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Workshop no. 13. Evolution of helminths

Published online by Cambridge University Press:  19 November 2018

Extract

There are few, if any, authenticated records of fossil helminths or even of the hard parts of ectoparasitic monogeneans. This means that theories of helminth evolution can be based only on indirect evidence and are unlikely to be confirmed or refuted by palaeontologists.

Currently three main areas of study provide evidence of evolutionary trends: (i) morphology, in its broadest sense; (ii) life-history studies; (iii) host spectra and geographical distribution.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1981

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References

Amin, O. M. (1977). Helminth parasites of some southwestern Lake Michigan fishes. Proceedings of Ihe Helminthological Society of Washington, 44, 210217.Google Scholar
Amin, O. M. (1978). On the crustacean hosts of larval acanthocephalan and cestode parasites in southwestern Lake Michigan. Journal of Parasitology 64, 842845.Google Scholar
Anderson, R. C. (1957). The life cycles of Dipetalonematid Xematodes (Filarioidea, Dipetalonematidae). The problem of their evolution. Journal of Helminthology 31, 203224.Google Scholar
AndrÄSsy, I. (1976). Evolution as a Basis for the Systemaiization of Nematodes. London: Pitman. 288 pp.Google Scholar
Bain, O. (1970). Morphologie larvaire de Setaria labiatopapillosa (Nematoda, Filarioidea) ehez Aedes aegypti. Annales de Parasitologie humaine et comparie 45, 431—439.Google Scholar
Bain, O. (1972). Recherches sur la morphogenese des Filaires chez l'höteintermediaire. Annales de Parasitologie humaine et comparee 47, 251303.Google Scholar
Bain, O. & Mawsox, P.M. (1980). On some oviparous filarial nematodes from Australian birds. Records of the Auslralian Museum (in the Press).Google Scholar
Bain, O. & Philippon, B. (1969). Recherches sur des larves de Xematodes Ascaridida trouvees chez Simulium damnosum. Annales de Parasitologie humaine et comparee 44, 147156.Google Scholar
Bain, O. & Vassiliades, G. (1969). Cycle evolutif d'un Dicheilonematinae, Serratospiculuyn lendo, Filaire parasite du Faucon. Annales de Parasitologie humaine et comparee 44, 595604.Google Scholar
Baylis, H.A. (1938). Helminths and evolution. In Evolution, Essays on Aspects of Evolutionary Biology (ed. G. R. de Beer), pp. 249270. Oxford: Clarendon Press. Google Scholar
Bychowsky, B.E. (1957). Monogenetic Trematodes, Their Classification and Phylogeny. Moscow: Leningrad. Aeademy of Sciences Ussr. (In Russian.) English Irans.Google Scholar
Hargis, W. J. and Oustinoff, P. C. (1961). Washington: American Institute of Biological Sciences.Google Scholar
Cable, R. M. (1974). Phylogeny and taxonomy of trematodes withSpecial reference to marine species. In Symbiosis and the Sea (ed. W. B. Wornberg), pp. 173193. Columbia: Univorsity of South Carolina Press. Google Scholar
Chabaud, A. G. (1975). Cih Keys to the Nematode Parasites of Vertebrates. No. 3: Keys to genera of the Order Spirurida. Part 2. Spiruroidea, Habronematoidea and Acuarioidea (ed. Anderson, R. C., Chabaud, A. G. and Willmott, G.). Farnham Royal, England: Commonwealth Agricultural Bureaux.Google Scholar
Chun, C. (1892). Die Dissogonie, eine neue Form der geschleclilichen Zeugung. Festschrift zum siebenzigsten Geburtslage Rudolf Leukarts, pp. 77108. Leipzig: W. Engelmann. Google Scholar
