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细胞命运特化模式塑造了高度保守的螺旋卵裂中的转录组进化。

Cell fate specification modes shape transcriptome evolution in the highly conserved spiral cleavage.

作者信息

Liang Yan, Wei Jingcheng, Kang Yue, Carrillo-Baltodano Allan M, Martín-Durán José M

机构信息

School of Biological and Behavioural Sciences, Queen Mary University of London, Mile End Road, E1 4NS, London, UK.

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton. CB10 1SA, Cambridge, UK.

出版信息

EMBO Rep. 2025 Sep 4. doi: 10.1038/s44319-025-00569-4.

Abstract

Early animal development can be remarkably variable, influenced by lineage-specific reproductive strategies and adaptations. Yet, early embryogenesis is also strikingly conserved in certain groups, such as Spiralia. In this clade, a shared cleavage program (i.e., spiral cleavage) and similar cell lineages are ancestral to at least seven phyla. Why early development is so conserved in specific groups and plastic in others is not fully understood. Here, we investigated two annelid species (Owenia fusiformis and Capitella teleta) with spiral cleavage but different modes of specifying their primary progenitor cells. By generating high-resolution transcriptomic time courses from the oocyte to gastrulation, we demonstrate that transcriptional dynamics differ markedly between these species during spiral cleavage and instead reflect their distinct timings of embryonic organiser specification. However, the end of cleavage and gastrulation exhibit high transcriptomic similarity, when orthologous transcription factors share gene expression domains, suggesting this period is a previously overlooked mid-developmental transition in annelid embryogenesis. Together, our data reveal hidden transcriptomic plasticity during spiral cleavage, indicating an evolutionary decoupling of morphological and transcriptomic conservation during early embryogenesis.

摘要

早期动物发育可能会受到谱系特异性繁殖策略和适应性的影响,从而表现出显著的变异性。然而,早期胚胎发生在某些类群中也具有显著的保守性,比如螺旋虫类。在这个进化枝中,一种共享的卵裂程序(即螺旋卵裂)和相似的细胞谱系是至少七个门的祖先特征。早期发育为何在特定类群中如此保守而在其他类群中又具有可塑性,目前尚未完全明确。在此,我们研究了两种具有螺旋卵裂但确定其主要祖细胞方式不同的环节动物(纺锤欧文蚓和小头虫)。通过生成从卵母细胞到原肠胚形成的高分辨率转录组时间进程,我们证明在螺旋卵裂过程中,这两个物种的转录动态存在显著差异,反而反映了它们胚胎组织者确定的不同时间。然而,卵裂结束和原肠胚形成阶段表现出高度的转录组相似性,此时直系同源转录因子共享基因表达域,这表明这个时期是环节动物胚胎发生中一个先前被忽视的发育中期转变。总之,我们的数据揭示了螺旋卵裂过程中隐藏的转录组可塑性,表明早期胚胎发生过程中形态和转录组保守性的进化解耦。

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