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巨型动物微型化的进化痕迹——海鞘(被囊动物,有尾目)的脑和脑神经的比较解剖学。

Evolutionary traces of miniaturization in a giant-Comparative anatomy of brain and brain nerves in Bathochordaeus stygius (Tunicata, Appendicularia).

机构信息

Museum für Naturkunde, Berlin, Germany.

Humboldt-Universität zu Berlin, Vergleichende Elektronenmikroskopie, Berlin, Germany.

出版信息

J Morphol. 2023 Jul;284(7):e21598. doi: 10.1002/jmor.21598.

DOI:10.1002/jmor.21598
PMID:37313762
Abstract

Appendicularia comprises 70 marine, invertebrate, chordate species. Appendicularians play important ecological and evolutionary roles, yet their morphological disparity remains understudied. Most appendicularians are small, develop rapidly, and with a stereotyped cell lineage, leading to the hypothesis that Appendicularia derived progenetically from an ascidian-like ancestor. Here, we describe the detailed anatomy of the central nervous system of Bathochordaeus stygius, a giant appendicularian from the mesopelagic. We show that the brain consists of a forebrain with on average smaller and more uniform cells and a hindbrain, in which cell shapes and sizes vary to a greater extent. Cell count for the brain was 102. We demonstrate the presence of three paired brain nerves. Brain nerve 1 traces into the epidermis of the upper lip region and consists of several fibers with some supportive bulb cells in its course. Brain nerve 2 innervates oral sensory organs and brain nerve 3 innervates the ciliary ring of the gill slits and lateral epidermis. Brain nerve 3 is asymmetric, with the right nerve consisting of two neurites originating posterior to the left one that contains three neurites. Similarities and differences to the anatomy of the brain of the model species Oikopleura dioica are discussed. We interpret the small number of cells in the brain of B. stygius as an evolutionary trace of miniaturization and conclude that giant appendicularians evolved from a small, progenetic ancestor that secondarily increased in size within Appendicularia.

摘要

环节动物门包括 70 种海洋无脊椎脊索动物。环节动物在生态和进化方面发挥着重要作用,但它们的形态差异仍未得到充分研究。大多数环节动物体型较小,发育迅速,且具有定型的细胞谱系,这导致了一个假说,即环节动物是从类似尾索动物的祖先演化而来的。在这里,我们描述了巨型环节动物 Bathochordaeus stygius 的中枢神经系统的详细解剖结构。我们发现,大脑由前脑和后脑组成,前脑的细胞通常更小且更均匀,而后脑的细胞形状和大小差异更大。大脑的细胞计数为 102 个。我们证明了存在 3 对脑神经。脑神经 1 追踪到上唇区域的表皮,由几条纤维组成,在其过程中有一些支持的泡状细胞。脑神经 2 支配口腔感觉器官,脑神经 3 支配鳃裂的纤毛环和侧表皮。脑神经 3 是不对称的,右侧神经由两个起源于左侧神经后面的神经突组成,左侧神经包含三个神经突。我们讨论了与模式物种 Oikopleura dioica 的大脑解剖结构的相似之处和差异。我们将 B. stygius 大脑中细胞数量较少解释为小型化的进化痕迹,并得出结论,巨型环节动物是从小型、亲代祖先演化而来的,而在环节动物中,它们的体型后来又有所增加。

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引用本文的文献

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The oral sensory organs in Bathochordaeus stygius (Tunicata Appendicularia) are unique in structure and homologous to the coronal organ.深海尾索动物(被囊动物亚门)的口腔感觉器官在结构上是独特的,并且与冕状器官同源。
Front Zool. 2023 Dec 15;20(1):40. doi: 10.1186/s12983-023-00518-8.
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