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Evidence for a centrosome-attracting body like structure in germ-soma segregation during early development, in the urochordate Oikopleura dioica

机译:在早期发育期间,在早期发育期间,在早期发育期间,在早期发展中的毒细胞分离等结构的证据。

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摘要

Abstract Background Germ cell formation has been investigated in sessile forms of tunicates. This process involves the release of a subset of maternal transcripts from the centrosome-attracting body (CAB) in the progenitor cells of the germ line. When germ-soma segregation is completed, CAB structures are missing from the newly formed primordial germ cells (PGCs). In free-swimming tunicates, knowledge about germ cell formation is lacking. In this investigation, comparative gene expression and electron microscopy studies were used to address germ cell formation in Oikopleura dioica (O. dioica). Results We found that the RNA localization pattern of pumilio (pum1) is similar to the pattern described for a subset of maternal transcripts marking the posterior end of ascidian embryos. Transcripts marking the posterior end are called postplasmic or posterior-end mark (PEM) transcripts. We found no localization of vasa (vas) transcripts to any sub-region within the germ-line precursor cells. Expression of vas4 was detected in the newly formed PGCs. Electron microscopy studies confirmed the presence of structures with similar morphology to CAB. In the same cytoplasmic compartment, we also identified pum1 transcripts and an epitope recognized by an antibody to histone H3 phosphorylated on serine 28. Conclusions Our findings support that a CAB-like structure participates in the segregation of maternal pum1 transcripts during germ-soma separation in O. dioica.
机译:摘要背景下的毒细胞形成是在闭塞形式的姿态中进行了调查。该方法涉及从胚芽线祖细胞中的母体转录物中释放母体转录物的子集。当Grow-Soma隔离完成时,新形成的原始生殖细胞(PGC)缺少驾驶室结构。在自由游泳的姿势中,缺乏关于种细胞形成的知识。在该研究中,使用对比基因表达和电子显微镜研究来解决Oikpleura Dioica(O. Dioica)中的生殖细胞形成。结果发现,Pumilio(Pum1)的RNA定位模式类似于标记阿丙糊糊的后端的母体转录物子集的图案。标记后端的转录物称为术后或后端标记(PEM)转录物。我们发现VASA(VAS)转录物的定位在细菌前体细胞内的任何亚区。在新形成的PGC中检测到VAS4的表达。电子显微镜研究证实存在具有与驾驶室相似的形态的结构。在相同的细胞质隔室中,我们还鉴定了通过抗体对丝氨酸磷酸化的组蛋白H3识别的PUM1转录物和表位。结论我们的研究结果支持在种质 - 细胞分离期间携带驾驶室结构参与母体PUM1转录物的分离O. Dioica。

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