[en] The present paper studies the possibly different feeding strategies of Diplodus sargus to crustaceans, molluscs, worms, and small fish. The buccal jaws are built strongly and bound together by numerous ligaments. The dentition is heterodont: incisors in front and molars in the middle and hind parts. The principal originality of the musculature of this species is the forward insertion of the adductores mandibulae. These are very thick and insert on both the upper and lower jaws, so that contraction of any individual muscle acts on the buccal pieces as a whole, which thus constitute a remarkable crushing device. The pharyngeal jaws are frail as in primitive perciforms: the lower ones are well separated, being bound only anteriorly, while the upper ones consist of the second and third pharyngobranchials and a posterior toothed plate. When feeding on crabs, Diplodus sargus always sucks in the prey and seizes it with the buccal jaws. Mouth opening is accompanied by extensive protrusion of the mouth, with or without neurocranial elevation. Mouth sucking and seizing movements vary little. Once seized, the prey is usually moved to the molars and crushed. The crushing movements may be fast and ample or slow. In the latter case, deformation of the prey is observable. Crushing usually results in the crab being broken into pieces. The pharyngeal jaws grip one part of the prey and shift it to the oesophagus, then seize the second part. Diplodus sargus adapts its feeding behaviour to the type of prey. A snail, for instance, is crushed by the buccal or pharyngeal teeth, the pieces of shell are ejected, and the soft parts conveyed with difficulty to the oesophagus by the pharyngeal jaws. A fish on the other hand, is sucked tail first into the mouth cavity and quickly shifted to the digestive tract by the pharyngeal bones. Behaviour toward different prey differs by the presence or absence of parts of the sequence of feeding movements (for example crushing) or by the fact that certain movements or parts of the sequence are repeated. The variability of any movement in the sequence is the same whatever the sort of prey. Crushing occurs between the buccal incisors and molars and was observed twice between the pharyngeal teeth. Usually, it seems, the latter are involved in transport only. In transport, the left and right pharyngeal jaws may perform different functions: their movements, unlike the symmetrical movements of the buccal jaws, sometimes differ.
Disciplines :
Aquatic sciences & oceanology
Author, co-author :
Vandewalle, Pierre ; Université de Liège - ULiège > Département de Biologie, Ecologie et Evolution > Département de Biologie, Ecologie et Evolution
Saintin, P.; Universite de Liège, Institut de Zoologie, Laboratoire de Morphologic fonctionnelle, 22 quai Van Beneden, Liege, B-4020, Belgium
Chardon, Michel ; Université de Liège - ULiège > Relations académiques et scientifiques (Sciences)
Language :
English
Title :
Structures and movements of the buccal and pharyngeal jaws in relation to feeding in Diplodus sargus
Publication date :
1995
Journal title :
Journal of Fish Biology
ISSN :
0022-1112
eISSN :
1095-8649
Publisher :
Blackwell, Oxford, United Kingdom
Volume :
46
Issue :
4
Pages :
623-656
Peer reviewed :
Peer Reviewed verified by ORBi
Funders :
FRFC - Fonds de la Recherche Fondamentale Collective F.R.S.-FNRS - Fonds de la Recherche Scientifique
scite shows how a scientific paper has been cited by providing the context of the citation, a classification describing whether it supports, mentions, or contrasts the cited claim, and a label indicating in which section the citation was made.
Bibliography
Aerts P., De Vree F., Vandewalle P. (1986) Pharyngeal jaw movements in Oreochromis niloticus (Teleostei: Cichlidae): preliminary results of a cineradiographic analysis. Annales de la Société royale zoologique de Belgique 116:75-82.
Alexander (1967) The functions and mechanisms of the protrusible jaws of some Acanthopterygian fishes. Journal of Zoology 151:43-64.
Anker G.C. (1974) Morphology and kinematics of the head of the stickleback, Gasterosteus aculeatus. Transactions of the Zoological Society of London 32:317-416.
Anker G.C. (1978) The morphology of the head‐muscles of a generalized Haplochromis species: H. elegans Trevawas, 1933 (Pisces: Cichlidae). Netherlands Journal of Zoology 28:234-271.
Anker G.C. (1987) The morphology of joints and ligaments of a generalized Haplochromis species: H. elegans Trewawas, 1933 (Pisces: Cichlidae). Netherlands Journal of Zoology 37:394-427.
Barel C.D.N. (1983) Towards a constructional morphology in cichlid fishes (Teleostei, Perciform). Netherlands Journal of Zoology 37:357-424.
