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鹿角珊瑚的发育进程受不同调控基因网络的差异表达控制。

Developmental Progression in the Coral Acropora digitifera Is Controlled by Differential Expression of Distinct Regulatory Gene Networks.

作者信息

Reyes-Bermudez Alejandro, Villar-Briones Alejandro, Ramirez-Portilla Catalina, Hidaka Michio, Mikheyev Alexander S

机构信息

Okinawa Institute of Science and Technology, Okinawa, Japan School of Natural Sciences, Ryukyus University, Okinawa, Japan

Okinawa Institute of Science and Technology, Okinawa, Japan.

出版信息

Genome Biol Evol. 2016 Mar 23;8(3):851-70. doi: 10.1093/gbe/evw042.

Abstract

Corals belong to the most basal class of the Phylum Cnidaria, which is considered the sister group of bilaterian animals, and thus have become an emerging model to study the evolution of developmental mechanisms. Although cell renewal, differentiation, and maintenance of pluripotency are cellular events shared by multicellular animals, the cellular basis of these fundamental biological processes are still poorly understood. To understand how changes in gene expression regulate morphogenetic transitions at the base of the eumetazoa, we performed quantitative RNA-seq analysis duringAcropora digitifera's development. We collected embryonic, larval, and adult samples to characterize stage-specific transcription profiles, as well as broad expression patterns. Transcription profiles reconstructed development revealing two main expression clusters. The first cluster grouped blastula and gastrula and the second grouped subsequent developmental time points. Consistently, we observed clear differences in gene expression between early and late developmental transitions, with higher numbers of differentially expressed genes and fold changes around gastrulation. Furthermore, we identified three coexpression clusters that represented discrete gene expression patterns. During early transitions, transcriptional networks seemed to regulate cellular fate and morphogenesis of the larval body. In late transitions, these networks seemed to play important roles preparing planulae for switch in lifestyle and regulation of adult processes. Although developmental progression inA. digitiferais regulated to some extent by differential coexpression of well-defined gene networks, stage-specific transcription profiles appear to be independent entities. While negative regulation of transcription is predominant in early development, cell differentiation was upregulated in larval and adult stages.

摘要

珊瑚属于刺胞动物门最基础的纲,该纲被认为是两侧对称动物的姐妹类群,因此已成为研究发育机制进化的新兴模型。尽管细胞更新、分化和多能性的维持是多细胞动物共有的细胞事件,但这些基本生物学过程的细胞基础仍知之甚少。为了了解基因表达的变化如何调节真后生动物基部的形态发生转变,我们在鹿角珊瑚的发育过程中进行了定量RNA测序分析。我们收集了胚胎、幼虫和成年样本,以表征阶段特异性转录谱以及广泛的表达模式。转录谱重建的发育过程揭示了两个主要的表达簇。第一个簇将囊胚和原肠胚归为一组,第二个簇将随后的发育时间点归为一组。一致地,我们观察到发育早期和晚期转变之间基因表达存在明显差异,原肠胚形成前后差异表达基因的数量和倍数变化更高。此外,我们鉴定出三个共表达簇,它们代表了离散的基因表达模式。在早期转变过程中,转录网络似乎调节幼虫身体的细胞命运和形态发生。在晚期转变过程中,这些网络似乎在为浮浪幼虫的生活方式转变和成年过程的调节做准备方面发挥重要作用。尽管鹿角珊瑚的发育进程在一定程度上受明确的基因网络差异共表达的调节,但阶段特异性转录谱似乎是独立的实体。虽然转录的负调控在早期发育中占主导地位,但细胞分化在幼虫和成年阶段上调。

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