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骨干的异速生长导致硬骨鱼类的臀鳍向头部转移。

Allometric growth of the trunk leads to the rostral shift of the pelvic fin in teleost fishes.

机构信息

Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, B-17, 4259 Nagatsuta-cho, Midori-ku, Yokohama 226-8501, Japan.

出版信息

Dev Biol. 2010 Nov 1;347(1):236-45. doi: 10.1016/j.ydbio.2010.07.034. Epub 2010 Aug 6.

Abstract

The pelvic fin position among teleost fishes has shifted rostrally during evolution, resulting in diversification of both behavior and habitat. We explored the developmental basis for the rostral shift in pelvic fin position in teleost fishes using zebrafish (abdominal pelvic fins) and Nile tilapia (thoracic pelvic fins). Cell fate mapping experiments revealed that changes in the distribution of lateral plate mesodermal cells accompany the trunk-tail protrusion. Presumptive pelvic fin cells are originally located at the body wall adjacent to the anterior limit of hoxc10a expression in the spinal cord, and their position shifts rostrally as the trunk grows. We then showed that the differences in pelvic fin position between zebrafish and Nile tilapia were not due to changes in expression or function of gdf11. We also found that hox-independent motoneurons located above the pelvic fins innervate into the pelvic musculature. Our results suggest that there is a common mechanism among teleosts and tetrapods that controls paired appendage positioning via gdf11, but in teleost fishes the position of prospective pelvic fin cells on the yolk surface shifts as the trunk grows. In addition, teleost motoneurons, which lack lateral motor columns, innervate the pelvic fins in a manner independent of the rostral-caudal patterns of hox expression in the spinal cord.

摘要

在进化过程中,硬骨鱼类的臀鳍位置向头部迁移,导致行为和栖息地的多样化。我们使用斑马鱼(腹鳍)和尼罗罗非鱼(胸鳍)探索了硬骨鱼类臀鳍位置向头部迁移的发育基础。细胞命运映射实验表明,侧板中胚层细胞分布的变化伴随着躯干-尾部的突出。假定的臀鳍细胞最初位于紧邻脊髓中 hoxc10a 表达前缘的体壁上,随着躯干的生长,其位置向头部迁移。然后,我们表明,斑马鱼和尼罗罗非鱼之间臀鳍位置的差异不是由于 gdf11 的表达或功能的变化。我们还发现,位于臀鳍上方的 hox 非依赖性运动神经元支配臀肌。我们的研究结果表明,硬骨鱼类和四足动物之间存在一种共同的机制,通过 gdf11 控制成对附肢的定位,但在硬骨鱼类中,卵黄表面的预期臀鳍细胞的位置随着躯干的生长而移动。此外,缺乏侧运动柱的硬骨鱼类运动神经元以一种不依赖于脊髓中 hox 表达的头-尾模式支配臀鳍。

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