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The cell biology of schistosomes: A window on the evolution of the early metazoa

机译:血吸虫的细胞生物学:早期后生动物进化的一个窗口

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This review of schistosome cell biology has a dual purpose; its intent is to alert two separate research communities to the activities of the other. Schistosomes are by far and away the best-characterised platyhelminths, due to their medical and economic importance, but seem to be almost totally ignored by researchers on the free-living lower metazoans. Equally, in their enthusiasm for the parasitic way of life, schistosome researchers seldom pay attention to the work on free-living animals that could inform their molecular investigations. The publication of transcriptomes and/or genomes for Schistosoma mansoni and Schistosoma japonicum, the sponge Archimedon, the cnidarians Nematostella and Hydra and the planarian Schmidtea provide the raw material for comparisons. Apart from interrogation of the databases for molecular similarities, there have been differences in technical approach to these lower metazoans; widespread application of whole mount in situ hybridisation to Schmidtea contrasts with the application of targeted proteomics to schistosomes. Using schistosome cell biology as the template, the key topics of cell adhesion, development, signalling pathways, nerve and muscle, and epithelia, are reviewed, where possible interspersing comparisons with the sponge, cnidarian and planarian data. The biggest jump in the evolution of cellular capabilities appears to be in the transition from a diploblast to triploblast level of organisation associated with development of a mobile and plastic body form.
机译:对血吸虫细胞生物学的综述具有双重目的。它的目的是提醒两个单独的研究社区彼此的活动。由于其在医学和经济上的重要性,血吸虫是迄今最典型的疟原虫,但对于自由活动的后生动物而言,研究人员似乎几乎完全忽略了它。同样,血吸虫病研究人员出于对寄生虫生活方式的热情,很少关注可为他们的分子研究提供信息的自由生活动物的工作。曼氏血吸虫和日本血吸虫,海绵Archimedon,刺胞线虫Nematostella和Hydra以及the虫Schmidtea的转录组和/或基因组的出版提供了比较的原料。除了查询数据库中的分子相似性外,针对这些后生动物的技术方法也存在差异。将整装原位杂交广泛应用于Schmidtea与将靶向蛋白质组学应用于血吸虫形成对比。以血吸虫细胞生物学为模板,综述了细胞粘附,发育,信号传导途径,神经和肌肉以及上皮细胞的关键主题,并在可能的情况下与海绵,刺胞和涡虫数据进行了比较。细胞功能发展的最大飞跃似乎是在从双原细胞到三叶母细胞水平的转变与移动和可塑体形式的发展有关。

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