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Journal of Chemical Ecology|December 10, 2013
Selective predation on chemically defended chrysomelid larvae : A Conditioning ProcessJ M Pasteels, J C GregoireScience (New York, N.Y.)|July 1, 1977
Cardiac glycosides in the defensive secretion of chrysomelid beetles: evidence for their production by the insectsJ M Pasteels, D DalozeJournal of Chemical Ecology|January 14, 2014
Distribution of adult defense glands in chrysomelids (Coleoptera: Chrysomelidae) and its significance in the evolution of defense mechanisms within the familyC Deroe, J M PasteelsJournal of Chemical Ecology|November 19, 2013
Isolation of 8-hydroxygeraniol-8-O-β-D-glucoside, a probable intermediate in biosynthesis of iridoid monoterpenes, from defensive secretions ofPlagiodera versicolora andGastrophysa viridula (Coleoptera: Chrysomelidae)D Daloze, J M PasteelsTissue & Cell|January 1, 1973
Champs morphogenetiques mis en evidence par l'etude au microscope electronique a balayage des soies au niveau des pattes d'abeilles (apoidea, megachilidae)J M Pasteels, J J PasteelsJournal of Chemical Ecology|December 6, 2013
Economics of chemical defense in chrysomelinaeM Rowell-Rahier, J M PasteelsJournal of Chemical Ecology|December 7, 2013
Modes of defense in nematine sawfly larvae : Efficiency against ants and birdsJ L Boevé, J M PasteelsBehavioural Processes|June 5, 2014
Response thresholds to recruitment signals and the regulation of foraging intensity in the ant Myrmica sabuleti (Hymenoptera, Formicidae)J C de Biseau, J M PasteelsScience (New York, N.Y.)|July 11, 1986
A toxic dipeptide from the defense glands of the colorado beetleD Daloze, J C Braekman, J M PasteelsSystematic Biology|April 27, 2002
Phylogenetic analyses of DNA and allozyme data suggest that Gonioctena leaf beetles (Coleoptera; Chrysomelidae) experienced convergent evolution in their history of host-plant family shiftsP Mardulyn, M C Milinkovitch, J M PasteelsPageof 4