Laboratory study of Fritillaria lifecycle reveals key morphogenetic events leading to genus-specific anatomy.

IF 2.6 2区 生物学 Q1 ZOOLOGY
Simon Henriet, Anne Aasjord, Daniel Chourrout
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引用次数: 1

Abstract

A fascinating variety of adult body plans can be found in the Tunicates, the closest existing relatives of vertebrates. A distinctive feature of the larvacean class of pelagic tunicates is the presence of a highly specialized surface epithelium that produces a cellulose test, the "larvacean house". While substantial differences exist between the anatomy of larvacean families, most of the ontogeny is derived from the observations of a single genus, Oikopleura. We present the first study of Fritillaria development based on the observation of individuals reproduced in the laboratory. Like the other small epipelagic species Oikopleura dioica, the larvae of Fritillaria borealis grow rapidly in the laboratory, and they acquire the adult form within a day. We could show that major morphological differences exhibited by Fritillaria and Oikopleura adults originate from a key developmental stage during larval organogenesis. Here, the surface epithelium progressively retracts from the posterior digestive organs of Fritillaria larvae, and it establishes house-producing territories around the pharynx. Our results show that the divergence between larvacean genera was associated with a profound rearrangement of the mechanisms controlling the differentiation of the larval ectoderm.

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贝母生命周期的实验室研究揭示了导致属特异性解剖的关键形态发生事件。
被囊动物是现存脊椎动物的近亲,在它们身上可以发现各种各样令人着迷的成年体型。幼虫类远洋被囊动物的一个显著特征是存在一个高度特化的表面上皮,它产生纤维素测试,即“幼虫屋”。虽然幼虫科之间的解剖结构存在着实质性的差异,但大多数个体发育都来自于对单一属(Oikopleura)的观察。我们提出了贝母发育的第一个研究基于在实验室繁殖的个体的观察。北贝母的幼虫在实验室中生长迅速,在一天内就能长成成虫,与其他小的上层物种Oikopleura dioica一样。结果表明,贝母和油胸柏成虫的主要形态差异源于幼体器官发生的关键发育阶段。在这里,贝母幼虫的表面上皮逐渐从后消化器官收缩,并在咽部周围建立建房区域。我们的研究结果表明,幼虫属之间的分化与控制幼虫外胚层分化的机制的深刻重排有关。
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来源期刊
CiteScore
4.90
自引率
0.00%
发文量
29
审稿时长
>12 weeks
期刊介绍: Frontiers in Zoology is an open access, peer-reviewed online journal publishing high quality research articles and reviews on all aspects of animal life. As a biological discipline, zoology has one of the longest histories. Today it occasionally appears as though, due to the rapid expansion of life sciences, zoology has been replaced by more or less independent sub-disciplines amongst which exchange is often sparse. However, the recent advance of molecular methodology into "classical" fields of biology, and the development of theories that can explain phenomena on different levels of organisation, has led to a re-integration of zoological disciplines promoting a broader than usual approach to zoological questions. Zoology has re-emerged as an integrative discipline encompassing the most diverse aspects of animal life, from the level of the gene to the level of the ecosystem. Frontiers in Zoology is the first open access journal focusing on zoology as a whole. It aims to represent and re-unite the various disciplines that look at animal life from different perspectives and at providing the basis for a comprehensive understanding of zoological phenomena on all levels of analysis. Frontiers in Zoology provides a unique opportunity to publish high quality research and reviews on zoological issues that will be internationally accessible to any reader at no cost. The journal was initiated and is supported by the Deutsche Zoologische Gesellschaft, one of the largest national zoological societies with more than a century-long tradition in promoting high-level zoological research.
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