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进化创新加速了河豚鱼及其近亲的形态多样化。

Evolutionary innovation accelerates morphological diversification in pufferfishes and their relatives.

机构信息

Department of Biology and Sam Noble Oklahoma Museum of Natural History, University of Oklahoma, Norman, OK, United States.

Biosciences Department, Rice University, Houston, TX, United States.

出版信息

Evolution. 2024 Oct 28;78(11):1869-1882. doi: 10.1093/evolut/qpae127.

Abstract

Evolutionary innovations have played an important role in shaping the diversity of life on Earth. However, how these innovations arise and their downstream effects on patterns of morphological diversification remain poorly understood. Here, we examine the impact of evolutionary innovation on trait diversification in tetraodontiform fishes (pufferfishes, boxfishes, ocean sunfishes, and allies). This order provides an ideal model system for studying morphological diversification owing to their range of habitats and divergent morphologies, including the fusion of the teeth into a beak in several families. Using three-dimensional geometric morphometric data for 176 extant and fossil species, we examine the effect of skull integration and novel habitat association on the evolution of innovation. Strong integration may be a requirement for rapid trait evolution and facilitating the evolution of innovative structures, like the tetraodontiform beak. Our results show that the beak arose in the presence of highly conserved patterns of integration across the skull, suggesting that integration did not limit the range of available phenotypes to tetraodontiforms. Furthermore, we find that beaks have allowed tetraodontiforms to diversify into novel ecological niches, irrespective of habitat. Our results suggest that general rules pertaining to evolutionary innovation may be more nuanced than previously thought.

摘要

进化创新在塑造地球上生命的多样性方面发挥了重要作用。然而,这些创新是如何产生的,以及它们对形态多样化模式的下游影响仍知之甚少。在这里,我们研究了进化创新对四齿鲀目鱼类(河豚、箱鲀、翻车鱼和它们的近亲)特征多样化的影响。由于其广泛的栖息地和多样化的形态,包括某些科的牙齿融合成喙,这个目提供了一个研究形态多样化的理想模型系统。我们使用了 176 个现生物种和化石的三维几何形态测量数据,研究了头骨整合和新的栖息地关联对创新进化的影响。强烈的整合可能是快速特征进化和促进创新结构进化的要求,例如四齿鲀目喙。我们的结果表明,喙的出现与头骨上高度保守的整合模式并存,这表明整合并没有将可用表型的范围限制在四齿鲀目鱼类中。此外,我们发现喙使四齿鲀目鱼类能够多样化到新的生态位,而与栖息地无关。我们的结果表明,与进化创新相关的一般规则可能比以前想象的更加复杂。

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