Department of Zoology, University of Cambridge, Cambridge, United Kingdom; Marine Biological Laboratory, Woods Hole, MA, United States.
Marine Biological Laboratory, Woods Hole, MA, United States.
Curr Top Dev Biol. 2022;147:595-630. doi: 10.1016/bs.ctdb.2021.12.016. Epub 2022 Feb 28.
The vast majority of extant vertebrate diversity lies within the bony and cartilaginous fish lineages of jawed vertebrates. There is a long history of elegant experimental investigation of development in bony vertebrate model systems (e.g., mouse, chick, frog and zebrafish). However, studies on the development of cartilaginous fishes (sharks, skates and rays) have, until recently, been largely descriptive, owing to the challenges of embryonic manipulation and culture in this group. This, in turn, has hindered understanding of the evolution of developmental mechanisms within cartilaginous fishes and, more broadly, within jawed vertebrates. The little skate (Leucoraja erinacea) is an oviparous cartilaginous fish and has emerged as a powerful and experimentally tractable developmental model system. Here, we discuss the collection, husbandry and management of little skate brood stock and eggs, and we present an overview of key stages of skate embryonic development. We also discuss methods for the manipulation and culture of skate embryos and illustrate the range of tools and approaches available for studying this system. Finally, we summarize a selection of recent studies on skate development that highlight the utility of this system for inferring ancestral anatomical and developmental conditions for jawed vertebrates, as well as unique aspects of cartilaginous fish biology.
绝大多数现存的脊椎动物多样性存在于有颌脊椎动物的硬骨鱼和软骨鱼谱系中。在硬骨脊椎动物模型系统(例如,小鼠、鸡、青蛙和斑马鱼)中,对发育的优雅实验研究有着悠久的历史。然而,直到最近,软骨鱼类(鲨鱼、鳐鱼和𫚉鱼)的发育研究在很大程度上仍然是描述性的,这是由于在该类群中进行胚胎操作和培养的挑战。这反过来又阻碍了对软骨鱼类以及更广泛的有颌脊椎动物内部发育机制进化的理解。小鳐鱼(Leucoraja erinacea)是一种卵生软骨鱼类,已成为一种强大且易于实验操作的发育模型系统。在这里,我们讨论了小鳐鱼亲鱼和卵子的收集、饲养和管理,并介绍了鳐鱼胚胎发育的关键阶段概述。我们还讨论了鳐鱼胚胎的操作和培养方法,并说明了可用于研究该系统的一系列工具和方法。最后,我们总结了一些关于鳐鱼发育的最新研究,这些研究强调了该系统对于推断有颌脊椎动物的祖先解剖和发育条件以及软骨鱼类生物学的独特方面的有用性。