Favaro Livio, Gamba Marco, Gili Claudia, Pessani Daniela
Department of Life Sciences and Systems Biology, University of Turin, Turin, Italy.
Acquario di Genova, Costa Edutainment SpA, Genoa, Italy.
PLoS One. 2017 Feb 15;12(2):e0170001. doi: 10.1371/journal.pone.0170001. eCollection 2017.
Animal vocalisations play a role in individual recognition and mate choice. In nesting penguins, acoustic variation in vocalisations originates from distinctiveness in the morphology of the vocal apparatus. Using the source-filter theory approach, we investigated vocal individuality cues and correlates of body size and mass in the ecstatic display songs the Humboldt and Magellanic penguins. We demonstrate that both fundamental frequency (f0) and formants (F1-F4) are essential vocal features to discriminate among individuals. However, we show that only duration and f0 are honest indicators of the body size and mass, respectively. We did not find any effect of body dimension on formants, formant dispersion nor estimated vocal tract length of the emitters. Overall, our findings provide the first evidence that the resonant frequencies of the vocal tract do not correlate with body size in penguins. Our results add important information to a growing body of literature on the role of the different vocal parameters in conveying biologically meaningful information in bird vocalisations.
动物发声在个体识别和配偶选择中发挥着作用。在筑巢的企鹅中,发声的声学变化源于发声器官形态的独特性。我们采用源 - 滤波器理论方法,研究了洪堡企鹅和麦哲伦企鹅狂喜展示歌声中的发声个体线索以及身体大小和体重的相关因素。我们证明,基频(f0)和共振峰(F1 - F4)都是区分个体的重要发声特征。然而,我们发现只有持续时间和f0分别是身体大小和体重的可靠指标。我们没有发现身体尺寸对发声者的共振峰、共振峰离散度或估计的声道长度有任何影响。总体而言,我们的研究结果首次证明,企鹅声道的共振频率与身体大小无关。我们的结果为越来越多关于不同发声参数在鸟类发声中传递生物学意义信息的作用的文献增添了重要信息。