Sebé-Pedrós Arnau, Irimia Manuel, Del Campo Javier, Parra-Acero Helena, Russ Carsten, Nusbaum Chad, Blencowe Benjamin J, Ruiz-Trillo Iñaki
Department of Functional Genomics and Evolution, Institut de Biologia Evolutiva (CSIC-Universitat Pompeu Fabra), Barcelona, Spain.
Elife. 2013 Dec 24;2:e01287. doi: 10.7554/eLife.01287.
The evolution of metazoans from their unicellular ancestors was one of the most important events in the history of life. However, the cellular and genetic changes that ultimately led to the evolution of multicellularity are not known. In this study, we describe an aggregative multicellular stage in the protist Capsaspora owczarzaki, a close unicellular relative of metazoans. Remarkably, transition to the aggregative stage is associated with significant upregulation of orthologs of genes known to establish multicellularity and tissue architecture in metazoans. We further observe transitions in regulated alternative splicing during the C. owczarzaki life cycle, including the deployment of an exon network associated with signaling, a feature of splicing regulation so far only observed in metazoans. Our results reveal the existence of a highly regulated aggregative stage in C. owczarzaki and further suggest that features of aggregative behavior in an ancestral protist may had been co-opted to develop some multicellular properties currently seen in metazoans. DOI: http://dx.doi.org/10.7554/eLife.01287.001.
后生动物从其单细胞祖先进化而来,是生命史上最重要的事件之一。然而,最终导致多细胞性进化的细胞和基因变化尚不清楚。在本研究中,我们描述了原生生物奥氏嗜囊菌中的一个聚集多细胞阶段,它是后生动物的近单细胞亲属。值得注意的是,向聚集阶段的转变与后生动物中已知建立多细胞性和组织结构的基因直系同源物的显著上调有关。我们还观察到奥氏嗜囊菌生命周期中调控可变剪接的转变,包括与信号传导相关的外显子网络的部署,这是迄今为止仅在后生动物中观察到的剪接调控特征。我们的结果揭示了奥氏嗜囊菌中存在一个高度调控的聚集阶段,并进一步表明,祖先原生生物中的聚集行为特征可能已被用于发展目前在后生动物中看到的一些多细胞特性。DOI: http://dx.doi.org/10.7554/eLife.01287.001 。