Revisão Revisado por pares

BEHAVIORAL AND DEVELOPMENTAL PHYSIOLOGY OF SCHISTOSOME LARVAE AS RELATED TO THEIR MOLLUSCAN HOSTS*

1975; Wiley; Volume: 266; Issue: 1 Linguagem: Inglês

10.1111/j.1749-6632.1975.tb35125.x

ISSN

1749-6632

Autores

Frank J. Etges, O. S. Carter, G. Webbe,

Tópico(s)

Plant Pathogenic Bacteria Studies

Resumo

Annals of the New York Academy of SciencesVolume 266, Issue 1 p. 480-496 BEHAVIORAL AND DEVELOPMENTAL PHYSIOLOGY OF SCHISTOSOME LARVAE AS RELATED TO THEIR MOLLUSCAN HOSTS* F. J. Etges, F. J. Etges Department of Biological Sciences The University of Cincinnati Cincinnati, Ohio 45221 and The London School of Hygiene and Tropical Medicine Winches Farm Field Station St. Albans, Hertshire, EnglandSearch for more papers by this authorO. S. Carter, O. S. Carter Department of Biological Sciences The University of Cincinnati Cincinnati, Ohio 45221 and The London School of Hygiene and Tropical Medicine Winches Farm Field Station St. Albans, Hertshire, England Department of Biology, Vanderbilt University, Nashville, Tenn. 37235.Search for more papers by this authorG. Webbe, G. Webbe Department of Biological Sciences The University of Cincinnati Cincinnati, Ohio 45221 and The London School of Hygiene and Tropical Medicine Winches Farm Field Station St. Albans, Hertshire, EnglandSearch for more papers by this author F. J. Etges, F. J. Etges Department of Biological Sciences The University of Cincinnati Cincinnati, Ohio 45221 and The London School of Hygiene and Tropical Medicine Winches Farm Field Station St. Albans, Hertshire, EnglandSearch for more papers by this authorO. S. Carter, O. S. Carter Department of Biological Sciences The University of Cincinnati Cincinnati, Ohio 45221 and The London School of Hygiene and Tropical Medicine Winches Farm Field Station St. Albans, Hertshire, England Department of Biology, Vanderbilt University, Nashville, Tenn. 37235.Search for more papers by this authorG. Webbe, G. Webbe Department of Biological Sciences The University of Cincinnati Cincinnati, Ohio 45221 and The London School of Hygiene and Tropical Medicine Winches Farm Field Station St. Albans, Hertshire, EnglandSearch for more papers by this author First published: November 1975 https://doi.org/10.1111/j.1749-6632.1975.tb35125.xCitations: 19 * Supported in part by Research Fellowship F03 AI 51 149-01 (F.J.E.) from the National Institutes of Health. AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat References 1 Bair, R. D. & F. J. Etges. 1973. Schistosoma mansoni: factors affecting hatching of eggs. Exp. Parasitol. 33: 155–167. 10.1016/0014-4894(73)90021-0 CASPubMedWeb of Science®Google Scholar 2 Kusel, J. R. 1970. Studies on the structure and hatching of the eggs of Schistosoma mansoni. Parasitology 60: 79–88. 10.1017/S003118200007726X CASPubMedWeb of Science®Google Scholar 3 Wright, C. A. 1958. Host-location by trematode miracidia. Ann. Trop. Med. Parasitol. 53: 288–292. PubMedGoogle Scholar 4 Chernin, E. & C. A. Dunavan. 1962. The influence of host-parasite dispersion upon the capacity of Schistosoma mansoni miracidia to infect Australorbis glabratus. Amer. J. Trop. Med. Hyg. 11: 455–471. CASPubMedWeb of Science®Google Scholar 5 MacInnis, A. J. 1965. Responses of Schistosoma mansoni miracidia to chemical attractants. J. Parasitol. 51: 731–746. 10.2307/3276148 CASPubMedWeb of Science®Google Scholar 6 Etges, F. J. & C. L. Decker. 1963. Chemosensitivity of the miracidium of Schistosoma mansoni to Australorbis glabratus and other snails. J. Parasitol. 49: 114–116. 10.2307/3275684 CASWeb of Science®Google Scholar 7 Chernin, E. & J. M. Perlstein. 1971. Protection of snails against miracidia of Schistosoma mansoni by various aquatic invertebrates. J. Parasitol. 57: 217–219. 