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Plant Disease|August 5, 2020
Molecular Marker Based Design for Breeding Wheat Lines with Multiple Resistance and Superior QualityTao Liu, George Fedak, Lianquan Zhang, et al.Springerplus|April 12, 2013
The genetic study utility of a hexaploid wheat DH population with non-recombinant A- and B-genomesMing Hao, Jixiang Chen, Lianquan Zhang, et al.BMC Plant Biology|June 23, 2023
Transcriptomic analysis provides insight into the genetic regulation of shade avoidance in Aegilops tauschiiDie Xie, Ming Hao, Laibin Zhao, et al.Genome|March 12, 2020
Development and characterization of Triticum turgidum - Aegilops comosa and T. turgidum - Ae. markgrafii amphidiploidsYuanyuan Zuo, Qin Xiang, Shoufen Dai, et al.Journal of Applied Genetics|February 20, 2020
Development, identification, and characterization of blue-grained wheat-Triticum boeoticum substitution linesXin Liu, Zhen Feng, Dongyu Liang, et al.Journal of Applied Genetics|April 6, 2020
FISH karyotype comparison between Ab- and A-genome chromosomes using oligonucleotide probesZhen Feng, Minghu Zhang, Xin Liu, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|October 17, 2023
Introgression of the bread wheat D genome encoded Lr34/Yr18/Sr57/Pm38/Ltn1 adult plant resistance gene into Triticum turgidum (durum wheat)Hongyu Li, Peng Zhang, Ming Luo, et al.G3 (Bethesda, Md.)|August 17, 2014
QTug.sau-3B is a major quantitative trait locus for wheat hexaploidizationMing Hao, Jiangtao Luo, Deying Zeng, et al.BMC Plant Biology|March 6, 2020
A transcriptomic view of the ability of nascent hexaploid wheat to tolerate aneuploidyDeying Zeng, Jiantao Guan, Jiangtao Luo, et al.Plant Disease|August 31, 2022
Pyramiding of Adult-Plant Resistance Genes Enhances All-Stage Resistance to Wheat Stripe RustFang Wang, Minghu Zhang, Yanling Hu, et al.Pageof 7