Benmouna H., Chardon M., Vandewalle P. (1984) Comparaison morphologique de la musculature céphalique de Serranus scriba (Linné, 1758) et de Serranus cabrilla (Linné, 1758) (Pisces: Serranidae). Cybium 8:15-33.
Claes G., De Vree F. (1989) Asymmetrical pharyngeal mastication in Oreochromis niloticus. Annales du Musée royal de l'Afrique Centrale, Sciences zoologiques 257:69-72.
Claes G., De Vree F. (1991) Kinematics of the pharyngeal jaws during feeding in Oreochromis niloticus (Pisces: Perciformes). Journal of Morphology 208:227-245.
Claes G., De Vree F. (1991) Cineradiographic analysis of the pharyngeal jaw movements during feeding in Haplochromis burtoni (Günther, 1893) (Pisces: Cichlidae). Belgian Journal of Zoology 121:227-234.
Claes G., De Vree F. (1992) Pharyngeal muscle activities during food processing in Oreochromis niloticus (Pisces: Cichlidae). Zoologische Jahrbücher Anatomie 122:173-178.
Claes G., De Vree F., Vandewalle P. (1991) Masticatory operations and the functions of pharyngeal jaw movements in cichlids. Annales du Musee royal de l'Afrique Centrale, Sciences Zoologiques 262:85-90.
Connes R., Grannie‐Prie M., Diaz J.P., Paris J. (1988) Ultrastructure des bourgeons gustatifs du téléostéen marin Dicentrarchus labrax L. Canadian Journal of Zoology 66:2133-2142.
Drucker E.G., Jensen J.S. (1991) Functional analysis of a specialized prey processing behavior: winnowing by surfperches (Teleostei: Embiotocidae). Journal of Morphology 210:267-287.
Eaton T.H. (1935) Evolution of the upper jaw mechanism in teleost fishes. Journal of Morphology 58:157-172.
Elshoud‐Oldenhave M.J.W. (1979) Prey capture in the pike‐perch, Stizostedon lucioperca (Teleostei, Percidae). Zoomorphologie 93:1-32.
Elshoud‐Oldenhave M.J.W., Osse J.W.M. (1976) Functional morphology of the feeding system in the ruff Gymnocephalus cernua (Linné, 1758) (Teleostei, Percidae). Journal of Morphology 150:399-422.
Gallis F. (1993) Interactions between the pharyngeal jaw apparatus, feeding behaviour, and ontogeny in the cichlid fish, Haplochromis piceatus: a study of morphological constraints in evolutionary ecology. Journal of Experimental Zoology 267:137-154.
Gobalet K.W. (1989) Morphology of the parrotfish pharyngeal jaw apparatus. American Zoologist 29:319-331.
Hoogerhoud R.J.C. (1987) The adverse effects of the shell ingestion for molluscivorous Cichlids: a constructional morphological approach. Netherlands Journal of Zoology 37:277-300.
Kaufman L., Liem K.F. (1982) Fishes of the suborder Labroidei (Pisces: Perciformes): Phylogeny, ecology, and evolutionary significance. Breviora, Museum of Comparative Zoology 472:1-19.
Lauder G.V. (1980) The suction feeding mechanism in sunfishes (Lepomis): an experimental analysis. Journal of Experimental Biology 88:49-72.
Lauder G.V. (1983) Functional design and evolution of the pharyngeal jaw apparatus in euteleostean fishes. Zoological Journal of the Linnean Society 77:1-38.
Lauder G.V. (1983) Functional and morphological bases of trophic specialization in sunfishes (Teleostei, Centrarchidae). Journal of Morphology 178:1-21.
Lauder G.V., Liem K.F. (1981) Prey capture by Luciocephaluspulcher: implications for models of jaw protrusion in teleost fishes. Environmental Biology of Fishes 6:257-268.
Lauder G.V., Liem K.F. (1983) The evolution and interrelationships of the Acinopterygian fishes. Bulletin of the Museum of Comparative Zoology 150:95-197.
Liem K.F. (1978) Modulatory multiplicity in the functional repertoire of the feeding mechanism in cichlid fishes. 1. Piscivores. Journal of Morphology 158:323-360.
Liem K.F. (1979) Modulatory multiplicity in the feeding mechanism in cichlid fishes, as exemplified by the invertebrate pickers of Lake Tanganyika. Journal of Zoology 189:93-125.
