Area of research
Plant Science · Insect Science
Research interest
Research focused on Tomato yellow leaf curl virus and Begomovirus, with related work in Whitefly, Virus, Nicotiana benthamiana. Notable publications include 'The Incredible Journey of Begomoviruses in Their Whitefly Vector', 'Implication of Bemisia tabaci Heat Shock Protein 70 in Begomovirus-Whitefly Interactions', and 'Cotton Leaf Curl Multan virus C4 protein suppresses both transcriptional and post-transcriptional gene silencing by interacting with SAM synthetase'.
Exploiting Virus Infection to Protect Plants from Abiotic Stresses: Tomato Protection by a Begomovirus
Tomato Yellow Leaf Curl Virus (TYLCV) Promotes Plant Tolerance to Drought
Interplay of stress responses to carbamazepine treatment, whitefly infestation and virus infection in tomato plants
Factors controlling the fate of tomato yellow leaf curl virus (TYLCV) in its vector, the whitefly vector Bemisia tabaci
Pharmaceuticals in treated wastewater induce a stress response in tomato plants
Taking advantage of a pathogen: understanding how a virus alleviates plant stress response
Cotton Leaf Curl Multan virus C4 protein suppresses both transcriptional and post-transcriptional gene silencing by interacting with SAM synthetase
Anti-cancer binary system activated by bacteriophage HK022 integrase
The Incredible Journey of Begomoviruses in Their Whitefly Vector
The Involvement of Heat Shock Proteins in the Establishment of Tomato Yellow Leaf Curl Virus Infection
The six Tomato yellow leaf curl virus genes expressed individually in tomato induce different levels of plant stress response attenuation
CLCuMuB βC1 Subverts Ubiquitination by Interacting with NbSKP1s to Enhance Geminivirus Infection in Nicotiana benthamiana
Tomato yellow leaf curl virus infection mitigates the heat stress response of plants grown at high temperatures
The Involvement of HSP70 and HSP90 inTomato Yellow Leaf Curl Virus Infection in Tomato Plants and Insect Vectors
Tomato plant cell death induced by inhibition of <scp>HSP90</scp> is alleviated by <i> <scp>T</scp> omato yellow leaf curl virus </i> infection
Tomato yellow leaf curl virus confronts host degradation by sheltering in small/midsized protein aggregates
The Tomato yellow leaf curl virus V2 protein forms aggregates depending on the cytoskeleton integrity and binds viral genomic DNA
An Extended Cyclic Di-GMP Network in the Predatory Bacterium Bdellovibrio bacteriovorus
Degradation mechanisms of the <i>Tomato yellow leaf curl virus</i> coat protein following inoculation of tomato plants by the whitefly <i>Bemisia tabaci</i>
Recruitment of the Host Plant Heat Shock Protein 70 by Tomato Yellow Leaf Curl Virus Coat Protein Is Required for Virus Infection
Discovering Host Genes Involved in the Infection by the Tomato Yellow Leaf Curl Virus Complex and in the Establishment of Resistance to the Virus Using Tobacco Rattle Virus-based Post Transcriptional Gene Silencing
Neurospora crassa Protein Arginine Methyl Transferases Are Involved in Growth and Development and Interact with the NDR Kinase COT1
Insect Symbiotic Bacterial GroEL (Chaperonin 60) and Plant Virus Transmission
Implication of Bemisia tabaci Heat Shock Protein 70 in Begomovirus-Whitefly Interactions
Virus-Induced Aggregates in Infected Cells
Progressive aggregation of Tomato yellow leaf curl virus coat protein in systemically infected tomato plants, susceptible and resistant to the virus
A developmentally regulated lipocalin-like gene is overexpressed in Tomato yellow leaf curl virus-resistant tomato plants upon virus inoculation, and its silencing abolishes resistance