Combes, C., Joubdane, J. & Knoepffler, L. (1974). Lo cycle biologique de Euzetrema knoepßlcri Combes, 1965 (Monogenea, Monopisthocotylea), parasite de l'euproctedo Corse. Bulletin de la Socie'te Zoologique de France 99, 219236.Google Scholar
Conway Morris, S. (1977). Fossil priapulid worms. Special Papers in Palaeontology 20, 195.Google Scholar
Conway Morris, S. (1981). Parasites and the fossil record. Parasitology 82 (in thePress).Google Scholar
Desportes, C. (1941). Xouvelles rechorches sur la morphologio et sur l'cvolutiun d'Icosieila neglecta (Diesing, 1851), Filaire commune de la Grenouille verte. Annales de Parasitologie humaine et comparie 18, 4667.Google Scholar
Durette-Desset, M. C. (1971). Essai de classification des Nematodes Hcligmosomes. Correlations avec la paleobiogeographie des hötes. Alemoires du Museum National d'HistorieNaturelle, N.S., Serie A, Zoologie 69, 126 pp.Google Scholar
Durette-Desset, M. C. & Chabaid, A. G. (1977). Essai de classificationdes Nematodes Triehostrongyloidea. Annales de Parasitologie humaine et comparie 52, 539558.Google Scholar
Euzet, L. & Suriano, D.M. (1973). Plechmocotyloides obscurum n.g. n.sp. (Monogenea) parasite branehial iVaspitrigla obscura (Teleosteen) et Mediterranee. Bulletin du Museum National d'flistoire Naturelle, Paris, Zoologie 101, 807813.Google Scholar
Foxon, G. E. H. (1933). Meaning of neoteny and paedogenesis. Nature 131, 93.Google Scholar
Fournieb, A. & Combes, C. (1979). Demonstration d'une dualite evolutivo des cmbryons ehez Eupolystoma alluaudi (Monogenea, Polystomatidae) et son role dans la genese du cyolo interne. Compte Rendu Hebdomadaire des Se'aneex de l'Acadimie des Sciences, Paris D 289, 745747.Google Scholar
Freeman, R. S. (1978). Unifledterminology and the logic of cestode ontogeny. Presentod at Icopa Iv Warsaw. (In the Press.)Google Scholar
Gibson, D. I. (1978). Some comments on tlie evolution of the Digenea. Parasitology 77 (3). Proceedings of the British Society for Parasitology, pp. 57.Google Scholar
Gibson, D.I. & Bray, R. A. (1979). The Hemiuroidea: terminology, systematics and evolution. Bulletin of the British Museum [Natural History), Zoology seriös, 36, 35146.Google Scholar
Gnedina, M. P. & Osipov, A. X. (1960). The life cycle of Parafilaria mullipapülosa (Condamine and Drouilly, 1878), parasitic in the horse. Dokladi Akademii Naulc Sssii 131, 12191221.Google Scholar
Golvan, Y. J. (1958). Le phylum des Acanthocephala. Premiere note. Sa place dans l'echelle zoologique. Annale-3 de Parasitologie humaine et compare'e 33, 538602.Google Scholar
Gussev, A. V. (1978). Some controversial problems in classification of monogeneans. Folia Parasitologica (Praha) 25, 323331.Google Scholar
Haffner, K. Von (1950). Organization und systematische Stellung der Acanthocephalen. In Festschrift für Dr Berthold Klatt. Zoologischer Anzeiger 145, 243274.Google Scholar
Haiton, D. V. (1975). Intracellular digestion and cellular defecation in a monogenean, Diclidophora merlangi. Parasitology 70, 331340.Google Scholar
Haiton, D. W., Dermott, E. & Morris, G. P. (1968). Electron microscope studies of Diclidophora merlangi (Monogenea: Polyopisthocotylea). I. Ultrastructure of the cecal epithelium. Journal of Parasitology 54, 909916.Google Scholar
Henderson, I. F., Henderson, W. D. & Kenneth, J. H. (1963). A Dictionary of Biological Terms. 8th edn. London: New York: Longman.Google Scholar
