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Adoption of conserved developmental genes in development and origin of the medusa body plan

机译:在美杜莎人体计划的发展和起源中采用保守的发展基因

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Background The metagenesis of sessile polyps into pelagic medusae in cnidarians represents one of the most ancient complex life cycles in animals. Interestingly, scyphozoans and hydrozoans generate medusae by apparently fundamentally different processes. It is therefore unclear whether medusa formation has evolved independently in different medusozoans. To this end, a thorough understanding of the correspondence of polyp and medusa is required. Results We monitored the expression patterns of conserved developmental genes in developing medusae of Clytia hemisphaerica (Hydrozoa) and Aurelia aurita (Scyphozoa) and found that developing medusae and polyps share similarities in their morphology and developmental gene expression. Unexpectedly, however, polyp tentacle marker genes were consistently expressed in the developing medusa bell, suggesting that the bell of medusae corresponds to modified and fused polyp tentacle anlagen. Conclusions Our data represent the first comparative gene expression analysis of developing medusae in two representatives of Scyphozoa and Hydrozoa. The results challenge prevailing views about polyp medusa body plan homology. We propose that the evolution of a new life stage may be facilitated by the adoption of existing developmental genes.
机译:背景技术刺胞动物中无息息肉向上层水母的代谢是动物中最古老的复杂生命周期之一。有趣的是,后生虫和水生动物通过明显不同的过程生成美杜莎。因此,尚不清楚水母的形成是否在不同的中等生动物中独立发展。为此,需要彻底了解息肉和水母的对应关系。结果我们监测了保守的发育基因在半指天蓝水母(Hydrozoa)和金黄色Aurelia(Scyphozoa)的水母中的表达模式,发现正在发展的水母和息肉在形态和发育基因表达上具有相似性。然而,出乎意料的是,息肉触手标记基因在发育中的美杜莎钟声中始终表达,表明美杜莎的钟声对应于修饰和融合的息肉触手触角。结论我们的数据代表了在两个Shyphozoa和Hydrozoa代表中的美杜莎的首次比较基因表达分析。结果挑战了关于息肉美杜莎身体计划同源性的主流观点。我们建议通过采用现有的发育基因可以促进新生命阶段的进化。

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