Area of research
Plant Science · Pathology and Forensic Medicine
Research interest
Research interests include Biology, Genetics, Gene, Genome, Gossypium, and Gossypium barbadense.
Construction of a high-density genetic map and identification of QTLs related to agronomic and physiological traits in an interspecific (Gossypium hirsutum × Gossypium barbadense) F2 population
<i>GoNe</i> encoding a class VIIIb <i>AP2/ERF</i> is required for both extrafloral and floral nectary development in <i>Gossypium</i>
Role of phasiRNAs from two distinct phasing frames of GhMYB2 loci in cis- gene regulation in the cotton genome
Gossypium barbadense and Gossypium hirsutum genomes provide insights into the origin and evolution of allotetraploid cotton
G65V Substitution in Actin Disturbs Polymerization Leading to Inhibited Cell Elongation in Cotton
Mutation of SELF-PRUNING homologs in cotton promotes short-branching plant architecture
Divergence and evolution of cotton bHLH proteins from diploid to allotetraploid
Genomic analyses in cotton identify signatures of selection and loci associated with fiber quality and yield traits
Genetics and evolution of <scp>MIXTA</scp> genes regulating cotton lint fiber development
Genomic insights into divergence and dual domestication of cultivated allotetraploid cottons
Rapid mapping and cloning of the virescent-1 gene in cotton by bulked segregant analysis–next generation sequencing and virus-induced gene silencing strategies
Genetic basis for glandular trichome formation in cotton
Small interfering <scp>RNA</scp>s from bidirectional transcripts of <i>Gh<scp>MML</scp>3_A12</i> regulate cotton fiber development
Sequencing of allotetraploid cotton (Gossypium hirsutum L. acc. TM-1) provides a resource for fiber improvement
Gossypium barbadense genome sequence provides insight into the evolution of extra-long staple fiber and specialized metabolites
Sequence-based ultra-dense genetic and physical maps reveal structural variations of allopolyploid cotton genomes
Genome-Wide Mining, Characterization and Development of Microsatellite Markers in Gossypium Species
Molecular Mapping of Restriction-Site Associated DNA Markers in Allotetraploid Upland Cotton
Cotton fiber elongation network revealed by expression profiling of longer fiber lines introgressed with different Gossypium barbadense chromosome segments
Transcriptomic Analysis of Fiber Strength in Upland Cotton Chromosome Introgression Lines Carrying Different Gossypium barbadense Chromosomal Segments
Identification of centromeric regions on the linkage map of cotton using centromere-related repeats
Transcriptome Sequencing and Differential Gene Expression Analysis of Delayed Gland Morphogenesis in Gossypium australe during Seed Germination