Area of research
Plant Science · Genetics
Research interest
Research interests include Wheat and Barley Genetics and Pathology, Plant Disease Resistance and Genetics, Genetics and Plant Breeding, and Genetic Mapping and Diversity in Plants and Animals.
TaWRKY115 enhances cold tolerance by weakening the expression of TaMYB4 on CBFs in common wheat
Enhancing plant antiviral responses and productivity through the elimination of m<sup>5</sup>C methyltransferase.
Hi4GS: An interpretable hybrid feature selection framework for genomic selection and application in identifying wheat yield-associated SNPs
A TaSnRK1α-TaCAT2 model mediates resistance to Fusarium crown rot by scavenging ROS in common wheat.
Integration of multi-omics data accelerates molecular analysis of common wheat traits.
Genomic analysis of Zhou8425B, a key founder parent, reveals its genetic contributions to elite agronomic traits in wheat breeding.
An m6A methyltransferase confers host resistance by degrading viral proteins through ubiquitination
Rare and common genetic variants underlying the risk of Hirschsprung’s disease
A lectin receptor-like kinase TaSRK that is deacetylated by TaHDA9 regulates wheat grain length by mediating the photosystem II protein TaPsbO.
EMB is essential for enteric nervous system development mediated by PI3K signaling
TaHSP18.6 and TaSRT1 interact to confer resistance to <i>Fusarium</i> crown rot by regulating the auxin content in common wheat.
Nation-Wide Application of Enhanced Recovery after Surgery for Complicated Appendicitis in Children: A Prospective Multicenter Open-Label Randomized Control Trial
The role and molecular mechanisms of G protein-coupled receptor Lgr5 in subchondral bone during OA progression
Genome-wide dissection of lesion mimic mutations in wheat: identification and functional characterization of candidate genes.
Reconciliation of wheat 660K and 90K SNP arrays and their utilization in dough rheological properties of bread wheat.
An m<sup>6</sup>A methyltransferase confers host resistance by degrading viral proteins through ubiquitination.
RefMetaPlant: a reference metabolome database for plants across five major phyla.
Genome-Wide Association Studies on Chinese Wheat Cultivars Reveal a Novel <i>Fusarium</i> Crown Rot Resistance Quantitative Trait Locus on Chromosome 3BL.
TaRLK-6A promotes Fusarium crown rot resistance in wheat.
CropMetabolome: a comprehensive metabolome database for major crops cross eight categories.
Genome-wide association study and linkage mapping reveal TaqW-6B associated with water-extractable arabinoxylan content in wheat grain.
Author Correction: A papain-like cysteine protease-released small signal peptide confers wheat resistance to wheat yellow mosaic virus.
Genome resources for the elite bread wheat cultivar Aikang 58 and mining of elite homeologous haplotypes for accelerating wheat improvement
Genome resources for the elite bread wheat cultivar Aikang 58 and mining of elite homeologous haplotypes for accelerating wheat improvement.
A papain-like cysteine protease-released small signal peptide confers wheat resistance to wheat yellow mosaic virus
A papain-like cysteine protease-released small signal peptide confers wheat resistance to wheat yellow mosaic virus.
A HST1-like gene controls tiller angle through regulating endogenous auxin in common wheat.
Global crotonylatome and GWAS revealed a <i>TaSRT1</i>-<i>TaPGK</i> model regulating wheat cold tolerance through mediating pyruvate.
Genomics‐assisted breeding: The next‐generation wheat breeding era
HSP90.2 promotes CO<sub>2</sub> assimilation rate, grain weight and yield in wheat.