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Soc. Am., 66, 234, 10.1093\u002Faesa\u002F66.1.234\nBrand, J. M., Blum, M. S. and Ross, H. H. (in press) Biochemical evolution in fire ant venoms. Insect Biochem.\nBrand, 1972, Fire ant venoms: comparative analyses of alkaloidal components, Toxicon, 10, 259, 10.1016\u002F0041-0101(72)90011-6\nBuffkin, 1972, Some chemical and pharmacological properties of the venom of the imported red fire ant, Solenopsis saevissima richteri, Toxicon, 10, 526, 10.1016\u002F0041-0101(72)90185-7\nCrewe, 1970, Alarm pheromones in the genus Myrmica (Hymenoptera: Formicidae), Z. vergl. Physiol., 70, 363, 10.1007\u002FBF00298191\nGlancey, 1972, Multiple fertile queens in colonies of the imported fire ant, Solenopsis invicta Buren, J. Ga ent. Soc., 2, 291\nJouvenaz, E. P., Blum, M. S. and MacConnell, J. G. (in press) Antibacterial activity of venom alkaloids from the imported fire ant, Solenopsis invicta Buren. Antimicrob. Ag. Chemother.\nMacConnell, 1970, Alkaloid from fire ant venom: identification and synthesis, Science, Wash., 168, 840, 10.1126\u002Fscience.168.3933.840\nMacConnell, 1971, The chemistry of fire ant venom, Tetrahedron, 27, 1129, 10.1016\u002FS0040-4020(01)90860-9\nMorgan, 1972, Chemical constituents of Dufour's gland in the ant Myrmica rubra, J. Insect Physiol., 18, 1125, 10.1016\u002F0022-1910(72)90147-3\nPain, 1967, Dosages individuels des acides céto-9 décène-2 oïque et hydroxy-10 décène-2 oïque dans les têtes des reines et des ouvrières d'abeilles, Annls Abeille, 10, 45, 10.1051\u002Fapido:19670105\nRegnier, 1969, The alarm-defence system of the ant Lasius alienus, J. Insect Physiol., 15, 893, 10.1016\u002F0022-1910(69)90129-2\nSchreuder, 1972, The chemistry of Dufour's gland and the poison gland secretions of Anoplolepis custodiens (Hymenoptera: Formicidae), J. Ga ent. Soc., 7, 188\nTricot, 1972, Phéromones stimulant et inhibitant l'aggressivité chez Myrmica rubra, J. 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Agric. Food Chem., 10.1021\u002Fjf049395m\nDraisci, 1999, High levels of yessotoxin in mussels and presence of yessotoxin and homoyessotoxin in dinoflagellates of the Adriatic Sea, Toxicon, 37, 1187, 10.1016\u002FS0041-0101(98)00254-2\n2002, Official J Eur Commun, L75, 62\nEppeley, 1967, Sinking rates of marine phytoplankton measured with fluorometer, J Exp Mar Biol Ecol, 1, 191, 10.1016\u002F0022-0981(67)90014-7\nGarthwaite, 2001, Integrated enzyme-linked immunosorbent assay screening system for amnesic, neurotoxic, diarrhetic, and paralytic shellfish poisoning toxins found in New Zealand, J AOAC Int, 84, 1643, 10.1093\u002Fjaoac\u002F84.5.1643\nGoto, 2001, Quantitative determination of marine toxins associated with diarrhetic shellfish poisoning by liquid chromatography coupled with mass spectrometry, J Chromatogr A, 907, 181, 10.1016\u002FS0021-9673(00)01047-5\nGuillard, 1973, 69\nHoshaw, 1973, 53\nLee, 1988, Diarrhetic shellfish toxins in Norwegian mussels, Nippon Suisan Gakkaishi, 54, 1953, 10.2331\u002Fsuisan.54.1953\nMiles, 2002\nMiles, C.O., Wilkins, A.L., Hawkes, A.D., Selwood, A., Jensen, D.J., Munday, R., Beuzenberg, V., 2004a. 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Toxins, 5, 164, 10.1002\u002F19970504NT7\nSatake, 1999, Confirmation of yessotoxin and 45,46,47-trinoryessotoxin production by Protoceratium reticulatum collected in Japan, Nat. Toxins, 7, 147, 10.1002\u002F(SICI)1522-7189(199907\u002F08)7:4\u003C147::AID-NT50>3.0.CO;2-6\nSeamer C., 2001. The Production of Yessotoxin by Protoceratium reticulatum. MSc Dissertation, Victoria University of Wellington, New Zealand.