Inolis, W. G. (1967). The evolution, host relationships and classification of the Nematode superfamily Heterakoidea. Bulletin of the British Museum (Natural History), Zoology 15, 128.Google Scholar
James, B. L. & Bowers, E. A. (1967). Reproduction in the daughter sporocyst of Cercaria bucephalopsis haimeana (Lacaze-Duthiers, 1854) (Bucephalidae) and Cercaria dichotoma Lebour, 1911 (non Müller) (Gymnophallidae). Parasitology 57, 607625.Google Scholar
Jasicki, K. (1920). Grundlinien einer ‘Cercomer'-Theorie zur Morphologie der Trematoden und Cestoden. Festschrift Feier 60. Geburtstag Friedrich Zschokke (30), 22 pp.Google Scholar
Jarecka, L. (1975). Ontogeny and evolution of cestodss. Ada Parasitologica Polonica 23, 93114.Google Scholar
Kearn, G. C. (1963). The egg, oncomiracidium and larval development of Entobdella soleae, a monogenean skin parasito of the common sole. Parasitology 53, 435—447.Google Scholar
Kearn, G. C. (1964). The attachment of the monogenean Entobdella soleae to the skin of the common sole. Parasitology 54, 327335.Google Scholar
Kearn, G. C. (1968). The development of the adhesive Organs of some diplectanid, tetraonchid and dactylogyrid gill parasites (Monogenea). Parasitology 58, 149163.Google Scholar
KoLlhank, J. (1884). Das Ueberwintern von europäischen Frosch-und Tritonlarven und die Umwandlung des mexikanischen Axolotl. Verhandlungen der N alurforschenden Gesellschaft in Basel 7, 387398.Google Scholar
Lambert, A. (1979). Oncomiracidiums et phylogenesc des Monogenea (Platyhelminthes). Academie de Montpellier: These, pp. 1133.Google Scholar
Landau, I., Miltqen, F. & Chabaud, A. G. (1976). Les differents types de gametocytes chez les Hemosporidies de Mammiferes. Correlations avec la morphologie des schizontes tissulaires. Hypothöses sur l'evolution du groupe. Annales de Parasitologie humaine et comparce 51, 175187.Google Scholar
La Rue, G. R. (1957). The elassification of digenetic Trematoda: a review and a now System. Experimental Parasitology 6, 306344.Google Scholar
Li Ewellvn, J. (1957). The larvae of some monogenetic trematode parasites of Plymouth fislies. Journal of the Marine Biological Association of the United Kingdom 36, 243259.Google Scholar
Llkwellyn, J. (1963). Larvae and larval development of monogeneans. Advances in Parasitology 1, 287326.Google Scholar
Llewellyn, J. (1970). Taxonomy, genetics and evolution of parasites. Monogenea. Journal of Parasitology 56 (4), 493504.Google Scholar
Mackiewicz, J. S. (1972). Parasitological Review. Caryophyllidea (Cestoidea): A review. Experimental Purasitology 31, 417512.Google Scholar
MagÜEnti, A. R. (1971). Nemic relationships and the origins of plant parasitic nematodes. In Plant Parasitic Nemntodes, vol. i (ed. Zuckerman, B. M., Mai, W. F. and Rohde, R. A.), pp. 6581. New York: Academie Press. Google Scholar
Maooenti, A. R. (1978). Influence of morphology, biology, and ecology on evolution of parasitism in Xomatoda. In Biosystematics in Agriculture (ed. Romberger, J. A.), pp. 173191. Montclair, Usa: Allanheld, Osmum.Google Scholar
Malmbero, G. (1974). On the larval protonephridial System of Gyrocotyle and the evolution of Cercomeromorphae (Platyhelminthes). Zoologica Scripta 3, 6581.Google Scholar
Paramonov, A.A. (1968). Principles of ecological-morphological analysis of the organization of Tylenchida Thorne, 1949. Izvestiya Akademii Nauk Sssii (Seriya Biologicheskikh Nauk), no. 6, 793801. (In Russian.)Google Scholar
