Area of research
Plant Science · Food Science
Research interest
Research focused on Verticillium dahliae and Verticillium wilt, with related work in Domestication, WRKY protein domain, Apoplast. Notable publications include 'Host‐induced gene silencing of a regulator of G protein signalling gene ( Vd RGS 1 ) confers resistance to Verticillium wilt in cotton', 'The lysin motif-containing proteins, Lyp1, Lyk7 and LysMe3, play important roles in chitin perception and defense against Verticillium dahliae in cotton', and 'Silencing GhIAA43, a member of cotton AUX/IAA genes, enhances wilt resistance via activation of salicylic acid-mediated defenses'.
Transcription factor GbTCP20 confers plant wilt resistance by regulating ACC biosynthesis pathway and lignin deposition
GhMPK9‐GhRAF39_1‐GhWRKY40a Regulates the GhERF1b‐ and GhABF2‐Mediated Pathways to Increase Cotton Disease Resistance
Re-localization of a repeat-containing fungal effector by apoplastic protein Chitinase-like 1 blocks its toxicity
Cotton peroxisome‐localized lysophospholipase counteracts the toxic effects of <i>Verticillium dahliae</i><scp>NLP1</scp> and confers wilt resistance
Silencing GhIAA43, a member of cotton AUX/IAA genes, enhances wilt resistance via activation of salicylic acid-mediated defenses
Genetic Basis of Fiber Improvement and Decreased Stress Tolerance in Cultivated Versus Semi-Domesticated Upland Cotton
Host‐induced gene silencing of a regulator of G protein signalling gene (<i>Vd<scp>RGS</scp>1</i>) confers resistance to <i>Verticillium</i> wilt in cotton
The lysin motif-containing proteins, Lyp1, Lyk7 and LysMe3, play important roles in chitin perception and defense against Verticillium dahliae in cotton