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培养的鹿角珊瑚成体细胞的转录组分析揭示了在刺胞动物中多能性和细胞分化所必需的祖先基因组调控模块的存在。

Transcription Profiling of Cultured Acropora digitifera Adult Cells Reveals the Existence of Ancestral Genome Regulatory Modules Underlying Pluripotency and Cell Differentiation in Cnidaria.

机构信息

Programa de Biologia, Universidad de la Amazonia, Florencia, Colombia.

Department of Chemistry, Biology, and Marine Science, University of the Ryukyus, Okinawa, Japan.

出版信息

Genome Biol Evol. 2021 Mar 1;13(3). doi: 10.1093/gbe/evab008.

Abstract

Due to their pluripotent nature and unlimited cell renewal, stem cells have been proposed as an ideal material for establishing long-term cnidarian cell cultures. However, the lack of unifying principles associated with "stemness" across the phylum complicates stem cells' identification and isolation. Here, we for the first time report gene expression profiles for cultured coral cells, focusing on regulatory gene networks underlying pluripotency and differentiation. Cultures were initiated from Acropora digitifera tip fragments, the fastest growing tissue in Acropora. Overall, in vitro transcription resembled early larvae, overexpressing orthologs of premetazoan and Hydra stem cell markers, and transcripts with roles in cell division, migration, and differentiation. Our results suggest the presence of pluripotent cell types in cultures and indicate the existence of ancestral genome regulatory modules underlying pluripotency and cell differentiation in cnidaria. Cultured cells appear to be synthesizing protein, differentiating, and proliferating.

摘要

由于其多能性和无限的细胞更新能力,干细胞被提议作为建立长期刺胞动物细胞培养的理想材料。然而,由于缺乏与整个门相关的“干性”的统一原则,干细胞的鉴定和分离变得复杂。在这里,我们首次报告了培养珊瑚细胞的基因表达谱,重点是多能性和分化相关的调控基因网络。培养物是从鹿角珊瑚尖端片段开始的,这是鹿角珊瑚中生长最快的组织。总的来说,体外转录与早期幼虫相似,过度表达后生动物和水螅干细胞标记物的同源物,以及在细胞分裂、迁移和分化中起作用的转录本。我们的结果表明培养物中存在多能细胞类型,并表明在刺胞动物中存在多能性和细胞分化的祖基因组调控模块。培养的细胞似乎在合成蛋白质、分化和增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a371/7936024/f24937730846/evab008f1.jpg

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