Paramonov, A. A. (1970). Plant-parasitic nematodes. Vol. Iii. Systematics of Nematodes, Superfamily Tylenchoideu (ed. K. I. Skrjabin). (Translated from Russian, 1972.) Springfield, Virginia, Usa: Us Department of Commerce, National Technical Information Service.Google Scholar
Pearson, J. C. (1972). A phylogeny of life-cycle patterns of the Digenea. Advances in Parasitology 10, 15389.Google Scholar
Poche, F. (1926). Das System der Platodaria. Archiv für Naturgeschichte, Abt, A. 91 (2-3), 1459.Google Scholar
Popiel, I. & James, B. L. (1978). Variation in the ultrastructure of the daughter sporocyst of Microphallus pygmaeus (Levinsen, 1881) (Digenea: Microphallidae) in chemically defined media. Parasitology 76, 349358.Google Scholar
Quentin, J. C. (1969). Cycle biologique de Protospirura muricola Gedoelst, (Nematoda, Spiruridae). Annales de Parasitologie humaine et comparee 44, 485504.Google Scholar
Quentin, J. C. (1970). Morphogenese larvaire du Spiruride Mastophorus muris (Gmelin, 1790). Annales de Parasitologie humaine et comparee 45, 839855.Google Scholar
Quentin, J. C. (1971). Sur Ies modalites d'evolution chez quelques lignees d'Helminthes de Rongeurs Muroidea. Cahiers Orstom, Serie Entomologie medicale et Parasitologie 9 (2), 103176.Google Scholar
Rohde, K. (1972). The Aspidogastrea, especially Multicotyle purvisi Dawes, 1941. Advances in Parasitology 10, 77151.Google Scholar
Rohde, K. (1973). Ultrastructure of the caecum of Polystomoides malayi and P. renschi Rohde (Monogenea: Polystomatidae). International Journal for Parasitology 3, 461466.Google Scholar
Siddiqi, M. R. (1979). The origin and phylogeny of the nematode order Tylenchida. Nematropica 9, 109.Google Scholar
Siddiqi, M. R. (1980). The origin and phylogeny of the nematode Orders Tylenchida Thorne, 1949 and Aphelenchida n.ord. Helminthological Abstracts (B, Plant Nematology) 49 (in the Press).Google Scholar
Sinitsin, D. T. (1911). [The parthenogenetic generation of the trematodes and their descendants in Black Sea molluscs.] Memoires de Vacademie Imperiale de St Petersbourg (Cl. Math.-Phys.), 8s. 30 (5), 1-127. [In Russian.]Google Scholar
Stunkard, H. W. (1975). Life-histories and systematics of parasitic flatworms. Systematic Zoology 24, 378385.Google Scholar
Tinsley, R. C. (1972). Ultrastructural studies on the form and function of the gastrodermis of Protopolystoma xenopi (Monogenoidea: Polyopisthocotylea). Biological Bulletin, Marine Biological Laboratory, Woods Hole, Mass. 144, 541555.Google Scholar
Von Baer, K. (1866). Ueber Prof. Nie. Wagener's Entdeckung von Larven die sich fortpflanzen, Herrn Ganin's verwandte und ergänzende Beobachtungen und über die Paedogenesis überhaubt. Bulletin de Vacademie Imperiale des Sciences de St Petersbourg 9, 64137.Google Scholar
Walcott, C. D. (1911). Middle cambrian annelids. Cambrian Geology and Palaeontology. Ii. Smithsonian Miscellaneous Collection 57, 109144.Google Scholar
Wardle, R. A., Mcleod, J. A. & Radinovsky, S. (1974). Advances in the Zoology of Tapcworms, 1950-1970. Iinneapolis: University of Minnesota Press. 274 pp. Google Scholar
Whittington, H.B. (1971). The Burgess Shalo: history of research and prosorvation of fossils. North American Palaeontological Convention, Chicago, 1969, Proceedings 1, 11701201.Google Scholar