Area of research
Plant Science · Molecular Biology
Research interest
Research focused on Verticillium dahliae and Gene silencing, with related work in Gene, Xylem, Verticillium wilt. Notable publications include 'Combining genome-wide and transcriptome-wide analyses reveal the evolutionary conservation and functional diversity of aquaporins in cotton', 'NST- and SND-subgroup NAC proteins coordinately act to regulate secondary cell wall formation in cotton', and 'Genome-Wide Association Analysis Reveals Loci and Candidate Genes Involved in Fiber Quality Traits Under Multiple Field Environments in Cotton (Gossypium hirsutum)'.
The Peptide-Encoding CLE25 Gene Modulates Drought Response in Cotton
Suppressing an AUX/IAA gene GhIAA43 expression activates the SA-mediated immune pathway and enhances Verticillium wilt resistance in cotton
A Golgi vesicle‐membrane‐localized cytochrome B561 regulates ascorbic acid regeneration and confers Verticillium wilt resistance in cotton
Cotton <scp>GhNAC4</scp> promotes drought tolerance by regulating secondary cell wall biosynthesis and ribosomal protein homeostasis
Cotton peroxisome‐localized lysophospholipase counteracts the toxic effects of <i>Verticillium dahliae</i><scp>NLP1</scp> and confers wilt resistance
Genome-Wide Association Analysis Reveals Loci and Candidate Genes Involved in Fiber Quality Traits Under Multiple Field Environments in Cotton (Gossypium hirsutum)
NST- and SND-subgroup NAC proteins coordinately act to regulate secondary cell wall formation in cotton
Combining genome-wide and transcriptome-wide analyses reveal the evolutionary conservation and functional diversity of aquaporins in cotton