Behavioral genetics of thermosensation and hygrosensation in Drosophila.

O. Sayeed, Seymour Benzer

Proceedings of the National Academy of Sciences · 1996 · 297 citations · 21 references

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Concepts

TL;DR

Temperature and humidity are critical variables affecting physiology, behavior, and evolution, yet the genetic and neuronal underpinnings of thermosensation and hygrosensation remain poorly understood. We initiated a behavioral‑genetic investigation of thermosensation and hygrosensation in Drosophila. Behavioral tests were developed for rapid screening of mutants defective in thermosensation and hygrosensation. Normal flies exhibit strong temperature and humidity responses; two thermosensation‑defective mutants were identified, one also hygrodefective, indicating distinct mechanisms; ablation experiments localized thermoreceptors to the third antennal segment and hygroreceptors to the distal antennal arista.

Abstract

Whereas temperature and humidity are critical variables affecting physiology, behavior, and evolution, the genetic and neuronal underpinnings of thermosensation and hygrosensation remain poorly understood. We have initiated a behavioral-genetic investigation of these sensory systems in Drosophila. Behavioral tests are described for the rapid screening of mutants defective in thermosensation and hygrosensation. We demonstrate the strong responses of normal flies to temperature and humidity. Two mutants were found with defects in thermosensation, only one of which is also defective in hygrosensation, indicating that they involve different sensory mechanisms. Ablation experiments further separate these sensory systems by showing that thermoreceptors are housed in the third antennal segment, whereas hygroreceptors are located more distally in the antennal arista.

References

21