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布氏非鲫的骨骼个体发育——一种用于硬骨鱼身体结构进化与发育的直接发育模型系统。

The skeletal ontogeny of Astatotilapia burtoni - a direct-developing model system for the evolution and development of the teleost body plan.

作者信息

Woltering Joost M, Holzem Michaela, Schneider Ralf F, Nanos Vasilios, Meyer Axel

机构信息

Chair in Zoology and Evolutionary Biology, Department of Biology, University of Konstanz, Universitätsstraße 10, 78457, Constance, Germany.

Current address: Department of Biological an Medical Sciences, Oxford Brookes University, Headington Campus, Oxford, OX3 0 BP, UK.

出版信息

BMC Dev Biol. 2018 Apr 3;18(1):8. doi: 10.1186/s12861-018-0166-4.

Abstract

BACKGROUND

The experimental approach to the evolution and development of the vertebrate skeleton has to a large extent relied on "direct-developing" amniote model organisms, such as the mouse and the chicken. These organisms can however only be partially informative where it concerns secondarily lost features or anatomical novelties not present in their lineages. The widely used anamniotes Xenopus and zebrafish are "indirect-developing" organisms that proceed through an extended time as free-living larvae, before adopting many aspects of their adult morphology, complicating experiments at these stages, and increasing the risk for lethal pleiotropic effects using genetic strategies.

RESULTS

Here, we provide a detailed description of the development of the osteology of the African mouthbrooding cichlid Astatotilapia burtoni, primarily focusing on the trunk (spinal column, ribs and epicentrals) and the appendicular skeleton (pectoral, pelvic, dorsal, anal, caudal fins and scales), and to a lesser extent on the cranium. We show that this species has an extremely "direct" mode of development, attains an adult body plan within 2 weeks after fertilization while living off its yolk supply only, and does not pass through a prolonged larval period.

CONCLUSIONS

As husbandry of this species is easy, generation time is short, and the species is amenable to genetic targeting strategies through microinjection, we suggest that the use of this direct-developing cichlid will provide a valuable model system for the study of the vertebrate body plan, particularly where it concerns the evolution and development of fish or teleost specific traits. Based on our results we comment on the development of the homocercal caudal fin, on shared ontogenetic patterns between pectoral and pelvic girdles, and on the evolution of fin spines as novelty in acanthomorph fishes. We discuss the differences between "direct" and "indirect" developing actinopterygians using a comparison between zebrafish and A. burtoni development.

摘要

背景

脊椎动物骨骼进化与发育的实验方法在很大程度上依赖于“直接发育”的羊膜动物模型生物,如小鼠和鸡。然而,就其次生性丢失的特征或其谱系中不存在的解剖学新奇特征而言,这些生物只能提供部分信息。广泛使用的非羊膜动物非洲爪蟾和斑马鱼是“间接发育”的生物,它们在成年形态的许多方面形成之前,会以自由生活的幼虫形式度过较长时间,这使得这些阶段的实验变得复杂,并增加了使用遗传策略产生致死性多效性效应的风险。

结果

在此,我们详细描述了非洲口孵丽鱼伯氏妊丽鱼骨骼学的发育情况,主要关注躯干(脊柱、肋骨和椎上骨)和附肢骨骼(胸鳍、腹鳍、背鳍、臀鳍、尾鳍和鳞片),对头骨的关注较少。我们表明,该物种具有极其“直接”的发育模式,在受精后2周内仅依靠卵黄供应发育成成年体型,且不经过漫长的幼虫期。

结论

由于该物种易于饲养,世代时间短,并且可通过显微注射进行基因靶向策略操作,我们建议使用这种直接发育的丽鱼作为研究脊椎动物体型的有价值模型系统,特别是在研究鱼类或硬骨鱼特定性状的进化与发育方面。基于我们的结果,我们对正尾鳍的发育、胸鳍和腹鳍带之间共有的个体发育模式以及棘鳍鱼类中鳍棘作为新奇特征的进化进行了评论。我们通过比较斑马鱼和伯氏妊丽鱼的发育情况,讨论了“直接”和“间接”发育的辐鳍鱼类之间的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1933/5883283/1eb785a17d34/12861_2018_166_Fig1_HTML.jpg

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