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Research Article

COLUBRID SNAKES AND DUVERNOY'S “VENOM” GLANDS

Pages 1-19 | Published online: 06 Dec 2002

REFERENCES

  • Hoffstetter R. Un serpent terrestre dans le Crétacé inférieur du Sahara. Bull. Soc. Geol. Fr. 1960; 1: 897–902
  • Kardong K. V. Squamates at geological boundaries: unbounded evolution. Zoology (ZACS) 1997; 100: 152–163
  • Kochva E. Oral Glands of the Reptilia. Biology of the Reptilia, C. Gans, K. A. Gans. Academic Press, New York 1978; 43–94
  • Weinstein S. A., Kardong K. V. Properties of Duvernoy's secretions from opisthoglyphous and aglyphous colubrid snakes: a critical review. Toxicon 1994; 32: 1161–1185
  • Zalisko E. J., Kardong K. V. Histology and histochemistry of the Duvernoy's gland of the brown tree snake, Boiga irregularis. Copeia 1992; 1992: 791–799
  • Kardong K. V., Lavín-Murcio P. A. Venom delivery of snakes as high-pressure and low-pressure systems. Copeia 1993; 1993: 644–650
  • Gans C., Elliott W. B. Snake venoms: production, injection, action. Adv. Oral Biol. 1968; 3: 45–81
  • Kochva E., Gans C. Salivary glands of snakes. Clin. Toxicol. 1970; 3: 363–387
  • Gygax P. Entwicklung, Bau und Funktion der Gifdrüse (Duvernoy's gland) von Natrix tessellata. Acta Trop. 1971; 28: 225–274
  • Kochva E. The development of the venom gland in the opisthoglyph snake Telescopus fallax with remarks on Thamnophis sirtalis (Colubridae, Reptilia). Copeia 1965; 1965: 147–154
  • Kochva E., Wollberg M. The salivary glands of Aparallactinae (Colubridae) and the venom glands of Elaps (Elapidae) in relation to the taxonomic status of the genus. J. Linn. Soc. London 1970; 49: 217–224
  • Martin H. Sur le Développement de lappareil venimeux de la Vipera aspis Évolutin du canal venimeux. C.R. 28 Sess. Sec. Part. Assn. Franc. Avanc. Sci. 1899a; 522–527
  • Martin H. Recherches sur le développement de l'appareil venimeux de la Vipera aspis. C. R. Assoc. Anat. 1899b; 1: 56–66
  • Martin H. Étude de l'appareil glandulaire venimeux chez un embryon dé Vipera aspis. Stade V. Bull. Soc. Zool. Fr. 1899c; 24: 106–116
  • Rosenberg H. I. Histology, histochemistry, and emptying mechanism of the venom glands of some Elapid snakes. J. Morphol. 1967; 123(2)133–156
  • Gopalakrishnakone P., Kochva E. Venom glands and some associated muscles in sea snakes. J. Morphol. 1990; 205: 85–96
  • Haas G. Muscle of the Jaws and Associated Structures in the Rhynchocephalia and Squamata. Biology of the Reptilia, C. Gans, T. S. Parsons. Academic Press, New York 1973; 285–490
  • Hayes W. K., Duvall D., Kaiser I. Do Rattlesnakes Control the Mass of Venom Injected into Prey?. Texas Herpetological Society, Arlington, Texas 1989
  • Hayes W. K., Lavín-Murcio P., Kardong K. V. Northern Pacific rattlesnakes (Crotalus viridis oreganus) meter venom when feeding on prey of different sizes. Copeia 1995; 1995: 337–343
  • Kardong K. V. Predatory strike behavior of the rattlesnake, Crotalus viridis oreganus. J. Comp. Psychol. 1986; 100: 304–313
  • Taub A. M. Comparative histological studies on Duvernoy's gland of colubrid snakes. Bull. Am. Mus. Nat. Hist. 1967; 138: 1–50
  • Jansen D. W., Foehring R. C. The mechanism of venom secretion from Duvernoy's gland of the snake Thamnophis sirtalis. J. Morphol. 1983; 175: 271–277
  • Hayes W. K., Lavín-Murcio P., Kardong K. V. Delivery of Duvernoy's secretion into prey by the brown tree snake, Boiga irregularis (Serpentes: Colubridae). Toxicon 1993; 31: 881–887
  • Taub A. Comparative histological studies on Duvernoy's gland of colubrid snakes. Bull. Am. Mus. Nat. Hist. 1967; 138: 1–50
  • Young B. A., Kardong K. V. Dentitional surface features in snakes (Reptilia: Serpentes). Amphib.-Reptilia 1996; 17: 261–276
  • Vest D. K. Envenomation following the bite of a wandering garter snake Thamnophis elegans vagrans. Clin. Toxicol. 1981; 18: 573–579
  • Meier J. Venomous Snakes. Medical Use of Snake Venom Proteins, K. F. Stocker. CRC Press, Boca Raton 1990; 1–32
  • Alcock A., Rogers L. On the toxic properties of the saliva of certain “non-poisonous” colubrines. Proc. R. Soc. London 1902; 70: 445–454
