Bekkouche Nicolas, Worsaae Katrine
Marine Biological Section, Department of Biology , University of Copenhagen , Universitetsparken 4, 2100 Copenhagen , Denmark.
R Soc Open Sci. 2016 Oct 26;3(10):160289. doi: 10.1098/rsos.160289. eCollection 2016 Oct.
Recent studies show that Gnathifera, comprising Rotifera, Gnathostomulida and Micrognathozoa, constitute the sister group to the remaining Spiralia (containing, e.g. flatworms, segmented worms and molluscs). Therefore, a better understanding of Gnathifera is central for unravelling the evolution of the highly diverse Spiralia. Here, we describe the previously unstudied nervous system and ciliary structures of Micrognathozoa, using immunohistochemistry and confocal laser scanning microscopy. The nervous system is simple with a large brain, paired sub-esophageal ganglia, two trunk commissures, two pairs of ventral longitudinal nerves and peripheral nerves. The paired ventro-lateral nerve cords are confirmed to be a symplesiomorphy of Gnathifera (possibly even Spiralia), whereas the paired ventro-median nerves are not previously reported in Gnathifera. A pharyngeal ganglion is described for Micrognathozoa: a complex structure with two apical tufts of ciliary receptors, now shown to be shared by all Gnathifera. The ventral pattern of external ciliophores is re-described, and protonephridia with multi-ciliated collecting tubules similar to those of Rotifera are confirmed. A range of new details from a simple nervous system and complex set of ciliary structures in a microscopic metazoan are hereby unravelled. The many resemblances with Rotifera corroborate their close relationship, and shed more light on the evolution of Gnathifera.
最近的研究表明,由轮虫纲、颚口纲和微颚动物门组成的颚胃动物总门,是其余螺旋卵裂动物(例如包含扁形虫、环节动物和软体动物)的姐妹类群。因此,更好地了解颚胃动物总门对于阐明高度多样化的螺旋卵裂动物的进化至关重要。在这里,我们使用免疫组织化学和共聚焦激光扫描显微镜,描述了微颚动物门以前未被研究过的神经系统和纤毛结构。其神经系统简单,有一个大脑、成对的咽下神经节、两条体干连合、两对腹侧纵神经和外周神经。成对的腹外侧神经索被确认为是颚胃动物总门(甚至可能是螺旋卵裂动物)的一个共有衍征,而成对的腹正中神经在颚胃动物总门中此前未被报道。描述了微颚动物门的一个咽神经节:一种具有两个顶端纤毛感受器簇的复杂结构,现已证明为所有颚胃动物总门所共有。重新描述了外部纤毛器的腹侧模式,并确认了具有类似于轮虫纲的多纤毛收集小管的原肾管。由此揭示了一种微观后生动物简单神经系统和复杂纤毛结构的一系列新细节。与轮虫纲的许多相似之处证实了它们的密切关系,并为颚胃动物总门的进化提供了更多线索。