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Acoustic evolution in crickets: need for phylogenetic study and a reappraisal of signal effectiveness

机译:的声音演变:需要进行系统发育研究并重新评估信号有效性

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Cricket stridulums and calls are highly stereotyped, except those with greatly modified tegmina and/or vena-tion, or ''unusual'' frequency, duration and/or intensity. This acoustic diversity remained unsuspected until recently, and current models of acoustic evolution in crickets erroneously consider this clade homogeneous for acoustic features. The few phylogenetic studies analyzing acoustic evolution in crickets demonstrated that acoustic behavior could be particularly labile in some clades. The ensuing pattern for cricket evolution is consequently extremely complex. We argue that: (1) phylogeny should always be considered when analyzing acoustic evolution, whatever characters are considered (signals, stridulums or behaviors). Consequently, future studies should be devoted to entire clades, and not consider isolated taxa; character and character state definitions should allow significant reconstructions of character evolutionary transformations; and homologies should be carefully defined for all characters, including behavior. (2) The factors responsible for song effectiveness should be reconsidered and hypotheses on their potential influence on signal evolution tested jointly by phylogenies (for example, to assess correlated transformations of acoustic and ecological features), and population studies (for example, to correlate call range and population structure, or test the predation risk associated with a signal structure). Better understanding these points should help clarifying acoustic evolution in crickets.
机译:板球菌的脚跟和呼叫高度定型,除了那些具有极大改变的手感和/或方向,或“异常”的频率,持续时间和/或强度的人。直到最近,这种声音的多样性仍然没有被怀疑,并且,的声音演变的当前模型错误地认为该进化枝对于声音特征是同质的。少数分析analyzing声音演化的系统发育研究表明,声音行为在某些进化枝中可能特别不稳定。板球进化的随之而来的模式因此极其复杂。我们认为:(1)在分析声学演变时,无论考虑什么特征(信号,鞭毛或行为),都应始终考虑系统发育。因此,未来的研究应专注于整个进化枝,而不应考虑孤立的分类群。角色和角色状态定义应允许对角色进化转换进行重大重构;对于所有字符,包括行为,都应仔细定义其同源性。 (2)应重新考虑影响歌唱效果的因素,并通过系统发育(例如,评估声学和生态特征的相关转换)和人口研究(例如,将声标相关)对它们对信号演变的潜在影响进行假设。范围和种群结构,或测试与信号结构相关的捕食风险)。更好地理解这些要点应有助于弄清的声音演变。

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