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种间杂交作为理解声音分歧的工具:以鹌鹑( Coturnix 属)的鸣叫为例。

Interspecific hybridization as a tool to understand vocal divergence: the example of crowing in quail (Genus Coturnix).

机构信息

Max Planck Institute for Ornithology, Seewiesen, Germany.

出版信息

PLoS One. 2010 Feb 26;5(2):e9451. doi: 10.1371/journal.pone.0009451.

Abstract

Understanding the mechanisms that lead organisms to be separated into distinct species remains a challenge in evolutionary biology. Interspecific hybridization, which results from incomplete reproductive isolation, is a useful tool to investigate such mechanisms. In birds, interspecific hybridization is relatively frequent, despite the fact that closed species exhibit morphological and behavioural differences. Evolution of behaviour is difficult to investigate on a large timescale since it does not 'fossilize'. Here I propose that calls of hybrid non-songbirds that develop without the influence of learning may help in understanding the gradual process that leads to vocal divergence during speciation. I recorded crows produced by the European quail (Coturnix c. coturnix), the domestic Japanese quail (Coturnix c. japonica) and their hybrids (F1, F2 and backcrosses). Most crowing patterns were intermediate to those of the parental species; some were similar to one or the other parental species, or not present in either parental species. I also observed vocal changes in hybrid crows during the breeding season and from one year to the other. This vocal variability resembles those observed during the ontogeny of the crow in quails. It is likely that similar mechanisms involved in vocal changes during ontogeny might have driven vocal divergence in the species of Palearctic quails. I suggest that hybrid crows might have resembled those produced by intermediary forms of quails during speciation.

摘要

理解导致生物物种形成的机制仍然是进化生物学中的一个挑战。种间杂交是不完全生殖隔离的结果,是研究这些机制的有用工具。在鸟类中,尽管封闭的物种表现出形态和行为上的差异,但种间杂交相对频繁。由于行为不会“石化”,因此很难在大时间尺度上研究行为的进化。在这里,我提出,没有学习影响的杂种非鸣禽的叫声可能有助于理解在物种形成过程中导致发声分歧的渐进过程。我记录了欧洲鹌鹑(Coturnix c. coturnix)、日本鹌鹑(Coturnix c. japonica)及其杂种(F1、F2 和回交)产生的乌鸦叫声。大多数乌鸦叫声模式介于亲代物种之间;有些与一个或另一个亲代物种相似,或者在两个亲代物种中都不存在。我还观察到杂种乌鸦在繁殖季节和从一年到另一年的叫声变化。这种声音的可变性类似于在鹌鹑的个体发育过程中观察到的那些。在鹌鹑的 Palearctic 物种中,可能涉及到与个体发育过程中发声变化相关的类似机制,从而导致了发声的分歧。我建议杂种乌鸦可能类似于在物种形成过程中产生的中间形式的鹌鹑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31b6/2829089/18f8b36e3d5b/pone.0009451.g001.jpg

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