Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Arabidopsis, Chemistry, Cell biology, Oxidative stress, and Antioxidant.
Nano-engineered biochar enhances soil microbial interactions and maize transcriptomic pathways for cadmium detoxification
Cerium Oxide Nanoparticle Protects Maize from Cobalt Stress: Insights from Transcriptomics and Oxidative Stress Response Analysis
Titanium dioxide nanoparticles TiO2 NPs in crop stress management: Mechanisms, applications, and abiotic stress mitigation
Nickel stress modulates growth dynamics, disrupts redox homeostasis, and induces ultrastructural damage in maize
Nuclear Accumulation of <scp>OsMADS27</scp> Was Promoted by <scp>OsNAR2.1</scp> in Response to Nitrate to Control Root Growth by Directly Targeting <i>OsMADS57</i> in Rice
Titanium dioxide nanoparticles seed priming as a remedy for nickel-induced stress in maize through antioxidant enhancement and ultrastructural optimization
Interactive mode of biochar-based silicon and iron nanoparticles mitigated Cd-toxicity in maize
Cobalt stress induces photosynthetic and ultrastructural distortion by disrupting cellular redox homeostasis in maize
Nuclear translocation of OsMADS25 facilitated by OsNAR2.1 in reponse to nitrate signals promotes rice root growth by targeting OsMADS27 and OsARF7
Nano-Priming against Abiotic Stress: A Way Forward towards Sustainable Agriculture
SHAGGY-like kinase 12 regulates flowering through mediating CONSTANS stability in <i>Arabidopsis</i>
Zinc finger protein 5 (ZFP5) associates with ethylene signaling to regulate the phosphate and potassium deficiency-induced root hair development in Arabidopsis
OsFTIP7 determines auxin-mediated anther dehiscence in rice
NbGIS regulates glandular trichome initiation through GA signaling in tobacco
OsFTIP1-Mediated Regulation of Florigen Transport in Rice Is Negatively Regulated by the Ubiquitin-Like Domain Kinase OsUbDKγ4
DNA Topoisomerase Iα Affects the Floral Transition
The putative PRC1 RING-finger protein AtRING1A regulates flowering through repressing <i>MADS AFFECTING FLOWERING</i> genes in <i>Arabidopsis</i>
A zinc finger protein gene <i>ZFP5</i> integrates phytohormone signaling to control root hair development in Arabidopsis