Pervasive mimicry in flight behavior among aposematic butterflies

模仿 语义学 缪勒模仿 生物 贝茨模仿 收敛演化 螺旋体 进化生物学 共同进化 生态学 捕食者 捕食 系统发育学 基因 工程类 航空航天工程 生物化学
作者
E Page,Lucie M. Queste,Neil Rosser,Patricio A. Salazar,Nicola J. Nadeau,James Mallet,Robert B. Srygley,W. Owen McMillan,Kanchon K. Dasmahapatra
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [Proceedings of the National Academy of Sciences]
卷期号:121 (11) 被引量:4
标识
DOI:10.1073/pnas.2300886121
摘要

Flight was a key innovation in the adaptive radiation of insects. However, it is a complex trait influenced by a large number of interacting biotic and abiotic factors, making it difficult to unravel the evolutionary drivers. We investigate flight patterns in neotropical heliconiine butterflies, well known for mimicry of their aposematic wing color patterns. We quantify the flight patterns (wing beat frequency and wing angles) of 351 individuals representing 29 heliconiine and 9 ithomiine species belonging to ten color pattern mimicry groupings. For wing beat frequency and up wing angles, we show that heliconiine species group by color pattern mimicry affiliation. Convergence of down wing angles to mimicry groupings is less pronounced, indicating that distinct components of flight are under different selection pressures and constraints. The flight characteristics of the Tiger mimicry group are particularly divergent due to convergence with distantly related ithomiine species. Predator-driven selection for mimicry also explained variation in flight among subspecies, indicating that this convergence can occur over relatively short evolutionary timescales. Our results suggest that the flight convergence is driven by aposematic signaling rather than shared habitat between comimics. We demonstrate that behavioral mimicry can occur between lineages that have separated over evolutionary timescales ranging from <0.5 to 70 My.

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