10.2307/3278017 CASPubMedWeb of Science®Google Scholar 8 Chernin, E. 1970. Behavioral responses of miracidia of Schistosoma mansoni and other trematodes to substances emitted by snails. J. Parasitol. 56: 287–296. 10.2307/3277659 CASPubMedWeb of Science®Google Scholar 9 Shiff, C. J. & R. L. Kriel. 1970. A water-soluble product of Bulinus (Physopsis) globosus attractive to Schistosoma haematobium miracidia. J. Parasitol. 56: 281–286. 10.2307/3277658 CASPubMedWeb of Science®Google Scholar 10 Upatham, E. S. & R. F. Sturrock. 1973. Field investigations on the effect of other aquatic animals on the infection of Biomphalaria glabrata by Schistosoma mansoni miracidia. J. Parasitol. 59: 448–453. 10.2307/3278770 CASPubMedWeb of Science®Google Scholar 11 Glaudel, R. J. & F. J. Etges. 1973. Toxic effects of freshwater turbellarians on schistosome miracidia. J. Parasitol. 59: 74–76. 10.2307/3278574 CASPubMedWeb of Science®Google Scholar 12 Mattes, O. 1932. Uber die Wirkungsweise und die Bedeutung Turbellarien-Hautdrusen. Z. Morphol. Oekol. Tiere 24: 743–767. 10.1007/BF00464230 Google Scholar 13 Chernin, E. & J. M. Perlstein. 1969. Further studies on interference with the host-finding capacity of Schistosoma mansoni miracidia. J. Parasitol. 55: 500–508. 10.2307/3277290 CASPubMedWeb of Science®Google Scholar 14 Falck, B. & C. Ourman. 1965. A detailed methodological description of fluo-rescence methods for the cellular demonstration of biogenic amines. Acta Univ. Lund. 2(7). Google Scholar 15 Chiang, P. K., J. G. Bourgeois & E. Bueding. 1974. 5-Hydroxytryptamine and dopamine in Biomphalaria glabrata. J. Parasitol. 60: 264–271. 10.2307/3278462 CASPubMedWeb of Science®Google Scholar 16 MacInnis, A. J., W. M. Bethel & E. M. Cornford. 1974. Identification of chemicals of snail origin that attract Schistosoma mansoni miracidia. Nature (London) 248: 361–363. 10.1038/248361a0 CASPubMedWeb of Science®Google Scholar 17 Sturrock, R. F. & E. S. Upatham. 1973. An investigation of the interactions of some factors influencing the infectivity of Schistosoma mansoni miracidia to Biomphalaria glabrata. Int. J. Parasitol. 3: 35–41. 10.1016/0020-7519(73)90006-4 CASPubMedGoogle Scholar 18 Short, R. B. & K. Saladin. 1973. Behavior of trematode larval stages to environmental stimuli. J. Parasitol. Progr. Abst. 64. Google Scholar 19 Pan, C.-T. 1965. Studies on the host-parasite relationship between Schistosoma mansoni and the snail Australorbis glabratus. Amer. J. Trop. Med. Hyg. 14: 931–976. 10.4269/ajtmh.1965.14.931 CASPubMedWeb of Science®Google Scholar 20 Wright, C. A. 1966. The pathogenesis of helminths in the Mollusca. Helminth. Abst. 35: 207–224. Google Scholar 21 Sturrock, B. M. 1966. The influence of infection with Schistosoma mansoni on the growth rate and reproduction of Biomphalaria pfeifferi. Ann. Trop. Med. Parasitol. 60: 187–192. 10.1080/00034983.1966.11686405 CASPubMedWeb of Science®Google Scholar 22 Etges, F. J. & W. Gresso. 1965. Effect of Schistosoma mansoni infection upon fecundity in Australorbis glabratus. J. Parasitol. 51: 757–760. 10.2307/3276152 CASPubMedWeb of Science®Google Scholar 23 Najarian, H. H. 1961. Egg-laying capacity of the snail Bulinus truncatus in relation to infection with Schistosoma haematobium. Texas Rep. Biol. Med. 19: 327–331. CASPubMedWeb of Science®Google Scholar 24 Lo, C. T. 1972. Compatibility and host-parasite relationships between species of the genus Bulinus (Basommatophora: Planorbidae) and an Egyptian strain of Schistosoma haematobium (Trematoda: Digenea). Malacologia 11: 225–280. CASPubMedGoogle Scholar 25 Brumpt, E. 1941. Observations biologiques diverses concernant Planorbis (Australorbis) glabratus, hote intermediare de Schistosoma mansoni. Ann. Parasitol. 18: 9–45. 10.1051/parasite/1941181009 Google Scholar 26 Sturrock, B. M. & R. F. Sturrock. 