  • Zeller E. A. Enzymes of Snake Venoms and Their Biological Significance. Advances in Enzymology, F. F. Nord. Interscience Publications, New York 1948; 459–495
  • Klauber L. M. Rattlesnakes, their habits, life histories, and influence on mankind. 1956; 1: 1–708, 2, 709–1476
  • Kardong K. V. Comparative study of changes in prey capture behavior in the cottonmouth (Agkistrodon piscivorus) and Egyptian cobra (Naja haje). Copeia 1982; 1982: 337–343
  • Kardong K. V., Kiene T. L., Johnson E. K. Proximate factors affecting the predatory behavior of the red spitting cobra, Naja mossambica pallida. J. Herpetol. 1997; 31(1)66–71
  • Rodríguez-Robles J. A. Notes on the feeding behavior of the Puerto Rican racer, Alsophis portoricensis (Serpentes: Colubridae). J. Herpetol. 1992; 26: 100–102
  • Rodríguez-Robles J. A., Thomas R. Venom function in the Puerto Rican racer, Alsophis portoricensis (Serpentes: Colubridae). Copeia 1992; 1992(1)62–68
  • Bramble D. M., Wake D. B. Feeding Mechanisms of Lower Tetrapods. Functional Vertebrate Morphology, M. Hildebrand, et al. The Belknap Press of Harvard University Press, Cambridge 1985; 230–261
  • Gans C. The feeding mechanism of snakes and its possible evolution. Am. Zool. 1961; 1: 217–227
  • Dullemeijer P. Some remarks on the feeding behavior of rattlesnakes. Ned. Acad. Van Wetenschappen Proc. Ser. 1961; 64: 383–396
  • Mackessy S. P. Venom ontogeny in the Pacific rattlesnakes Crotalus viridis helleri and C. v. oreganus. Copeia 1988; 1988: 92–101
  • Thomas R., Pough F. H. The effect of rattlesnake venom on digestion of prey. Toxicon 1979; 17: 221–228
  • Kardong K. V., Bels V. L. Rattlesnake strike behavior: kinematics. J. Exp. Biol. 1998; 201: 837–850
  • Minton S. A. The feeding strike of the timber rattlesnake. J. Herpetol. 1969; 3: 121–124
  • Kardong K. V., Smith T. L. Proximate Factors Involved in Rattlesnake Predatory Behavior: A Review. Biology of the Vipers, G. W. Schuett, M. Höggren, H. W. Greene. Biological Sciences Press, Carmel 2001
  • Chiszar D., Radcliffe C. W., O'Connell B., Smith H. M. Strike-induced chemosensory searching in rattlesnakes (Crotalus viridis) as a function of disturbance prior to presentation of rodent prey. Psych. Rec. 1981; 32: 57–62
  • Chiszar D., Radcliffe C. W., Feiler F., Duvall D. Strike-Induced Chemosensory Searching by Rattlesnakes: The Role of Envenomation-Related Chemical Cues in the Post-Strike Envirnoment. Chemical Signals in Vertebrates, D. Müller-Schwarze, R. M. Silverstein. Plenum Press, New York 1983; 1–24
  • Robinson B. G., Kardong K. V. Relocation of struck prey by venomoid (venom-less) rattlesnakes Crotalus viridis oreganus. Bull. Md. Herpetol. Soc. 1991; 27: 23–30
  • Lavín-Murcio P., Robinson B. G., Kardong K. V. Cues involved in relocation of struck prey by rattlesnakes, Crotalus viridis oreganus. Herpetologica 1993; 49(4)463–469
  • Chiszar D., Lee R.K. K., Smith H. M., Radcliffe C. W. Searching Behaviors by Rattlesnakes Following Predatory Strikes. Biology of the Pit Vipers, J. A. Campbell, E. D. Brodie. Selma, Tyler 1992; 369–382
  • Russell F. E. Snake Venom Poisoning. J.B. Lippincott, Philadelphia 1980
  • FitzSimons D. C., Smith H. M. Another rear-fanged South African snake lethal to humans. Herpetologica 1958; 14: 198–202
  • Minton S. A. Venomous bites by nonvenomous snakes: an annotated bibliography of colubrid envenomation. J. Wildl. Med. 1990; 1: 119–127
  • Mittleman M. B., Goris R. C. Envenomation from the bite of the Japanese colubrid snake Rhabdophis tigrinus (Boie). Herpetologica 1974; 30: 113–119
  • Ogawa H., Sawai Y. Fatal bite of the yamakagashi (Rhabdophis tigrinus) snake. 1986; 18: 53–54
  • Araujo M.E. D., Santos A.C. D. Cases of human envenoming caused by Philodryas ofersii and Phylodryas patagoniensis. Rev. Soc. Bras. Med. Trop. 1997; 30: 517–519
  • Burger W. L. A case of mild envenomation by the mangrove snake, Boiga dendrophilia. Snake 1975; 7: 99–100
  • Grogan W. L., Jr. Effects of accidental envenomation from the saliva of the Eastern hognose snake, Heterodon platyrhinos. Herpetologica 1974; 30: 248–249
