Area of research
Molecular Biology · Insect Science
Research interest
Research focused on Helicoverpa armigera and Genetics, with related work in Cry1Ac, CRISPR, Fall armyworm. Notable publications include 'Dominant point mutation in a tetraspanin gene associated with field-evolved resistance of cotton bollworm to transgenic Bt cotton', 'Genome mapping coupled with CRISPR gene editing reveals a P450 gene confers avermectin resistance in the beet armyworm', and 'Whole‐genome sequencing to detect mutations associated with resistance to insecticides and Bt proteins in Spodoptera frugiperda'.
Population genomics reveals population structure and local adaptation of the <scp><i>Helicoverpa armigera</i></scp> lineage in Xinjiang, China
Differentiation in detoxification gene complements, including neofunctionalization of duplicated cytochrome P450 genes, between lineages of cotton bollworm, <i>Helicoverpa armigera</i>
Global population genomic signature of Spodoptera frugiperda (fall armyworm) supports complex introduction events across the Old World
Population genomics provides insights into lineage divergence and local adaptation within the cotton bollworm
Genome mapping coupled with CRISPR gene editing reveals a P450 gene confers avermectin resistance in the beet armyworm
Whole‐genome sequencing to detect mutations associated with resistance to insecticides and Bt proteins in <i>Spodoptera frugiperda</i>
Dominant point mutation in a tetraspanin gene associated with field-evolved resistance of cotton bollworm to transgenic Bt cotton
Determination of trichothecenes A (T-2 toxin, HT-2 toxin, and diacetoxyscirpenol) in the tissues of broilers using liquid chromatography coupled to tandem mass spectrometry