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J Atema

Publications and source records attributed to J Atema.

26 records · Page 2Linked to original sources

Chemoreception in the sea: adaptations of chemoreceptors and behaviour to aquatic stimulus conditions.

The chemical stimulus environment is pulsed in nature. Mixtures can identify an odour source with great specificity, and (hence) most chemical signals are mixtures, even when initial research may seem to indicate that single compounds are sufficient to release complete behaviour. Information currents are often necessary to receive chemical stimuli. Receptor cell physiology reflects the microenvironment in which the receptor organ operates. Receptor cells interface with the stimulus environment in such a way as to enhance signal-to-noise ratios and to cover the naturally occurring dynamic stimulus range. Different chemoreceptor organs are designed to perform a number of different behavioural tasks. This is equally true for aquatic species that sample one (aqueous) medium as for terrestrial species that sample air and aqueous media. Hence, most of these principles are not unique to aquatic chemoreception.

Acetylcholine↗

Narrow-spectrum chemoreceptor cells in the antennules of the American lobster, Homarus americanus.

The present study shows that smell (antennular) receptor cells are as narrowly tuned to single compounds as taste (leg) receptor cells in the lobster. Antennular receptors responded best to hydroxy-L-proline (57% of the 30 cells sampled) and taurine (24%). In the presence of 14 other compounds in equimolar concentrations, the hydroxy-L-proline and taurine receptors showed a suppressed response to their best stimulus. Other cells had best responses to ammonium chloride, betaine, L-glutamate or L-proline. The results have implications for molecular receptor processes and for the neural basis of feeding behavior.

Action Potentials↗

Chemical communication in social behavior of a fish, the yellow bullhead (Ictalurus natalis).

Studies of behavior in yellow bullheads showed that they recognized individuals of their own species by means of pheromones. After training by reward and punishment, blinded bullheads were able to discriminate between the odors of two donor fish, but they lost this ability when deprived of their sense of smell. The main source of the intraspecific chemical stimuli involved in recognition is the mucus. A change in status after fighting was chemically communicated to other bullheads.

Animal Communication↗