Schneider Ralf F, Woltering Joost M, Adriaens Dominique, Roth Olivia
Department of Zoology, Marine Evolutionary Biology, University of Kiel, Kiel, Germany.
Department of Marine Evolutionary Ecology, Helmholtz Centre for Ocean Research, Kiel, Germany.
Dev Dyn. 2023 May;252(5):553-588. doi: 10.1002/dvdy.551. Epub 2022 Nov 21.
Syngnathids are a highly derived and diverse fish clade comprising the pipefishes, pipe-horses, and seahorses. They are characterized by a plethora of iconic traits that increasingly capture the attention of biologists, including geneticists, ecologists, and developmental biologists. The current understanding of the origins of their derived body plan is, however, hampered by incomplete and limited descriptions of the early syngnathid ontogeny.
We provide a comprehensive description of the development of Nerophis ophidion, Syngnathus typhle, and Hippocampus erectus from early cleavage stages to release from the male brooding organ and beyond, including juvenile development. We comparatively describe skeletogenesis with a particular focus on dermal bony plates, the snout-like jaw morphology, and appendages.
This most comprehensive and detailed account of syngnathid development to date suggests that convergent phenotypes (e.g., reduction and loss of the caudal fins), likely arose by distinct ontogenetic means in pipefishes and seahorses. Comparison of the ontogenetic trajectories of S. typhle and H. erectus provides indications that characteristic features of the seahorse body plan result from developmental truncation. Altogether, this work provides a valuable resource and framework for future research to understand the evolution of the outlandish syngnathid morphology from a developmental perspective.
海龙目鱼类是一个高度特化且多样的鱼类分支,包括管口鱼、管海马和海马。它们具有众多标志性特征,越来越吸引生物学家的关注,其中包括遗传学家、生态学家和发育生物学家。然而,目前对其特化身体结构起源的理解受到早期海龙目鱼类个体发育描述不完整和有限的阻碍。
我们全面描述了条纹海龙、尖海龙和克氏海马从早期卵裂阶段到从雄性育儿器官中产出以及之后的发育过程,包括幼体发育。我们比较描述了骨骼发生,特别关注真皮骨板、吻状颌形态和附肢。
迄今为止,这一关于海龙目鱼类发育的最全面、最详细的描述表明,趋同表型(如尾鳍的减少和消失)在管口鱼和海马中可能通过不同的个体发育方式产生。尖海龙和克氏海马个体发育轨迹的比较表明,海马身体结构的特征是发育截断的结果。总之,这项工作为未来从发育角度理解奇特的海龙目鱼类形态进化提供了宝贵的资源和框架。