细胞命运规范模式在高度保守的螺旋切割中塑造转录组进化。

IF 6.2 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yan Liang, Jingcheng Wei, Yue Kang, Allan M Carrillo-Baltodano, José M Martín-Durán
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引用次数: 0

摘要

动物的早期发育受到谱系特异性生殖策略和适应性的影响,变化很大。然而,在某些群体中,早期胚胎发生也惊人地保守,比如螺旋藻。在这个进化分支中,至少有7个门具有共同的切割程序(即螺旋切割)和相似的细胞系。为什么早期发育在特定群体中如此保守,而在其他群体中却如此具有可塑性,人们还没有完全理解。本文研究了两种螺旋式分裂的环节动物(梭梭Owenia fusiformis和小头动物Capitella teleta),但它们的原代祖细胞的指定方式不同。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过程,我们证明了这些物种在螺旋切割期间的转录动力学差异显著,而不是反映了它们不同的胚胎组织者规范时间。然而,当同源转录因子共享基因表达域时,卵裂和原肠胚形成的结束表现出高度的转录组相似性,这表明这一时期是环节动物胚胎发生中被忽视的中期发育转变。总之,我们的数据揭示了螺旋切割过程中隐藏的转录组可塑性,表明在早期胚胎发生过程中形态和转录组保护的进化解耦。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cell fate specification modes shape transcriptome evolution in the highly conserved spiral cleavage.

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.

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来源期刊
EMBO Reports
EMBO Reports 生物-生化与分子生物学
CiteScore
11.20
自引率
1.30%
发文量
267
审稿时长
1 months
期刊介绍: EMBO Reports is a scientific journal that specializes in publishing research articles in the fields of molecular biology, cell biology, and developmental biology. The journal is known for its commitment to publishing high-quality, impactful research that provides novel physiological and functional insights. These insights are expected to be supported by robust evidence, with independent lines of inquiry validating the findings. The journal's scope includes both long and short-format papers, catering to different types of research contributions. It values studies that: Communicate major findings: Articles that report significant discoveries or advancements in the understanding of biological processes at the molecular, cellular, and developmental levels. Confirm important findings: Research that validates or supports existing knowledge in the field, reinforcing the reliability of previous studies. Refute prominent claims: Studies that challenge or disprove widely accepted ideas or hypotheses in the biosciences, contributing to the correction and evolution of scientific understanding. Present null data: Papers that report negative results or findings that do not support a particular hypothesis, which are crucial for the scientific process as they help to refine or redirect research efforts. EMBO Reports is dedicated to maintaining high standards of scientific rigor and integrity, ensuring that the research it publishes contributes meaningfully to the advancement of knowledge in the life sciences. By covering a broad spectrum of topics and encouraging the publication of both positive and negative results, the journal plays a vital role in promoting a comprehensive and balanced view of scientific inquiry. 
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