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深入观察青蛙和蟾蜍瞳孔多样性和进化。

A closer look at pupil diversity and evolution in frogs and toads.

机构信息

División Herpetología, Museo Argentino de Ciencias Naturales 'Bernardino Rivadavia' - CONICET, Av. Ángel Gallardo 470, Buenos Aires C1405DJR, Argentina.

Laboratorio de Genética Evolutiva 'Claudio J. Bidau', Instituto de Biología Subtropical (IBS, CONICET), Universidad Nacional de Misiones (UNaM), Posadas, Misiones, Argentina.

出版信息

Proc Biol Sci. 2021 Aug 25;288(1957):20211402. doi: 10.1098/rspb.2021.1402. Epub 2021 Aug 18.

Abstract

The eyes of frogs and toads (Anura) are among their most fascinating features. Although several pupil shapes have been described, the diversity, evolution, and functional role of the pupil in anurans have received little attention. Studying photographs of more than 3200 species, we surveyed pupil diversity, described their morphological variation, tested correlation with adult habits and diel activity, and discuss major evolutionary patterns considering iris anatomy and visual ecology. Our results indicate that the pupil in anurans is a highly plastic structure, with seven main pupil shapes that evolved at least 116 times during the history of the group. We found no significant correlation between pupil shape, adult habits, and diel activity, with the exception of the circular pupil and aquatic habits. The vertical pupil arose at least in the most-recent common ancestor of Anura + Caudata, and this morphology is present in most early-diverging anuran clades. Subsequently, a horizontal pupil, a very uncommon shape in vertebrates, evolved in most neobatrachian frogs. This shape evolved into most other known pupil shapes, but it persisted in a large number of species with diverse life histories, habits, and diel activity patterns, demonstrating a remarkable functional and ecological versatility.

摘要

青蛙和蟾蜍(有尾目)的眼睛是它们最迷人的特征之一。尽管已经描述了几种瞳孔形状,但有尾目的瞳孔多样性、进化和功能作用却很少受到关注。通过研究超过 3200 个物种的照片,我们调查了瞳孔多样性,描述了它们的形态变化,测试了与成年习性和昼夜活动的相关性,并考虑了虹膜解剖结构和视觉生态学来讨论主要的进化模式。我们的研究结果表明,青蛙和蟾蜍的瞳孔是一种高度可塑的结构,有七种主要的瞳孔形状,在该类群的历史中至少进化了 116 次。除了圆形瞳孔和水生习性外,我们没有发现瞳孔形状、成年习性和昼夜活动之间有显著的相关性。垂直瞳孔至少出现在有尾目+有尾目最接近的共同祖先中,这种形态存在于大多数早期分化的有尾目分支中。随后,一种非常不常见的脊椎动物的水平瞳孔在大多数新蛙类中进化而来。这种形状进化成了大多数其他已知的瞳孔形状,但它在具有多样化生活史、习性和昼夜活动模式的大量物种中保留下来,展示了惊人的功能和生态多样性。

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