\nThrondsen, 1978, 69\nYasumoto, 1997, Fluorometric measurement of yessotoxins in shellfish by high-pressure liquid chromatography, Biosci. Biotechnol. 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J. Physiol. LC, 229, 1675, 10.1152\u002Fajplegacy.1975.229.6.1675\nCarcamo-Noriega, 2019, Venom content and toxicity regeneration after venom gland depletion by electrostimulation in the scorpion Centruroides limpidus, Toxicon, 157, 87, 10.1016\u002Fj.toxicon.2018.11.305\nCardoso, 2021, A spider-venom peptide with multitarget activity on sodium and calcium channels alleviates chronic visceral pain in a model of irritable bowel syndrome, Pain, 162, 569, 10.1097\u002Fj.pain.0000000000002041\nCasewell, 2013, Complex cocktails: the evolutionary novelty of venoms, Trends Ecol. Evol., 28, 219, 10.1016\u002Fj.tree.2012.10.020\nCooper, 2014, Venom regeneration in the centipede Scolopendra polymorpha: evidence for asynchronous venom component synthesis, Zoology, 117, 398, 10.1016\u002Fj.zool.2014.06.007\nCushman, 1991, History of the design of captopril and related inhibitors of angiotensin converting enzyme, Hypertension, 17, 589, 10.1161\u002F01.HYP.17.4.589\nDíaz-García, 2019, Effect of frequency of Rhopalurus junceus scorpion venom collection on protein content and biological activity, Trends Med., 19, 1, 10.15761\u002FTiM.1000216\nFilzmoser, 2009, Principal component analysis for compositional data with outliers, Environmetrics: Off J. Int. Environmetr. Soc., 20, 621, 10.1002\u002Fenv.966\nFry, 2003, Molecular evolution and phylogeny of elapid snake venom three-finger toxins, J. Mol. Evol., 57, 110, 10.1007\u002Fs00239-003-2461-2\nGao, 2007, Inducible antibacterial response of scorpion venom gland, Peptides, 28, 2299, 10.1016\u002Fj.peptides.2007.10.004\nGopalakrishnakone, 1995, Black scorpion (Heterometrus longimanus) as a laboratory animal: maintenance of a colony of scorpion for milking of venom for research, using a restraining device, Lab. Anim., 29, 456, 10.1258\u002F002367795780740050\nGrant, 2007\nGuo, 2009, Non-parallel expression of a triflavin-like disintegrin venom protein in the main glands of Trimeresurus mucrosquamatus, Toxin Rev., 28, 266, 10.3109\u002F15569540903348056\nHaight, 2012, Patterns of venom production and temporal polyethism in workers of jerdon's jumping ant, Harpegnathos saltator, J. Insect Physiol., 58, 1568, 10.1016\u002Fj.jinsphys.2012.09.011\nHolding, 2021, Phylogenetically diverse diets favor more complex venoms in North American pitvipers, Proc. Natl. Acad. Sci. U.S.A., 118, 10.1073\u002Fpnas.2015579118\nInceoglu, 2003, One scorpion, two venoms: prevenom of Parabuthus transvaalicus acts as an alternative type of venom with distinct mechanism of action, Proc. Natl. Acad. Sci. U.S.A., 100, 922, 10.1073\u002Fpnas.242735499\nKochva, 1960, A quantitative study of venom secretion by Vipera palaestinae, Am. J. Trop. Med., 9, 381, 10.4269\u002Fajtmh.1960.9.381\nKuhn-Nentwig, 2004, Biochemistry, toxicology and ecology of the venom of the spider Cupiennius salei (Ctenidae), Toxicon, 43, 543, 10.1016\u002Fj.toxicon.2004.02.009\nLuna, 2009, Sympathetic outflow activates the venom gland of the snake Bothrops jararaca by regulating the activation of transcription factors and the synthesis of venom gland proteins, J. Exp. Biol., 212, 1535, 10.1242\u002Fjeb.030197\nLuna, 2013, Activation of Bothrops jararaca