Production of new wheat–A. cristatum translocation lines with modified chromosome 2P coding for powdery mildew and leaf rust resistance
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Jinpeng Zhang | Suli Sun | Xin-ming Yang | Lihui Li | Xiuquan Li | Weihua Liu | Shenghui Zhou | Xiajie Ji | Shirui Xu | Hai-ming Han
[1] E. Nevo,et al. Bulked segregant CGT‐Seq‐facilitated map‐based cloning of a powdery mildew resistance gene originating from wild emmer wheat (Triticum dicoccoides) , 2021, Plant biotechnology journal.
[2] Julien Gronnier,et al. A membrane-bound ankyrin repeat protein confers race-specific leaf rust disease resistance in wheat , 2021, Nature Communications.
[3] Julien Gronnier,et al. Wheat Pm4 resistance to powdery mildew is controlled by alternative splice variants encoding chimeric proteins , 2021, Nature Plants.
[4] B. Steuernagel,et al. A highly differentiated region of wheat chromosome 7AL encodes a Pm1a immune receptor that recognizes its corresponding AvrPm1a effector from Blumeria graminis , 2020, The New phytologist.
[5] E. Nevo,et al. A CNL protein in wild emmer wheat confers powdery mildew resistance. , 2020, The New phytologist.
[6] Sanzhen Liu,et al. A rare single nucleotide variant in Pm5e confers powdery mildew resistance in common wheat. , 2020, The New phytologist.
[7] E. Nevo,et al. Horizontal gene transfer of Fhb7 from fungus underlies Fusarium head blight resistance in wheat , 2020, Science.
[8] J. Dvorak,et al. A rare gain of function mutation in a wheat tandem kinase confers resistance to powdery mildew , 2020, Nature Communications.
[9] Zujun Yang,et al. Identification and characterization of a new stripe rust resistance gene Yr83 on rye chromosome 6R in wheat , 2020, Theoretical and Applied Genetics.
[10] S. Sehgal,et al. A spontaneous wheat-Aegilops longissima translocation carrying Pm66 confers resistance to powdery mildew , 2020, Theoretical and Applied Genetics.
[11] G. Bai,et al. Fine Mapping of the Wheat Leaf Rust Resistance Gene Lr42 , 2019, International journal of molecular sciences.
[12] Jie Li,et al. Proteomic analysis of the impacts of powdery mildew on wheat grain. , 2018, Food chemistry.
[13] Xiuquan Li,et al. Physical Mapping of a Novel Locus Conferring Leaf Rust Resistance on the Long Arm of Agropyron cristatum Chromosome 2P , 2018, Front. Plant Sci..
[14] Hongjie Li,et al. Pm21, Encoding a Typical CC-NBS-LRR Protein, Confers Broad-Spectrum Resistance to Wheat Powdery Mildew Disease. , 2018, Molecular plant.
[15] Jonathan D. G. Jones,et al. Pm21 from Haynaldia villosa Encodes a CC-NBS-LRR Protein Conferring Powdery Mildew Resistance in Wheat. , 2018, Molecular plant.
[16] D. Tang,et al. The NB-LRR gene Pm60 confers powdery mildew resistance in wheat. , 2018, The New phytologist.
[17] Jan Vrána,et al. Rapid cloning of genes in hexaploid wheat using cultivar-specific long-range chromosome assembly , 2017, Nature Biotechnology.
[18] Jinpeng Zhang,et al. Chromosomal localization of genes conferring desirable agronomic traits from Agropyron cristatum chromosome 1P , 2017, PloS one.
[19] B. Steuernagel,et al. Rapid gene isolation in barley and wheat by mutant chromosome sequencing , 2016, Genome Biology.
[20] Jinpeng Zhang,et al. Transferring Desirable Genes from Agropyron cristatum 7P Chromosome into Common Wheat , 2016, PloS one.
[21] Jinpeng Zhang,et al. An intercalary translocation from Agropyroncristatum 6P chromosome into common wheat confers enhanced kernel number per spike , 2016, Planta.
[22] Jinpeng Zhang,et al. Physical mapping of Agropyron cristatum chromosome 6P using deletion lines in common wheat background , 2016, Theoretical and Applied Genetics.
