There are two basic designs of the aquatic feeding mechanism in lower vertebrates: unidirectional and bidirectional flow systems. Larval salamanders and most fishes posses a unidirectional flow design in which water drawn into the mouth with the prey passes over the gills and exits posteriorly. Metamorphosed salamanders and all other aquatic vertebrates possess a bidirectional system in which water flows into and out of the mouth during a single feeding cycle. We investigated the functional consequences of these two feeding designs in larval and metamorphosed tiger salamanders (Ambystoma tigrinum) feeding in the water. Buccal cavity pressures were measured during feeding and 11 variables measured from the pressure traces. Significant differences were found between the larval and metamorphosed salamanders in eight variables. Larval salamanders generate significantly greater negative pressures than do metamorphosed individuals and a principal components analysis of the 11 pressure variables completely separates larval from metamorphosed salamanders. Larval individuals are significantly better at capturing elusive prey than are metamorphosed salamanders, apparently because of changes in the structure of the feeding mechanism and the concomitant functional modifications.
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LAUDER et al. (1986) studied this question.
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