Area of research
Plant Science · Molecular Biology
Research interest
Research focused on Abscisic acid and Antioxidant, with related work in Cell biology, APX, Arabidopsis. Notable publications include 'A novel rice C2H2-type zinc finger protein, ZFP36, is a key player involved in abscisic acid-induced antioxidant defence and oxidative stress tolerance in rice', 'The transcription factor ZmNAC49 reduces stomatal density and improves drought tolerance in maize', and 'ZmCPK11 is involved in abscisic acid-induced antioxidant defence and functions upstream of ZmMPK5 in abscisic acid signalling in maize'.
The maize GSK3-like kinase ZmSK1 negatively regulates drought tolerance by phosphorylating the transcription factor ZmCPP2
Brassinosteroid-signaling kinase 4 activates mitogen-activated protein kinase 4 to enhance cold stress tolerance in maize
Mitogen-activated protein kinase 7 phosphorylates transcription factor ZmWRKY104 to enhance salt tolerance in maize
The transcription factor ZmNAC84 increases maize salt tolerance by regulating ZmCAT1 expression
Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize
Pectin methylesterase 31 is transcriptionally repressed by ABI5 to negatively regulate ABA-mediated inhibition of seed germination
Brassinosteroid-signaling kinase ZmBSK7 enhances salt stress tolerance in maize
The transcription factor ZmMYB-CC10 improves drought tolerance by activating ZmAPX4 expression in maize
BRASSINOSTEROID‐SIGNALING KINASE 1 phosphorylating CALCIUM/CALMODULIN‐DEPENDENT PROTEIN KINASE functions in drought tolerance in maize
Rice calcium/calmodulin-dependent protein kinase directly phosphorylates a mitogen-activated protein kinase kinase to regulate abscisic acid responses
ZmWRKY104 positively regulates salt tolerance by modulating ZmSOD4 expression in maize
ZmMPK5 phosphorylates ZmNAC49 to enhance oxidative stress tolerance in maize
ZmWRKY104 Transcription Factor Phosphorylated by ZmMPK6 Functioning in ABA-Induced Antioxidant Defense and Enhance Drought Tolerance in Maize
Phosphorylation of ZmNAC84 at Ser-113 enhances the drought tolerance by directly modulating ZmSOD2 expression in maize
Calcineurin B-like protein 5 (SiCBL5) in Setaria italica enhances salt tolerance by regulating Na+ homeostasis
The transcription factor ZmNAC49 reduces stomatal density and improves drought tolerance in maize
Cell wall β-1,4-galactan regulated by the BPC1/BPC2-GALS1 module aggravates salt sensitivity in Arabidopsis thaliana
Transcriptome analysis provides insights into the non-methylated lignin synthesis in Paphiopedilum armeniacum seed
Xyloglucan endotransglucosylase-hydrolase30 negatively affects salt tolerance in Arabidopsis
Over-Expression of a Maize N-Acetylglutamate Kinase Gene (ZmNAGK) Improves Drought Tolerance in Tobacco
Abscisic acid positively regulates <scp>l</scp>‐arabinose metabolism to inhibit seed germination through ABSCISIC ACID INSENSITIVE4‐mediated transcriptional promotions of <i>MUR4</i> in <i>Arabidopsis thaliana</i>
Abscisic Acid Inhibits Rice Protein Phosphatase PP45 via H <sub>2</sub> O <sub>2</sub> and Relieves Repression of the Ca <sup>2+</sup> /CaM-Dependent Protein Kinase DMI3
Pectin methylesterase31 positively regulates salt stress tolerance in Arabidopsis
Increased drought tolerance in plants engineered for low lignin and low xylan content
A NAC Transcription Factor ZmNAC84 affects Pollen Development Through the Repression of ZmRbohH Expression in Maize
The NADPH-oxidase AtRbohI plays a positive role in drought-stress response in Arabidopsis thaliana
Phosphorylation of a NAC Transcription Factor by a Calcium/Calmodulin-Dependent Protein Kinase Regulates Abscisic Acid-Induced Antioxidant Defense in Maize
Zm<scp>ABA</scp>2, an interacting protein of Zm<scp>MPK</scp>5, is involved in abscisic acid biosynthesis and functions
ABA Affects Brassinosteroid-Induced Antioxidant Defense via ZmMAP65‐1a in Maize Plants
A novel rice C2H2-type zinc finger protein, ZFP36, is a key player involved in abscisic acid-induced antioxidant defence and oxidative stress tolerance in rice