1970. Laboratory studies of the host-parasite relationship of Schisotsoma mansoni and Biomphalaria glabrata from St. Lucia, West Indies. Ann. Trop. Med. Parasitol. 64: 357–363. 10.1080/00034983.1970.11686705 CASPubMedWeb of Science®Google Scholar 27 Erasmus, D. A. 1972. The Biology of Trematodes. E. Arnold Ltd. Publ. London , England . Google Scholar 28 Smith, J. H. & E. Chernin. 1974. Ultrastructure of young mother and daughter sporocysts of Schistosoma mansoni. J. Parasitol. 60: 85–89. 10.2307/3278683 CASPubMedWeb of Science®Google Scholar 29 Chernin, E. 1964. Maintenance in vitro of larval Schistosoma mansoni in tissues from the snail, Australorbis glabratus. J. Parasitol. 50: 531–545. 10.2307/3275615 CASPubMedWeb of Science®Google Scholar 30 DiConza, J. J. & E. L. Hansen. 1972. Multiplication of transplanted Schistosoma mansoni daughter sporocysts. J. Parasitol. 58: 181, 182. 10.2307/3278272 CASPubMedWeb of Science®Google Scholar 31 Hansen, E. L. 1973. Progeny-daughter sporocysts of Schistosoma mansoni. Int. J. Parasitol. 3: 267, 268. 10.1016/0020-7519(73)90033-7 CASPubMedGoogle Scholar 32 Hansen, E. L., K. Walen & E. Yarwood. 1974. Cell lineage in cultured larval Schistosoma mansoni. Amer. Soc. Trop. Med. Hyg. Progr. No. 2. Google Scholar 33 Maldonado, J. F. & J. Acosta-Matienzo. 1947. The development of Schistosoma mansoni in the snail intermediate host, Australorbis glabratus.. Puerto Rico J Publ. Health Trop. Med. 22: 331–373. Google Scholar 34 Lengy, J. 1962. Studies on Schistosoma bovis (Sonsino, 1876) in Israel. I. Larval stages from egg to cercaria. Bull. Res. Council Israel Sect. E 10: 1–36. Web of Science®Google Scholar 35 Olivier, L. & C. P. Mao. 1949. The early larval stages of Schistosoma mansoni Sambon, 1907 in the snail host, Australorbis glabratus (Say, 1818). J. Parasitol. 35: 267–275. 10.2307/3273302 CASPubMedWeb of Science®Google Scholar 36 Fripp, P. J. 1967. Histochemical localization of esterase activity in schistosomes. Exp. Parasitol. 21: 380–390. 10.1016/0014-4894(67)90098-7 CASPubMedWeb of Science®Google Scholar 37 Bueding, E., E. L. Schiller & J. G. Bourgeois. 1967. Some physioloigcal, bio-chemical, and morphologic effects of tris (p-aminophenyl) carbonium salts (TAC) on Schistosoma mansoni. Amer. J. Trop. Med. Hyg. 16: 500–515. CASPubMedWeb of Science®Google Scholar 38 Morris, G. P. & L. T. Threadgold. 1967. A presumed sensory structure associated with the tegument of Schistosoma mansoni. J. Parasitol. 53: 537–539. 10.2307/3276711 CASPubMedWeb of Science®Google Scholar 39 Bruckner, D. A. & M. Voge. 1974. The nervous system of larval Schistosoma mansoni as revealed by acetylcholinesterase staining. J. Parasitol. 60: 437–446. 10.2307/3278359 CASPubMedWeb of Science®Google Scholar 40 Sullivan, J. T. & T. C. Cheng. 1974. Structure and function of the mantle cavity of Biomphalaria glabrata (Mollusca: Pulmonata). Trans. Amer. Microsc. Soc. 93: 416–420. 10.2307/3225446 CASPubMedWeb of Science®Google Scholar 41 Basch, P. F. 1969. The arterial system of Biomphalaria glabrata (Say). Malacologia 7: 169–181. Google Scholar 42 Thompson, S. W. 1966. Selected Histochemical and Histopathological Methods. Charles C Thomas, Publisher. Springfield , Ill . Google Scholar 43 Pearson, C. K. 1963. A formalin-sucrose-ammonia fixative for cholinesterases. J. Histochem. Cytochem. 11: 665, 666. 10.1177/11.5.665-a CASWeb of Science®Google Scholar 44 Kinoti, G. K., R. G. Bird & M. Barker. 1971. Electron microscope and histochemical observations on the daughter sporocyst of Schistosoma mattheei and Schistosoma bovis. J. Helminthol. 45: 237–244. 10.1017/S0022149X00007124 CASPubMedGoogle Scholar Citing Literature Volume266, Issue1Pathobiology of Invertebrate Vectors of DiseaseNovember 1975Pages 480-496 ReferencesRelatedInformation

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