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具有四足动物样特征的化石鱼类中独特的臀鳍,以及附肢模式的演化。

Unique pelvic fin in a tetrapod-like fossil fish, and the evolution of limb patterning.

机构信息

School of Earth Sciences, University of Bristol, BS8 1TQ Bristol, United Kingdom;

Cincinnati Museum Center, Cincinnati, OH 45203.

出版信息

Proc Natl Acad Sci U S A. 2018 Nov 20;115(47):12005-12010. doi: 10.1073/pnas.1810845115. Epub 2018 Nov 5.

Abstract

All living tetrapods have a one-to-two branching pattern in the embryonic proximal limb skeleton, with a single element at the base of the limb (the humerus or femur) that articulates distally with two parallel radials (the ulna and radius or the tibia and fibula). This pattern is also seen in the fossilized remains of stem-tetrapods, including the fishlike members of the group, in which despite the absence of digits, the proximal parts of the fin skeleton clearly resemble those of later tetrapods. However, little is known about the developmental mechanisms that establish and canalize this highly conserved pattern. We describe the well-preserved pelvic fin skeleton of , a Carboniferous sarcopterygian (lobe-finned) fish, and member of the tetrapod stem group. In this specimen, three parallel radials, each robust with a distinct morphology, articulate with the femur. We review this unexpected morphology in a phylogenetic and developmental context. It implies that the developmental patterning mechanisms seen in living tetrapods, now highly constrained, evolved from mechanisms flexible enough to accommodate variation in the zeugopod (even between pectoral and pelvic fins), while also allowing each element to have a unique morphology.

摘要

所有活体四足动物的胚胎近侧肢体骨骼都呈现一到两个分支模式,肢体基部(肱骨或股骨)有一个单一的元素,与两个平行的桡骨(尺骨和桡骨或胫骨和腓骨)远端关节。这种模式也见于化石的原四足动物遗骸中,包括该类群中的鱼类成员,尽管没有手指,但鳍骨骼的近端部分显然与后来的四足动物相似。然而,关于建立和引导这种高度保守模式的发育机制知之甚少。我们描述了保存完好的石炭纪肉鳍鱼(肉鳍鱼),即四足动物的干群成员的骨盆鳍骨骼。在这个标本中,三个平行的桡骨,每个都很粗壮,形态独特,与股骨关节。我们在系统发育和发育背景下回顾了这种出乎意料的形态。这意味着在活体四足动物中看到的发育模式机制,现在受到高度限制,是从足够灵活的机制进化而来的,这些机制可以适应腕骨(甚至在胸鳍和腹鳍之间)的变化,同时也允许每个元素具有独特的形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd6e/6255188/bf6e7e56d3c9/pnas.1810845115fig02.jpg

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