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头索动物发育的更新分期系统:一表适用于所有情况。

An Updated Staging System for Cephalochordate Development: One Table Suits Them All.

作者信息

Carvalho João E, Lahaye François, Yong Luok Wen, Croce Jenifer C, Escrivá Hector, Yu Jr-Kai, Schubert Michael

机构信息

Laboratoire de Biologie du Développement de Villefranche-sur-Mer, Institut de la Mer de Villefranche, Sorbonne Université, CNRS, Villefranche-sur-Mer, France.

Institute of Cellular and Organismic Biology, Academia Sinica, Taipei, Taiwan.

出版信息

Front Cell Dev Biol. 2021 May 20;9:668006. doi: 10.3389/fcell.2021.668006. eCollection 2021.

Abstract

Chordates are divided into three subphyla: Vertebrata, Tunicata, and Cephalochordata. Phylogenetically, the Cephalochordata, more commonly known as lancelets or amphioxus, constitute the sister group of Vertebrata and Tunicata. Lancelets are small, benthic, marine filter feeders, and their roughly three dozen described species are divided into three genera: , , and . Due to their phylogenetic position and their stereotypical chordate morphology and genome architecture, lancelets are key models for understanding the evolutionary history of chordates. Lancelets have thus been studied by generations of scientists, with the first descriptions of adult anatomy and developmental morphology dating back to the 19th century. Today, several different lancelet species are used as laboratory models, predominantly for developmental, molecular and genomic studies. Surprisingly, however, a universal staging system and an unambiguous nomenclature for developing lancelets have not yet been adopted by the scientific community. In this work, we characterized the development of the European lancelet () using confocal microscopy and compiled a streamlined developmental staging system, from fertilization through larval life, including an unambiguous stage nomenclature. By tracing growth curves of the European lancelet reared at different temperatures, we were able to show that our staging system permitted an easy conversion of any developmental time into a specific stage name. Furthermore, comparisons of embryos and larvae from the European lancelet (), the Florida lancelet (), two Asian lancelets ( and ), and the Bahamas lancelet () demonstrated that our staging system could readily be applied to other lancelet species. Although the detailed staging description was carried out on developing , the comparisons with other lancelet species thus strongly suggested that both staging and nomenclature are applicable to all extant lancelets. We conclude that this description of embryonic and larval development will be of great use for the scientific community and that it should be adopted as the new standard for defining and naming developing lancelets. More generally, we anticipate that this work will facilitate future studies comparing representatives from different chordate lineages.

摘要

脊索动物分为三个亚门

脊椎动物亚门、被囊动物亚门和头索动物亚门。从系统发育角度来看,头索动物亚门,更常见的名称是文昌鱼,是脊椎动物亚门和被囊动物亚门的姐妹群。文昌鱼体型小,生活在海底,是海洋滤食性动物,其大约30多种已知物种分为三个属:文昌鱼属、侧殖文昌鱼属和偏文昌鱼属。由于它们在系统发育中的位置以及典型的脊索动物形态和基因组结构,文昌鱼是理解脊索动物进化历史的关键模型。因此,一代又一代的科学家对文昌鱼进行了研究,对成体解剖结构和发育形态的首次描述可追溯到19世纪。如今,几种不同的文昌鱼物种被用作实验室模型,主要用于发育、分子和基因组研究。然而,令人惊讶的是,科学界尚未采用一个通用的分期系统和用于发育中的文昌鱼的明确命名法。在这项工作中,我们使用共聚焦显微镜对欧洲文昌鱼(文昌鱼)的发育进行了表征,并编制了一个简化的发育分期系统,涵盖从受精到幼体期,包括一个明确的阶段命名法。通过追踪在不同温度下饲养的欧洲文昌鱼的生长曲线,我们能够证明我们的分期系统允许轻松地将任何发育时间转换为特定的阶段名称。此外,对欧洲文昌鱼(文昌鱼)、佛罗里达文昌鱼(佛罗里达文昌鱼)、两种亚洲文昌鱼(白氏文昌鱼和瓦氏文昌鱼)以及巴哈马文昌鱼(巴哈马文昌鱼)的胚胎和幼体进行比较表明,我们的分期系统可以很容易地应用于其他文昌鱼物种。尽管详细的分期描述是在发育中的文昌鱼上进行的,但与其他文昌鱼物种的比较强烈表明,分期和命名法都适用于所有现存的文昌鱼。我们得出结论,这种对胚胎和幼体发育的描述将对科学界非常有用,并且应该被采纳为定义和命名发育中的文昌鱼的新标准。更广泛地说,我们预计这项工作将促进未来比较来自不同脊索动物谱系代表的研究。

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