snake venom gland and venom production: a proteomic approach, J. Proteonomics, 94, 460, 10.1016\u002Fj.jprot.2013.10.026\nMargres, 2014, Linking the transcriptome and proteome to characterize the venom of the eastern diamondback rattlesnake (Crotalus adamanteus), J. Proteonomics, 96, 145, 10.1016\u002Fj.jprot.2013.11.001\nMcCue, 2006, Cost of producing venom in three North American pitviper species, Copeia, 2006, 818, 10.1643\u002F0045-8511(2006)6[818:COPVIT]2.0.CO;2\nMcMonigle, 2014\nMiljanich, 2004, Ziconotide: neuronal calcium channel blocker for treating severe chronic pain, Curr. Med. Chem., 11, 3029, 10.2174\u002F0929867043363884\nMorrison, 1982, The mass of venom injected by two elapidae: the taipan (Oxyuranus scutellatus) and the australian tiger snake (Notechis scutatus), Toxicon, 20, 739, 10.1016\u002F0041-0101(82)90121-0\nNisani, 2012, Investigating the chemical profile of regenerated scorpion (Parabuthus transvaalicus) venom in relation to metabolic cost and toxicity, Toxicon, 60, 315, 10.1016\u002Fj.toxicon.2012.04.343\nNisani, 2007, Cost of venom regeneration in Parabuthus transvaalicus (Arachnida: Buthidae), Comp. Biochem. Physiol. Part A Mol. Integr. Physiol., 147, 509, 10.1016\u002Fj.cbpa.2007.01.027\nOksanen, 2013\nOron, 1978, Asynchrony in the synthesis of secretory proteins in the venom gland of the snake Vipera palaestinae, Biochem. J., 174, 733, 10.1042\u002Fbj1740733\nPe, 1986, Amount of venom injected by Russell's viper (Vipera russelli), Toxicon, 24, 730, 10.1016\u002F0041-0101(86)90037-1\nPerret, 1977, Venom regeneration in tarantula spiders—I. Analysis of venom produced at different time intervals, Comp. Biochem. Physiol. A Physiol., 56, 607, 10.1016\u002F0300-9629(77)90294-8\nPimenta, 2003, Individual variability in Tityus serrulatus (Scorpiones, Buthidae) venom elicited by matrix-assisted laser desorption\u002Fionization time-of-flight mass spectrometry, Rapid Commun. Mass Spectrom., 17, 413, 10.1002\u002Frcm.934\nPintor, 2010, Costs of venom production in the common death adder (Acanthophis antarcticus), Toxicon, 56, 1035, 10.1016\u002Fj.toxicon.2010.07.008\nPintor, 2011, Venom physiology and composition in a litter of common death adders (Acanthophis antarcticus) and their parents, Toxicon, 57, 68, 10.1016\u002Fj.toxicon.2010.10.001\n2017\nSchaeffer, 1972, The histochemistry of the venom glands of the rattlesnakeCrotalus viridis helleri—ii: monoamine oxidase, acid and alkaline phosphatase, Toxicon, 10, 295, 10.1016\u002F0041-0101(72)90016-5\nTaylor, 1986, An investigation on venom secretion by the venom gland cells of the carpet viper (echis carinatus), Toxicon, 24, 651, 10.1016\u002F0041-0101(86)90028-0\nTcheng, 2002, Eptifibatide: a potent inhibitor of the platelet receptor integrin glycoprotein iib\u002Fiiia, Expet Opin. Pharmacother., 3, 1199, 10.1517\u002F14656566.3.8.1199\nTempl, 2011, Robcompositions: robust estimation for compositional data, Manual Package\nTragust, 2013, Ants disinfect fungus-exposed brood by oral uptake and spread of their poison, Curr. Biol., 23, 76, 10.1016\u002Fj.cub.2012.11.034\nUndheim, 2014, Clawing through evolution: toxin diversification and convergence in the ancient lineage Chilopoda (centipedes), Mol. Biol. Evol., 31, 2124, 10.1093\u002Fmolbev\u002Fmsu162\nVelasco-Bolom, 2018, Molecular dynamics simulation of the membrane binding and disruption mechanisms by antimicrobial scorpion venom-derived peptides, J. Biomol. Struct. 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