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鸟类适应辐射的巨大进化动态
Christopher R Cooney1, Jen A Bright1,2,3, Elliot J R Capp1
1Department of Animal and Plant Sciences, University of Sheffield, Sheffield, S10 2TN, UK.
Nature
|February 2, 2017
概括
生物多样性在鸟类进化早期扩大,其嘴巴形态在减缓之前迅速多样化. 主要的表型变化发生在罕见的,快速的进化爆发中,而不是逐渐的变化.
科学领域:
- 进化生物学
- 宏观进化
- 数量形态学
背景情况:
- 生物多样性源于发展和生态因素.
- 适应性辐射显示出快速的特征扩散,随后是进化减缓.
- 将微观进化过程扩展到表型多样性的宏观进化模式是具有挑战性的.
研究的目的:
- 在全球范围内研究鸟嘴形态的宏观进化模式.
- 了解微观进化过程如何在长期进化时间尺度上塑造表型多样性.
- 分析鸟类的表型多样化和进化速率之间的关系.
主要方法:
- 分析了2000多种鸟类的3D扫描比尔形态数据集.
- 检查比尔形态的进化速率的时间变化.
- 识别了形的主要不连续性和演变轴.
主要成果:
- 鸟嘴的多样性在进化历史的早期扩大,其次是形态空间包装.
- 现象型多样化率与时间变化脱而出; 率稳定但在各个血统之间有所不同.
- 主要的表型不连续性源于单个进化分支的快速增长.
- 在各种鸟类群体中观察到一致的小组内 bill-shape 进化轴.
结论:
- 鸟类适应辐射中的宏观进化过程支持适应区内的微观进化理论.
- 在不同的适应性峰值之间发生了加速进化,导致了主要的表型跳跃.
- 尽管偶尔出现快速多样化事件,但该研究显示了账单演变的一致模式.
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