[23] Jinpeng Zhang,et al. Production and Identification of Wheat-Agropyron cristatum 2P Translocation Lines , 2016, PloS one.
[24] Jinpeng Zhang,et al. Mapping of novel powdery mildew resistance gene(s) from Agropyron cristatum chromosome 2P , 2016, Theoretical and Applied Genetics.
[25] J. Patrick,et al. A recently evolved hexose transporter variant confers resistance to multiple pathogens in wheat , 2015, Nature Genetics.
[26] Yan Zhang,et al. De novo transcriptome sequencing of Agropyron cristatum to identify available gene resources for the enhancement of wheat. , 2015, Genomics.
[27] Jinpeng Zhang,et al. Introgression of Agropyron cristatum 6P chromosome segment into common wheat for enhanced thousand-grain weight and spike length , 2015, Theoretical and Applied Genetics.
[28] M. Li,et al. Oligonucleotide Probes for ND-FISH Analysis to Identify Rye and Wheat Chromosomes , 2015, Scientific Reports.
[29] Zujun Yang,et al. Oligonucleotides replacing the roles of repetitive sequences pAs1, pSc119.2, pTa-535, pTa71, CCS1, and pAWRC.1 for FISH analysis , 2014, Journal of Applied Genetics.
[30] Jinpeng Zhang,et al. Genetic Rearrangements of Six Wheat–Agropyron cristatum 6P Addition Lines Revealed by Molecular Markers , 2014, PloS one.
[31] T. Wicker,et al. Rye Pm8 and wheat Pm3 are orthologous genes and show evolutionary conservation of resistance function against powdery mildew. , 2013, The Plant journal : for cell and molecular biology.
[32] Xin-ming Yang,et al. Efficient Induction of Wheat-Agropyron cristatum 6P Translocation Lines and GISH Detection , 2013, PloS one.
[33] Xiue Wang,et al. Radiation-induced translocations with reduced Haynaldia villosa chromatin at the Pm21 locus for powdery mildew resistance in wheat , 2013, Molecular Breeding.
[34] Zujun Yang,et al. Characterization of wheat: Secale africanum introgression lines reveals evolutionary aspects of chromosome 1R in rye. , 2012, Genome.
[35] Jinpeng Zhang,et al. Production and identification of wheat - Agropyron cristatum (1.4P) alien translocation lines. , 2010, Genome.
[36] Zong-xiang Tang,et al. Transfer to wheat (Triticum aestivum) of small chromosome segments from rye (Secale cereale) carrying disease resistance genes , 2010, Journal of Applied Genetics.
[37] Xia Li,et al. Molecular Cytogenetic Characterization of a New Wheat-Thinopyrum intermedium Partial Amphiploid Resistant to Powdery Mildew and Stripe Rust , 2009, Cytogenetic and Genome Research.
[38] B. Keller,et al. A Putative ABC Transporter Confers Durable Resistance to Multiple Fungal Pathogens in Wheat , 2009, Science.
[39] Travis W. Banks,et al. Leaf rust resistance gene Lr1, isolated from bread wheat (Triticum aestivum L.) is a member of the large psr567 gene family , 2007, Plant Molecular Biology.
[40] Jun Wu,et al. The introgression of chromosome 6P specifying for increased numbers of florets and kernels from Agropyron cristatum into wheat , 2006, Theoretical and Applied Genetics.
[41] R. Munns,et al. Use of wild relatives to improve salt tolerance in wheat. , 2006, Journal of experimental botany.
[42] F. Han,et al. High frequency of centromere inactivation resulting in stable dicentric chromosomes of maize. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[43] B. Keller,et al. Genome analysis at different ploidy levels allows cloning of the powdery mildew resistance gene Pm3b from hexaploid wheat. , 2004, The Plant journal : for cell and molecular biology.
[44] B. Gill,et al. Map-based cloning of leaf rust resistance gene Lr21 from the large and polyploid genome of bread wheat. , 2003, Genetics.
[45] D. R. Dewey. The Genomic System of Classification as a Guide to Intergeneric Hybridization with the Perennial Triticeae , 1986 .
[46] G. Statler. Probable Genes for Leaf Rust Resistance in Several Hard Red Spring Wheats1 , 1984 .