Area of research
Plant Science · Molecular Biology
Research interest
Research focused on Abscisic acid and Arabidopsis, with related work in Salinity, Transcription factor, Reactive oxygen species. Notable publications include 'A Wheat Allene Oxide Cyclase Gene Enhances Salinity Tolerance via Jasmonate Signaling', 'Over-expression of TaMYB33 encoding a novel wheat MYB transcription factor increases salt and drought tolerance in Arabidopsis', and 'Wheat Oxophytodienoate Reductase Gene TaOPR1 Confers Salinity Tolerance via Enhancement of Abscisic Acid Signaling and Reactive Oxygen Species Scavenging'.
Small ubiquitin‐like modifier protease gene <i>TaDSU</i> enhances salt tolerance of wheat
Allelic variation of TaWD40-4B.1 contributes to drought tolerance by modulating catalase activity in wheat
<scp>TaSRO1</scp> plays a dual role in suppressing <scp>TaSIP1</scp> to fine tune mitochondrial retrograde signalling and enhance salinity stress tolerance
The non-random patterns of genetic variation induced by asymmetric somatic hybridization in wheat
A wheat superoxide dismutase gene TaSOD2 enhances salt resistance through modulating redox homeostasis by promoting NADPH oxidase activity
A Wheat Allene Oxide Cyclase Gene Enhances Salinity Tolerance via Jasmonate Signaling
Wheat Oxophytodienoate Reductase Gene<i>TaOPR1</i>Confers Salinity Tolerance via Enhancement of Abscisic Acid Signaling and Reactive Oxygen Species Scavenging
Synonymous codon usage bias is correlative to intron number and shows disequilibrium among exons in plants
Over-expression of TaMYB33 encoding a novel wheat MYB transcription factor increases salt and drought tolerance in Arabidopsis