Affiliation:
1. Department of Zoology, University of Cambridge, Downing Street,Cambridge CB2 3EJ, UK
Abstract
SUMMARY
Male houseflies use a sex-specific frontal eye region, the lovespot, to detect and pursue mates. We recorded the electrical responses of photoreceptors to optical stimuli that simulate the signals received by a male or female photoreceptor as a conspecific passes through its field of view. We analysed the ability of male and female frontal photoreceptors to code conspecifics over the range of speeds and distances encountered during pursuit, and reconstructed the neural images of these targets in photoreceptor arrays. A male's lovespot photoreceptor detects a conspecific at twice the distance of a female photoreceptor, largely through better optics. This detection distance greatly exceeds those reported in previous behavioural studies. Lovespot photoreceptors respond more strongly than female photoreceptors to targets tracked during pursuit, with amplitudes reaching 25 mV. The male photoreceptor also has a faster response, exhibits a unique preference for stimuli of 20-30 ms duration that selects for conspecifics and deblurs moving images with response transients. White-noise analysis substantially underestimates these improvements. We conclude that in the lovespot, both optics and phototransduction are specialised to enhance and deblur the neural images of moving targets, and propose that analogous mechanisms may sharpen the neural image still further as it is transferred to visual interneurones.
Publisher
The Company of Biologists
Subject
Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics
Reference48 articles.
1. Atick, J. J. and Redlich, A. N. (1992). What does the retina know about natural scenes? Neural Comp.4,196-210.
2. Attwell, D., Wilson, M. and Wu, S. M. (1984). A quantitative analysis of interactions between photoreceptors in the salamander (Ambystoma) retina. J. Physiol.352,703-737.
3. Braitenberg, V. (1972). Periodic structures and structural gradients in the visual ganglia of the fly. In Information Processing in the Visual Systems of Arthropods (ed. R. Wehner), pp. 3-15. Berlin: Springer.
4. Burton, B. G., Tatler, B. W. and Laughlin, S. B.(2001). Variations in photoreceptor response dynamics across the fly retina. J. Neurophysiol.86,950-960.
5. Camhi, J. M. (1984). Neuroethology:Nerve Cells and the Natural Behaviour of Animals. Sunderland,Sinauer.
Cited by
51 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献