Biblio
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“Novel function of vitamin E in regulation of zebrafish ( Danio rerio ) brain lysophospholipids discovered using lipidomics”, Journal of Lipid Research, vol. 5637, no. 6, pp. 1182 - 1190, 2015.
, “C75, a fatty acid synthase inhibitor, decreases feeding activity and pheromone production in a moth, Helicoverpa zea”, Journal of Asia-Pacific Entomology, no. 9, pp. 43-48, 2006.
, “Regulation of sex pheromone biosynthesis in the oriental tobacco budworm, Helicoverpa assulta (Lepidoptera: Noctuidae)”, Journal of Insect Physiology, vol. 44, no. 7-8, pp. 653 - 658, 1998.
, “Alarm pheromone biosynthesis and functional parsimony in the fire ant Solenopsis invicta”, Physiological Entomology, 2015.
, “Control effects of Plodia interpunctella in pollen with aluminum phosphide and its residues”, Korean J. Apiculture, vol. 6, 1991.
, “Identification of a new member of the PBAN family of neuropeptides from the fire ant, Solenopsis invicta”, Insect Molecular Biology, vol. 18, no. 2B, pp. 161 - 169, 2009.
, “Identification of a G protein-coupled receptor for pheromone biosynthesis activating neuropeptide from pheromone glands of the moth Helicoverpa zea”, Proceedings of the National Academy of Sciences, vol. 100, no. 17466149061611954616317151413679168061-3, pp. 9721 - 9726, 2003.
, “Enzymatic Hydrolysis of Recovered Protein from Frozen Small Croaker and Functional Properties of Its Hydrolysates”, Journal of Food Science, vol. 74604535365168695059356923540485322721193506659322638535749, no. 1, pp. C17 - C24, 2009.
, “Pheromone Research May Lead to New Insect Control Methods”, Entomology Today, 2014.
, “Phenotypic impacts of PBAN RNA interference in an ant, Solenopsis invicta, and a moth, Helicoverpa zea”, Journal of Insect Physiology, vol. 58, no. 8, pp. 1159 - 1165, 2012.
, “Potential contamination sources on fresh produce associated with food safety.”, J. Food Hyg. Saf., vol. 34 (1), pp. 1-12, 2019.
, “Novel function of vitamin E in regulation of zebrafish (Danio rerio) brain lysophospholipids discovered using lipidomics.”, J Lipid Res, vol. 56, no. 6, pp. 1182-90, 2015.
, “Role of Extracellular Ca2+ and Calcium Channel Activated by a G Protein-Coupled Receptor Regulating Pheromone Production in Helicoverpa zea (Lepidoptera: Noctuidae)”, Annals of the Entomological Society of America, vol. 99, no. 5, pp. 905 - 909, 2006.
, “Isolation and identification of the cDNA encoding the pheromone biosynthesis activating neuropeptide and additional neuropeptides in the oriental tobacco budworm, Helicoverpa assulta (Lepidoptera: Noctuidae).”, Insect Biochem Mol Biol, vol. 28, no. 10, pp. 759-66, 1998.
, “Identification and expression of a new member of the pyrokinin/pban gene family in the sand fly Phlebotomus papatasi”, Journal of Insect Physiology, vol. 79, pp. 55 - 62, 2015.
, “Initiation and termination of pupal diapause in the fall webworm, Hyphantria cunea”, Korean Journal of Applied Entomology, vol. 26, no. 3, pp. 139-144, 1987.
, “Site-directed mutagenesis and PBAN activation of the Helicoverpa zea PBAN-receptor”, FEBS Letters, vol. 584, no. 6, pp. 1212 - 1216, 2010.
, “PBAN stimulation of pheromone biosynthesis by inducing calcium influx in pheromone glands of Helicoverpa zea”, Journal of Insect Physiology, vol. 50, no. 6, pp. 555 - 560, 2004.
, “Ant Trail Pheromone Biosynthesis Is Triggered by a Neuropeptide Hormone”, PLoS ONE, no. 11, p. e50400, 2012.
, “Role of extracellular domains in PBAN/pyrokinin GPCRs from insects using chimera receptors”, Insect Biochemistry and Molecular Biology, vol. 37, no. 4, pp. 296 - 306, 2007.
, “Pheromone Biosynthesis Activating Neuropeptide (PBAN) in Insects”, Korean journal of applied entomology, vol. 61, pp. 15–28, 2022.
, “Identification and Determination of the Partial cDNA Encoding the Pheromone Biosynthesis Activating Neuropeptide in Helicoverpa armigera”, Journal of Asia-Pacific Entomology, vol. 2, no. 2, pp. 175 - 180, 1999.
, “Effect of Erythritol on Drosophila suzukii (Diptera: Drosophilidae) in the Presence of Naturally-Occurring Sugar Sources, and on the Survival of Apis mellifera (Hymenoptera: Apidae).”, Journal of Economic Entomology, vol. 112, no. 2, 2019.
, “Tarsi of Male Heliothine Moths Contain Aldehydes and Butyrate Esters as Potential Pheromone Components”, Journal of Chemical Ecology, vol. 42, no. 5, pp. 425 - 432, 2016.
, “Change in major carbohydrate contents in diapausing and nondiapausing pupae of the fall webworm, Hyphantria cunea”, Korean Journal of Applied Entomology, vol. 26, no. 3, pp. 145-150, 1987.
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