文昌鱼有弦前区和端端结构域吗?

IF 2.1 4区 心理学 Q3 BEHAVIORAL SCIENCES
Brain Behavior and Evolution Pub Date : 2022-01-01 Epub Date: 2022-01-14 DOI:10.1159/000521966
José Luis Ferran, Manuel Irimia, Luis Puelles
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引用次数: 4

摘要

这篇文章重新审视了单一的情况下,据说独特的喙延长脊索描述经典文文鱼。我们从先前对hpf - 21幼虫的观察开始[Albuixech-Crespo等人:PLoS Biol. 2017;15(4):e2001573],表明脑泡在表面上具有相当标准的下丘脑分子结构。这与脊索穿过可能的下丘脑上顶区有关。脊索显示出一些分子上的差异,这些差异特别表征了它的前顶端延伸到乳头区下的正常吻端之外。我们探索了另一种解释,即这种脊索的假定延伸实际上代表了文文鱼脊索前板的一种变体形式,其中一些细胞将采用脊索类型,但缺乏脊索模式特性,并且可能具有一些(但不是全部)脊索前板。我们详细调查了文文鱼的原肠胚形成、脊索前板和脊索形成的经典和最新文献,将观察到的模式与其他一些脊椎动物的模式进行了比较,并重新检查了关于头部这一喙部区域差异基因表达模式的文献。我们注意到,以前的文献未能在适当的阶段确定文昌鱼的弦前原基。在这种解释下,可以为头脊索动物、被囊动物和脊椎动物绘制一致的图像。此外,几乎没有证据表明早期脊索具有向头侧生长的内在能力(它通常向尾侧伸长)。总之,我们得出结论,延长文昌鱼脊索的弦前性质的假设与提出的证据是一致的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Is There a Prechordal Region and an Acroterminal Domain in Amphioxus?

This essay re-examines the singular case of the supposedly unique rostrally elongated notochord described classically in amphioxus. We start from our previous observations in hpf 21 larvae [Albuixech-Crespo et al.: PLoS Biol. 2017;15(4):e2001573] indicating that the brain vesicle has rostrally a rather standard hypothalamic molecular configuration. This correlates with the notochord across a possible rostromedian acroterminal hypothalamic domain. The notochord shows some molecular differences that specifically characterize its pre-acroterminal extension beyond its normal rostral end under the mamillary region. We explored an alternative interpretation that the putative extension of this notochord actually represents a variant form of the prechordal plate in amphioxus, some of whose cells would adopt the notochordal typology, but would lack notochordal patterning properties, and might have some (but not all) prechordal ones instead. We survey in detail the classic and recent literature on gastrulation, prechordal plate, and notochord formation in amphioxus, compare the observed patterns with those of some other vertebrates of interest, and re-examine the literature on differential gene expression patterns in this rostralmost area of the head. We noted that previous literature failed to identify the amphioxus prechordal primordia at appropriate stages. Under this interpretation, a consistent picture can be drawn for cephalochordates, tunicates, and vertebrates. Moreover, there is little evidence for an intrinsic capacity of the early notochord to grow rostralwards (it normally elongates caudalwards). Altogether, we conclude that the hypothesis of a prechordal nature of the elongated amphioxus notochord is consistent with the evidence presented.

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来源期刊
Brain Behavior and Evolution
Brain Behavior and Evolution 医学-行为科学
CiteScore
3.10
自引率
23.50%
发文量
31
审稿时长
>12 weeks
期刊介绍: ''Brain, Behavior and Evolution'' is a journal with a loyal following, high standards, and a unique profile as the main outlet for the continuing scientific discourse on nervous system evolution. The journal publishes comparative neurobiological studies that focus on nervous system structure, function, or development in vertebrates as well as invertebrates. Approaches range from the molecular over the anatomical and physiological to the behavioral. Despite this diversity, most papers published in ''Brain, Behavior and Evolution'' include an evolutionary angle, at least in the discussion, and focus on neural mechanisms or phenomena. Some purely behavioral research may be within the journal’s scope, but the suitability of such manuscripts will be assessed on a case-by-case basis. The journal also publishes review articles that provide critical overviews of current topics in evolutionary neurobiology.
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