Liem K.F. (1980) Adaptive significance of intra‐ and interspecific differences in the feeding repertoires of cichlid fishes. American Zoologist 20:295-314.
Liem K.F. (1981) A phyletic study of the Lake Tanganyika cichlid genera Asprotilapia, Ectodus, Lestradea, Cunningtonia, Ophtalmochromis, Ophtalmotilapia. Bulletin of the Museum of Comparative Zoology 149:191-214.
Liem K.F. (1986) The pharyngeal jaw apparatus of the Embiotocidae (Teleostei): a functional and evolutionary perspective. Copeia 1986:311-323.
Liem K.F., Greenwood P.H. (1981) A functional approach to the phylogeny of the pharyngognath teleosts. American Zoologist 21:83-101.
Liem K.F., Osse J.W.M. (1975) Biology, versatility, evolution and food resource partitioning in African cichlid fishes. American Zoologist 15:427-454.
Liem K.F., Sanderson S.L. (1986) The pharyngeal jaw apparatus of labrid fishes: a functional morphological perspective. Journal of Morphology 187:143-158.
Motta P.J. (1984) The mechanism and functions of jaw protrusion in teleost fishes: a review. Copeia 1984:1-18.
Muller M., Osse J.W.M. (1984) Hydrodynamics of suction feeding in fish. Transactions of the Zoological Society of London 37:51-135.
Osse J.W.M. (1969) Functional morphology of the head of theperch (Percafluviatilis): an electromyographic study. Netherlands Journal of Zoology 19:289-392.
Osse J.W.M., Muller M. (1980) A model of suction feeding in teleostean fishes with some implications for ventilation. Environmental Physiology of Fishes , Ali, M. A.,. New York, Plenum; 335-352.
Pietsch T.W. (1978) The feeding mechanism of Stylophorus chordatus (Teleostei, Lampridiformes): functional and ecological implications. Copeia 1978:255-262.
Stiassny M.L.J., Jensen J.S. (1987) Labroid intrarelationships revised: morphological complexity, key innovations, and the study of comparative diversity. Bulletin of the Museum of Comparative Zoology 151:269-319.
Taylor W.R., van Dijk G.C. (1985) Revised procedure for staining and clearing small fishes and other vertebrates for bone and cartilage study. Cybium 9:107-119.
Vandewalle P. (1972) Ostéologie et myologie de Tilapia guineensis (Bleeker, 1862). Annales du Musée royal de l'Afrique Centrale, Sciences zoologiques 196:50.
Vandewalle P., Havard M., Claes G., De Vree F. (1992) Mouvements des mâchoires pharyngiennes pendant la prise de nourriture chez Serranus scriba (Linné, 1758) (Pisces: Serranidae). Canadian Journal of Zoology 70:145-160.
Vandewalle P., Huysseune A., Aerts P., Verraes W. (1994) The pharyngeal apparatus in teleost feeding. Biomechanics of Feeding in Vertebrates , Bels, V. L., Chardon, M., Vandewalle, P., eds, pp.,. Berlin, Springer; 59-92.
Vandewalle P., Stiller P., Chardon M. (1982) Particularités anatomiques et fonctionnelles de la région céphalique de Blennius pholis L. (Pisces: Serranidae). Cybium 6:73-94.
van Leeuwen J.L.M., Muller M. (1983) Optimum sucking techniques for predatory fish. Transactions of the Zoological Society of London 37:137-169.
Wainwright P.C. (1989) Functional morphology of the pharyngeal jaw apparatus in perciform fishes: an experimental analysis of the Haemulidae. Journal of Morphology 200:231-245.
Wainwright P.C. (1989) Prey processing in haemulid fishes: patterns of variation in pharyngeal jaw muscle activity. Journal of Experimental Biology 141:359-375.
Weastneat M.W., Wainwright P.C. (1989) Feeding mechanism of Epibulus insidiator (Labridae, Teleostei): evolution of a novel functional system. Journal of Morphology 202:129-150.
Winterbottom R. (1974) A descriptive synonymy of the head striated muscles of the Teleostei. Proceedings of the Academy of Natural History, Philadelphia 125:225-317.
Witte F., van Oijen M.J.P. (1990) Taxonomy, ecology and fishery of Lake Victoria haplochromine trophic groups. Zoologische Verhandelingen 262:1-47.
Yamaoka K. (1978) Pharyngeal jaw structure in labrid fish. Publications of the Seto Marine Biological Laboratory 24:409-426.
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