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- W69707520 abstract "In the katydid genus Neoconocephalus, males typically produce continuous calls with an extremely fast pulse rate of about 200/s. Divergence from this ancestral pattern includes alternation of pulse periods resulting in a double-pulse pattern, and the grouping of pulses into chirps. Double-pulse patterns evolved five times independently in the genus. Analysis of the female preferences and call recognition mechanisms revealed that in three species with double-pulse pattern, females have independently evolved new mechanisms for recognizing the derived call pattern. In the remaining two species with double-pulse pattern, females retain the ancestral recognition mechanism and exhibit no preference for the derived temporal pattern. These results suggest that males are leading the evolutionary divergence of call patterns in this genus. We propose a hypothetical scenario in which genetic bottlenecks and founder effects arising from the climatic history of North America contributed to the rapid diversification of calls in this genus." @default.
- W69707520 created "2016-06-24" @default.
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- W69707520 date "2013-11-06" @default.
- W69707520 modified "2023-10-06" @default.
- W69707520 title "Evolution of Call Patterns and Pattern Recognition Mechanisms in Neoconocephalus Katydids" @default.
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- W69707520 doi "https://doi.org/10.1007/978-3-642-40462-7_10" @default.
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