Area of research
Plant Science · Genetics
Research interest
Research interests include Biology, Genetics, Chromosome, Chromosomal translocation, Karyotype, and Powdery mildew.
Identification of structural variations related to drought tolerance in wheat (Triticum aestivum L.)
Elimination of the yellow pigment gene PSY-E2 tightly linked to the Fusarium head blight resistance gene Fhb7 from Thinopyrum ponticum
Genome diversity and highland-adaptative variation in Tibet barley landrace population of China
Genetic Composition of the High-Quality Winter Wheat Varieties ‘Xinmai 26’ and ‘Xinmai 45’
Genome‐wide association study reveals structural chromosome variations with phenotypic effects in wheat (<i>Triticum aestivum</i> L.)
Chromosome diversity in <i>Dasypyrum villosum</i>, an important genetic and trait resource for hexaploid wheat engineering
Predominant wheat-alien chromosome translocations in newly developed wheat of China
A CYC/TB1-type TCP transcription factor controls spikelet meristem identity in barley
Frequent variations in tandem repeats pSc200 and pSc119.2 cause rapid chromosome evolution of open-pollinated rye
Physical Mapping of Stem Rust Resistance Gene Sr52 from Dasypyrum villosum Based on ph1b-Induced Homoeologous Recombination
Development of an oligonucleotide dye solution facilitates high throughput and cost-efficient chromosome identification in peanut
Cytological and molecular characterization of Thinopyrum bessarabicum chromosomes and structural rearrangements introgressed in wheat
Structural chromosome rearrangements and polymorphisms identified in Chinese wheat cultivars by high-resolution multiplex oligonucleotide FISH
High-resolution chromosome painting with repetitive and single-copy oligonucleotides in Arachis species identifies structural rearrangements and genome differentiation
A simple and efficient non-denaturing FISH method for maize chromosome differentiation using single-strand oligonucleotide probes
Development and Application of High Resolution Karyotypes of Wheat “Chinese Spring” Aneuploids
RNA-seq facilitates development of chromosome-specific markers and transfer of rye chromatin to wheat
Development of oligonucleotides and multiplex probes for quick and accurate identification of wheat and <i>Thinopyrum bessarabicum</i> chromosomes
Chromosome aberrations induced by zebularine in triticale
Chromosome painting of telomeric repeats reveals new evidence for genome evolution in peanut
Physical mapping of chromosome 4J of Thinopyrum bessarabicum using gamma radiation-induced aberrations
Multiple structural aberrations and physical mapping of rye chromosome 2R introgressed into wheat
Physical localization of a novel blue-grained gene derived from Thinopyrum bessarabicum