Some General Comments on the Evolution and Design of Animal Communication Systems
Animal communication systems have evolved so that individuals can make decisions based upon the behaviour, physiology or morphology of others. Receiving mechanisms probably evolve to increase the efficiency and reliability of information reception whereas signals probably evolve to increase the effi...
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Veröffentlicht in: | Philosophical transactions of the Royal Society of London. Series B. Biological sciences 1993-05, Vol.340 (1292), p.215-225 |
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Sprache: | eng |
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Zusammenfassung: | Animal communication systems have evolved so that individuals can make decisions based upon the behaviour, physiology or morphology
of others. Receiving mechanisms probably evolve to increase the efficiency and reliability of information reception whereas
signals probably evolve to increase the efficiency of communication and reliability of manipulation of the receiving individual
to the benefit of the emitter. The minimum requirement for clear reception suggests that any study of the evolution and design
of communication systems must consider the factors that affect the quality of the received and processed signal. Critical
information is needed about how the signal is generated and emitted, how it fares during transmission through air, water or
substrate, how it is received and processed by the receiver's sensory and cognitive systems, and the factors which affect
the fitness consequences of alternative ways of reacting to the information contained in the signal. These should allow predictions
about the kinds and forms of signals used by animals signalling under known conditions. Phylogenetic history, and the geological
time a clade spends in different signalling environments, will also affect signal evolution, and hence the success of predictions
about signal design. We need to use methods of many different biological fields to understand the design and evolution of
signals and signalling systems. |
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ISSN: | 0962-8436 1471-2970 |
DOI: | 10.1098/rstb.1993.0060 |