  • Hayes W. K., Hayes R. Human envenomation from the bite of the Eastern garter snake, Thamnophis s. sirtalis (Serpentes: Colubridae). Toxicon 1985; 23: 719–721
  • Rosenberg H. I., Bdolah A., Kochva E. Lethal factors and enzymes in the secretion from Duvernoy's gland of three colubrid snakes. J. Exp. Zool. 1985; 233: 5–14
  • Vest D. K. The toxic secretion of the wandering garter snake, Thamnophis elegans vagrans. Toxicon 1985; 19: 831–839
  • Fukushima H. Clinical aspects of bite by Yamakagashi, Rhabdophis tigrinus. J. Kagoshima Soc. Int. Med. 1986; 18: 60–85
  • Kikuchi H., et al. Study on the effectiveness of the Yamakagashi (Rhabdophis tigrinus) antivenom. Snake 1987; 19: 84–86
  • McKinstry D. Morphologic evidence of toxic saliva in colubrid snakes: a checklist of world genera. Herpetol. Rev. 1983; 14: 12–15
  • Sakai A., Honma M., Sawai Y. Studies on the pathogenesis of envenomation of the Japanese colubrid snake, Yamakagashi, Rhabdophis tigrinus tigrinus (Boie). Snake 1983; 15: 7–13
  • Vest D. K., Mackessy S. P., Kardong K. V. The unique Duvernoy's secretion of the brown tree snake (Boiga irregularis). Toxicon 1991; 29: 532–535
  • Weinstein S. A., Stiles B. G., McCoid M. J., Smith L. A., Kardong K. V. Variation and lethal potencies and acetylcholine receptor binding activity of Duvernoy's secretions from the brown tree snake, Boiga irregularis. J. Nat. Toxins 1993; 2: 187–198
  • Fritts T. H., McCoid M. J., Haddock R. L. Risks to infants on Guam from bites of the brown tree snake (Boiga irregularis). Am. J. Trop. Med. Hyg. 1990; 42: 607–611
  • Rochelle M., Kardong K. V. Constriction vs. envenomation in prey capture by the brown tree snake Boiga irregularis (Squamata: Colubridae). Herpetologica 1993; 49: 297–300
  • Bonilla C. A., Fiero M. K., Seifert W. Comparative biochemistry and pharmacology of salivary glands. I. Electrophoretic analysis of the proteins in the secretions from human parotid and reptilian (Duvernoy's) glands. J. Chromatogr. 1971; 56: 368–372
  • Stough D. B., Roberson G. B., White C. A spitting image. Cutis 1989; 43: 135–136
  • Bock J. W. The definition and recognition of biological adaptation. Am. Zool. 1980; 20: 217–227
  • Kardong K. V. Snake toxins and venoms: an evolutionary perspective. Herpetologica 1996; 52(1)36–46
  • DeWit C. A. Resistance of the prairie vole (Microtus ochrogaster) and the woodrat (Osage copperhead), in Kansas, to venom of the Osage copperhead (Agkistrodon contortrix phaeogaster). Toxicon 1982; 20: 709–714
  • Rowe M. P., Owings D. H. Probing, assessment, and management during interactions between ground squirrels and rattlesnakes, Part 1: risks related to rattlesnake size and body temperature. Ethology 1990; 86: 237–249
  • Coss R. G., Gusé K. L., Poran N. S., Smith D. G. Development of antisnake defenses in California ground squirrels (Spermophilus beecheyi): II. Microevolutionary effects of relaxed selection from rattlesnakes. Behaviour 1994; 120: 137–164
  • Daltry J. C., Wüster W., Thorpe R. S. Diet and snake venom evolution. Nature 1996; 379: 537–540
  • Halstead B. W. Poisonous and Venomous Marine Animals of the World. Darwin Press, Princeton, New Jersey 1988; 1168
  • Pearson O. P. The submaxillary glands of shrews. Anat. Rec. 1950; 107: 61
  • Hill R. E., Mackessy S. P. Characterization of venom (Duvernoy's secretion) from twelve species of colubrid snakes and partial sequence of four venom proteins. Toxicon 2000; 38: 1663–1687
  • Leroi A. M., Rose M. R., Lauder G. V. What does the comparative method reveal about adaptation?. Am. Nat. 1994; 143: 381–402
  • Mackessy S. P. Fibrinogenolytic proteases from the venoms of juvenile and adult northern Pacific rattlesnakes (Crotalus viridis oreganus). Comp. Biochem. Physiol., Part B: Biochem. Mol. Biol. 1993; 106(1)181–189
  • Heise P. J., Maxson L. R., Dowling H. G., Hedges S. B. Higher-level snake phylogeny inferred from mitochondrial DNA sequences of 12S rRNA and 16S rRNA genes. Mol. Biol. Evol. 1995; 12(2)259–265
  • Knight A., Mindell D. P. On the phylogenetic relationship of Colubrinae, Elapidae, and Viperidae and the evolution of front-fanged venom systems in snakes. Copeia 1994; 1994(1)1–9

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