance in four partially resistant bread wheat sources , 2015, Theoretical and Applied Genetics.
[19] Y. Jin,et al. Development and characterization of wheat lines carrying stem rust resistance gene Sr43 derived from Thinopyrum ponticum , 2014, Theoretical and Applied Genetics.
[20] C. Poncet,et al. Improving the yellow pigment content of bread wheat flour by selecting the three homoeologous copies of Psy1 , 2012, Molecular Breeding.
[21] Steven S Xu,et al. Targeted Introgression of a Wheat Stem Rust Resistance Gene by DNA Marker-Assisted Chromosome Engineering , 2011, Genetics.
[22] X. Shen,et al. A genetic map of Lophopyrum ponticum chromosome 7E, harboring resistance genes to Fusarium head blight and leaf rust , 2011, Theoretical and Applied Genetics.
[23] Hongjie Li,et al. Thinopyrum ponticum and Th. intermedium: the promising source of resistance to fungal and viral diseases of wheat. , 2009, Journal of genetics and genomics = Yi chuan xue bao.
[24] J. Dubcovsky,et al. Association between allelic variation at the Phytoene synthase 1 gene and yellow pigment content in the wheat grain , 2008, Theoretical and Applied Genetics.
[25] X. Shen,et al. Molecular mapping of Thinopyrum-derived Fusarium head blight resistance in common wheat , 2007, Molecular Breeding.
[26] J. Manners,et al. A role for the mycotoxin deoxynivalenol in stem colonisation during crown rot disease of wheat caused by Fusarium graminearum and Fusarium pseudograminearum , 2006 .
[27] Wenjun Zhang,et al. Molecular characterization of durum and common wheat recombinant lines carrying leaf rust resistance (Lr19) and yellow pigment (Y) genes from Lophopyrum ponticum , 2005, Theoretical and Applied Genetics.
[28] M. Labuschagne,et al. The influence of leaf rust resistance genes Lr29, Lr34, Lr35 and Lr37 on breadmaking quality in wheat , 2002, Euphytica.