首页> 外文期刊>EvoDevo >Development of the larval anterior neurogenic domains of Terebratalia transversa (Brachiopoda) provides insights into the diversification of larval apical organs and the spiralian nervous system
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Development of the larval anterior neurogenic domains of Terebratalia transversa (Brachiopoda) provides insights into the diversification of larval apical organs and the spiralian nervous system

机译:Terebratalia transversa(Brachiopoda)的幼虫前神经源性结构域的发展为幼虫顶端器官和螺旋神经系统的多样化提供了见识

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Background Larval features such as the apical organ, apical ciliary tuft, and ciliated bands often complicate the evaluation of hypotheses regarding the origin of the adult bilaterian nervous system. Understanding how neurogenic domains form within the bilaterian head and larval apical organ requires expression data from animals that exhibit aspects of both centralized and diffuse nervous systems at different life history stages. Here, we describe the expression of eight neural-related genes during the larval development of the brachiopod, Terebratalia transversa. Results Radially symmetric gastrulae broadly express Tt-Six3/6 and Tt-hbn in the animal cap ectoderm. Tt-NK2.1 and Tt-otp are restricted to a central subset of these cells, and Tt-fez and Tt-FoxQ2 expression domains are already asymmetric at this stage. As gastrulation proceeds, the spatial expression of these genes is split between two anterior ectodermal domains, a more dorsal region comprised of Tt-Six3/6, Tt-fez, Tt-FoxQ2, and Tt-otp expression domains, and an anterior ventral domain demarcated by Tt-hbn and Tt-NK2.1 expression. More posteriorly, the latter domains are bordered by Tt-FoxG expression in the region of the transverse ciliated band. Tt-synaptotagmin 1 is expressed throughout the anterior neural ectoderm. All genes are expressed late into larval development. The basiepithelial larval nervous system includes three neurogenic domains comprised of the more dorsal apical organ and a ventral cell cluster in the apical lobe as well as a mid-ventral band of neurons in the mantle lobe. Tt-otp is the only gene expressed in numerous flask-shaped cells of the apical organ and in a subset of neurons in the mantle lobe. Conclusions Our expression data for Tt-Six3/6, Tt-FoxQ2, and Tt-otp confirm some aspects of bilaterian-wide conservation of spatial partitioning within anterior neurogenic domains and also suggest a common origin for central otp-positive cell types within the larval apical organs of spiralians. However, the field of sensory neurons within the larval apical organ of Terebratalia is broader and composed of more cells relative to those of other spiralian larvae. These cellular differences are mirrored in the broader spatial and temporal expression patterns of Tt-FoxQ2 and Tt-otp. Corresponding differences in the expression of Tt-hbn, Tt-NK2.1, and Tt-FoxG are also observed relative to their respective domains within the cerebral ganglia of spiralians. Based on these data we argue that the anterior region of the bilaterian stem species included Six3/6, NK2.1, otp, hbn, fez, and FoxQ2 expression domains that were subsequently modified within larval and adult neural tissues of protostome and deuterostome animals.
机译:背景技术幼虫的特征,例如根尖器官,根尖的纤毛簇和纤毛束带,通常会使关于成人双侧神经系统起源的假说的评估复杂化。要了解神经源性结构域在双侧头和幼虫顶端器官中的形成方式,需要来自动物的表达数据,这些数据在不同的生活史阶段均表现出集中和分散的神经系统。在这里,我们描述了腕足类动物的幼虫发育过程中八个神经相关基因的表达。结果放射对称的胃胚在动物帽外胚层中广泛表达Tt-Six3 / 6和Tt-hbn。 Tt-NK2.1和Tt-otp仅限于这些细胞的中央子集,并且Tt-fez和Tt-FoxQ2表达域在此阶段已经不对称。随着胃排毒的进行,这些基因的空间表达在两个前外胚层结构域,一个由Tt-Six3 / 6,Tt-fez,Tt-FoxQ2和Tt-otp表达域组成的更背面区域以及一个前腹侧结构域之间分配。由Tt-hbn和Tt-NK2.1表达划定。在后面,后面的结构域在横向纤毛带区域中以Tt-FoxG表达为边界。 Tt-突触标签蛋白1在整个前神经外胚层中表达。所有基因都在幼虫发育后期表达。上皮幼虫神经系统包括三个神经源性结构域,包括更多的背顶器官和顶叶中的腹侧细胞簇以及地幔叶中腹侧的神经元带。 Tt-otp是唯一的基因,在顶器官的许多烧瓶状细胞和地幔叶的神经元子集中表达。结论我们的Tt-Six3 / 6,Tt-FoxQ2和Tt-otp的表达数据证实了双侧范围内前神经源性区域内空间分配的保守性,并且还提出了幼虫中央otp阳性细胞类型的共同起源螺旋形的顶端器官。然而,与其他螺旋幼虫相比,Terebratalia幼虫顶端器官内的感觉神经元的范围更广,并且由更多的细胞组成。这些细胞差异反映在Tt-FoxQ2和Tt-otp的更广泛的空间和时间表达模式中。相对于它们在螺旋形人的神经节内的各自结构域,还观察到了Tt-hbn,Tt-NK2.1和Tt-FoxG表达的相应差异。根据这些数据,我们认为双侧干物种的前部区域包括Six3 / 6,NK2.1,otp,hbn,fez和FoxQ2表达域,这些域随后在原生动物和氘代动物的幼虫和成年神经组织内被修饰。

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