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鸟类、行为与解剖学进化

Birds, behavior, and anatomical evolution.

作者信息

Wyles J S, Kunkel J G, Wilson A C

出版信息

Proc Natl Acad Sci U S A. 1983 Jul;80(14):4394-7. doi: 10.1073/pnas.80.14.4394.

Abstract

Study of more than 200 species suggests that the anatomical differences among birds are as big as those among other vertebrates of comparable taxonomic rank. The result is notable because, for more than 100 years, many biologists have believed that birds are more uniform anatomically than other classes of vertebrates. Furthermore, assessment of biochemical and geological evidence suggests that the time scale for bird evolution could be quite short. Hence, birds may share with placental mammals the distinction of having had a high rate of anatomical evolution, compared to that in lower vertebrates. The rate appears to have been very high in songbirds and higher primates and extremely high in the genus Homo. In an attempt to explain such contrasts in rates of anatomical evolution, we advance the hypothesis that in higher vertebrates, behavior, rather than environmental change, is the major driving force for evolution at the organismal level. This hypothesis predicts accelerated anatomical evolution in species composed of numerous mobile individuals with the dual capacity for behavioral innovation and social propagation of new habits. Consistent with this hypothesis, we demonstrate a correlation between relative brain size and rate of anatomical evolution in land vertebrates.

摘要

对200多种鸟类的研究表明,鸟类之间的解剖学差异与分类地位相当的其他脊椎动物一样大。这一结果值得注意,因为在100多年的时间里,许多生物学家一直认为鸟类在解剖学上比其他脊椎动物类群更为一致。此外,对生化和地质证据的评估表明,鸟类进化的时间尺度可能相当短。因此,与低等脊椎动物相比,鸟类可能与胎盘哺乳动物一样,具有较高的解剖学进化速率。鸣禽和高等灵长类动物的进化速率似乎非常高,而人类属的进化速率极高。为了解释解剖学进化速率的这种差异,我们提出一个假说:在高等脊椎动物中,行为而非环境变化是生物体水平进化的主要驱动力。这一假说预测,在由众多具有行为创新和新习惯社会传播双重能力的活动个体组成的物种中,解剖学进化会加速。与这一假说一致,我们证明了陆地脊椎动物的相对脑容量与解剖学进化速率之间存在相关性。

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Birds, behavior, and anatomical evolution.鸟类、行为与解剖学进化
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