Area of research
Molecular Biology · Insect Science
Research interest
Research interests include Insect and Pesticide Research, Ion channel regulation and function, Insect Resistance and Genetics, and Neurobiology and Insect Physiology Research.
Structural insights into insect-selective sodium channel toxins drive AI-enhanced biopesticide design.
Involvement of Multiple Ion Channels and Receptors in Mediating the Insecticidal and Repellent Actions of Limonene.
A unique mechanism of transfluthrin action revealed by mapping its binding sites in the mosquito sodium channel
Author Correction: Bacterial pathogens deliver water- and solute-permeable channels to plant cells
Bacterial pathogens deliver water- and solute-permeable channels to plant cells
Bacterial pathogens deliver water/solute-permeable channels as a virulence strategy
Pyrethroids in an AlphaFold2 Model of the Insect Sodium Channel.
Characterization of two kdr mutations at predicted pyrethroid receptor site 2 in the sodium channels of Aedes aegypti and Nilaparvata lugens
Characterization of two kdr mutations at predicted pyrethroid receptor site 2 in the sodium channels of Aedes aegypti and Nilaparvata lugens
Bioallethrin activates specific olfactory sensory neurons and elicits spatial repellency in Aedes aegypti.
A dual-target molecular mechanism of pyrethrum repellency against mosquitoes
Behavioral and physiological responses of <scp><i>Drosophila melanogaster</i></scp> and <i>D. suzukii</i> to volatiles from plant essential oils
A dual-target molecular mechanism of pyrethrum repellency against mosquitoes.
Sodium channel activation underlies transfluthrin repellency in Aedes aegypti
Behavioral and physiological responses of Drosophila melanogaster and D. suzukii to volatiles from plant essential oils.
Distinct roles of two RDL GABA receptors in fipronil action in the diamondback moth ( <i>Plutella xylostella</i> )
Identification of multiple odorant receptors essential for pyrethrum repellency in Drosophila melanogaster
Sodium channel activation underlies transfluthrin repellency in Aedes aegypti.
Identification of multiple odorant receptors essential for pyrethrum repellency in Drosophila melanogaster.
Mapping the interaction surface of scorpion β-toxins with an insect sodium channel.
Pyrethrins elicit olfactory response and spatial repellency in Aedes albopictus.
Charge substitutions at the voltage-sensing module of domain III enhance actions of site-3 and site-4 toxins on an insect sodium channel
Chronology of sodium channel mutations associated with pyrethroid resistance in Aedes aegypti.
Bemisia tabaci (Gennadius)‘de İki Nikotinik Asetilkolin Reseptör Genin Klonlanması
Molecular evidence of sequential evolution of DDT- and pyrethroid-resistant sodium channel in Aedes aegypti.
Discovery of a Novel Series of Tricyclic Oxadiazine 4a-Methyl Esters Based on Indoxacarb as Potential Sodium Channel Blocker/Modulator Insecticides
Distinct functional properties of sodium channel variants are associated with usage of alternative exons in Nilaparvata lugens
Block of Kir channels by flonicamid disrupts salivary and renal excretion of insect pests
Enhanced Stability of Inactivated Influenza Vaccine Encapsulated in Dissolving Microneedle Patches
Two novel sodium channel mutations associated with resistance to indoxacarb and metaflumizone in the diamondback moth,<i>Plutella xylostella</i>