Area of research
Insect Science · Genetics
Research interest
Research focused on Acyrthosiphon pisum and Buchnera, with related work in Aphid, Gene knockdown, Illumina dye sequencing. Notable publications include 'Bacteriocyte cell death in the pea aphid/ Buchnera symbiotic system', 'New insight into the RNA interference response against cathepsin-L gene in the pea aphid, Acyrthosiphon pisum: Molting or gut phenotypes specifically induced by injection or...', and 'Assessment of a 16S rRNA amplicon Illumina sequencing procedure for studying the microbiome of a symbiont‐rich aphid genus'.
Sustainable laser-based technology for insect pest control
Bacteriocyte cell death in the pea aphid/ <i>Buchnera</i> symbiotic system
Bacteriocyte Reprogramming to Cope With Nutritional Stress in a Phloem Sap Feeding Hemipteran, the Pea Aphid Acyrthosiphon pisum
Direct flow cytometry measurements reveal a fine-tuning of symbiotic cell dynamics according to the host developmental needs in aphid symbiosis
Disruption of phenylalanine hydroxylase reduces adult lifespan and fecundity, and impairs embryonic development in parthenogenetic pea aphids
Assessment of a 16S <scp>rRNA</scp> amplicon Illumina sequencing procedure for studying the microbiome of a symbiont‐rich aphid genus
New insight into the RNA interference response against cathepsin-L gene in the pea aphid, Acyrthosiphon pisum: Molting or gut phenotypes specifically induced by injection or feeding treatments
Tyrosine pathway regulation is host-mediated in the pea aphid symbiosis during late embryonic and early larval development