Department for Integrative Zoology, University of Vienna, Althanstr. 14, 1090, Vienna, Austria.
Research Center for Marine Biology, Tohoku University, Asamushi, Aomori, Aomori, 039-3501, Japan.
Sci Rep. 2017 Aug 1;7(1):7003. doi: 10.1038/s41598-017-07052-8.
A tubular nervous system is present in the deuterostome groups Chordata (cephalochordates, tunicates, vertebrates) and in the non-chordate Enteropneusta. However, the worm-shaped enteropneusts possess a less complex nervous system featuring only a short hollow neural tube, whereby homology to its chordate counterpart remains elusive. Since the majority of data on enteropneusts stem from the harrimaniid Saccoglossus kowalevskii, putative interspecific variations remain undetected resulting in an unreliable ground pattern that impedes homology assessments. In order to complement the missing data from another enteropneust family, we investigated expression of key neuronal patterning genes in the ptychoderid Balanoglossus misakiensis. The collar cord of B. misakiensis shows anterior Six3/6 and posterior Otx + Engrailed expression, in a region corresponding to the chordate brain. Neuronal Nk2.1/Nk2.2 expression is absent. Interestingly, we found median Dlx and lateral Pax6 expression domains, i.e., a condition that is reversed compared to chordates. Comparative analyses reveal that adult nervous system patterning is highly conserved among the enteropneust families Harrimaniidae, Spengelidae and Ptychoderidae. BmiDlx and BmiPax6 have no corresponding expression domains in the chordate brain, which may be indicative of independent acquisition of a tubular nervous system in Enteropneusta and Chordata.
后生动物门的脊索动物(头索动物、被囊动物、脊椎动物)和非脊索动物肠鳃动物都存在管状神经系统。然而,蠕虫状的肠鳃动物具有相对简单的神经系统,只具有一个短的中空神经管,因此与其脊索动物对应物的同源性仍然难以捉摸。由于大多数关于肠鳃动物的数据都来自于 harrimaniid 类的 Sacoglossus kowalevskii,因此潜在的种间变异仍然未被发现,导致不可靠的基础模式阻碍了同源性评估。为了补充另一个肠鳃动物家族的缺失数据,我们研究了 ptychoderid 类 Balanoglossus misakiensis 中关键神经元模式形成基因的表达。B. misakiensis 的项环索显示出前 Six3/6 和后 Otx + Engrailed 的表达,位于与脊索动物大脑相对应的区域。神经元 Nk2.1/Nk2.2 的表达不存在。有趣的是,我们发现了中间 Dlx 和外侧 Pax6 的表达区域,即与脊索动物相比发生了反转的情况。比较分析表明,后生动物门的肠鳃动物科 Harrimaniidae、Spengelidae 和 Ptychoderidae 中成年神经系统模式具有高度保守性。BmiDlx 和 BmiPax6 在脊索动物大脑中没有相应的表达区域,这可能表明肠鳃动物和脊索动物独立获得了管状神经系统。