Area of research
Plant Science · Endocrinology
Research interest
Research interests include Plant Virus Research Studies, Plant-Microbe Interactions and Immunity, Plant Pathogenic Bacteria Studies, and Plant and Fungal Interactions Research.
Hijacking the unfolded protein response (UPR) pathway: Balancing viral infection and host cell survival.
Tobamoviruses CP Proteins Hijack Light-Induced Protein (NbLIP1) to Promote Viral Replication by Facilitating VRO Formation.
Sugarcane streak mosaic virus P1 protein targets the BES1 transcription factor to subvert DAMP-triggered immunity in plant.
Design and Assessment of an Ultrasonic Pollination System for Greenhouse Tomatoes
Rice stripe virus NS3 uses the host signaling pathways to control pathogenicity.
Co-occurrence of chloroplastic ROS production and salicylic acid induction in plant immunity.
An Innovative Binding-Protein-Based dsRNA Extraction Method: Comparison of Cost-Effectiveness of Virus Detection Methods Using High-Throughput Sequencing.
Rationalizing the Unexpected Inefficiencies of 3D Porphyrin‐MOFs as Singlet Oxygen Photosensitizers Against <i>Botrytis cinerea</i>
Simplified and efficient <i>Agrobacterium</i>-mediated genetic transformation of <i>Botrytis cinerea</i> using mycelia.
Metagenomic Profiling of the Grapevine Virome in Canadian Vineyards
The plant disease triangle facing climate change: a molecular perspective.
Extracellular niche establishment by plant pathogens.
Molecular responses of agroinfiltrated Nicotiana benthamiana leaves expressing suppressor of silencing P19 and influenza virus-like particles.
Molecular characterization of a novel partitivirus with four segments isolated from <i>Fusarium solani</i>, the causal agent of citrus root rot.
Resistance gene Ty-1 restricts TYLCV infection in tomato by increasing RNA silencing.
Improving grapevine virus diagnostics: Comparative analysis of three dsRNA enrichment methods for high-throughput sequencing.
Molecular characterization of a novel victorivirus isolated from Stagonosporopsis citrulli.
Chloroplastic ROS bursts initiate salicylic acid biosynthesis in plant immunity
Light prevents pathogen-induced aqueous microenvironments via potentiation of salicylic acid signaling.
NanoViromics: long-read sequencing of dsRNA for plant virus and viroid rapid detection.
A Jasmonic Acid-Related Mechanism Affects <i>ARGONAUTE5</i> Expression and Antiviral Defense Against Potato Virus X in <i>Arabidopsis thaliana</i>.
Molecular responses of agroinfiltrated
<i>Nicotiana benthamiana</i>
leaves expressing suppressor of silencing P19 and influenza virus-like particles
Evidence of the Involvement of <i>Nematostoma parasiticum</i> in Herpotrichia Needle Browning of <i>Abies balsamea</i>.
Nanovirseq: dsRNA sequencing for plant virus and viroid detection by Nanopore sequencing
Evolutionarily conserved bacterial effectors hijack abscisic acid signaling to induce an aqueous environment in the apoplast
Evolutionarily conserved bacterial effectors hijack abscisic acid signaling to induce an aqueous environment in the apoplast.
N and N'-mediated recognition confers resistance to tomato brown rugose fruit virus.
Light prevents pathogen-induced aqueous microenvironments via potentiation of salicylic acid signaling
Grapevine Virology in the Third-Generation Sequencing Era: From Virus Detection to Viral Epitranscriptomics.
Natural variation in the Arabidopsis AGO2 gene is associated with susceptibility to potato virus X.