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栖息地类型和密度影响缎蓝亭鸟的发声信号设计。

Habitat type and density influence vocal signal design in satin bowerbirds.

作者信息

Nicholls James A, Goldizen Anne W

机构信息

School of Integrative Biology, University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

J Anim Ecol. 2006 Mar;75(2):549-58. doi: 10.1111/j.1365-2656.2006.01075.x.

DOI:10.1111/j.1365-2656.2006.01075.x
PMID:16638007
Abstract
  1. This study provided a thorough test of the acoustic adaptation hypothesis using a within-species comparison of call structure involving a wide range of habitat types, an objective measure of habitat density and direct measures of habitat-related attenuation. 2. The structure of the bower advertisement call of the satin bowerbird was measured in 16 populations from throughout the species' range and related to the habitat type and density at each site. Transmission of white noise, pure tones and different bowerbird dialects was measured in five of six habitat types inhabited by satin bowerbirds. 3. Bowerbird advertisement call structure converged in similar habitats but diverged among different habitats; this pattern was apparent at both continent-wide and local geographical scales. Bowerbirds' call structures differed with changes in habitat density, consistent with the acoustic adaptation hypothesis. Lower frequencies and less frequency modulation were utilized in denser habitats such as rainforest and higher frequencies and more frequency modulation were used in the more open eucalypt-dominated habitats. 4. The white noise and pure tone transmission measurements indicated that different habitats varied in their sound transmission properties in a manner consistent with the observed variation in satin bowerbird vocalizations. 5. There was no effect of geographical proximity of recording locations, nor was there the predicted inverse relationship between frequency and body size. 6. These findings indicate that the transmission qualities of different habitats have had a major influence on variation in vocal phenotypes in this species. In addition, previously published molecular data for this species suggest that there is no effect of genetic relatedness on call similarity among satin bowerbird populations.
摘要
  1. 本研究通过对涉及多种栖息地类型的鸣叫结构进行种内比较、对栖息地密度进行客观测量以及对与栖息地相关的衰减进行直接测量,对声学适应假说进行了全面测试。2. 在整个物种分布范围内的16个种群中测量了缎蓝亭鸟求偶炫耀鸣叫的结构,并将其与每个地点的栖息地类型和密度相关联。在缎蓝亭鸟栖息的六种栖息地类型中的五种中,测量了白噪声、纯音和不同的亭鸟方言的传播情况。3. 亭鸟求偶炫耀鸣叫结构在相似的栖息地中趋同,但在不同的栖息地之间存在差异;这种模式在大陆范围和局部地理尺度上都很明显。亭鸟的鸣叫结构随栖息地密度的变化而不同,这与声学适应假说一致。在雨林等较密集的栖息地中使用较低的频率和较少的频率调制,而在以桉树为主的更开阔的栖息地中使用较高的频率和更多的频率调制。4. 白噪声和纯音传播测量表明,不同的栖息地在声音传播特性方面存在差异,其方式与观察到的缎蓝亭鸟发声变化一致。5. 记录地点的地理距离没有影响,频率与体型之间也没有预测的反比关系。6. 这些发现表明,不同栖息地的传播特性对该物种发声表型的变异产生了重大影响。此外,该物种先前发表的分子数据表明,遗传相关性对缎蓝亭鸟种群之间的鸣叫相似性没有影响。

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