首页> 外文期刊>Genome Biology and Evolution >Developmental Progression in the Coral Acropora digitifera Is Controlled by Differential Expression of Distinct Regulatory Gene Networks
【24h】

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

机译:珊瑚acropora digitifera的发育进展由不同调控基因网络的差异表达控制

获取原文
       

摘要

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 during Acropora 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 in A. digitifera is 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.
机译:珊瑚属于CNIDaria的最基本的类别,这被认为是姐妹小组动物组,因此成为研究发展机制演变的新兴模式。虽然细胞更新,分化和维持多能性是多细胞动物共享的细胞事件,但这些基本生物过程的细胞基础仍然很差。要了解基因表达的变化如何调节eumetazoA碱基的形态发生转变,我们在acropora digitifera的发育过程中进行了定量的RNA-SEQ分析。我们收集胚胎,幼虫和成年样品以表征特定阶段的转录谱,以及广泛的表达模式。转录概况重建发展揭示了两个主要表达集群。第一簇分组Blastula和胃肠和第二分组后续发育时间点。始终如一地,我们观察到早期发育过渡之间的基因表达的明显差异,具有较高数量的差异表达基因并折叠伴有脱脂剂的变化。此外,我们确定了三种代表离散基因表达模式的共抑制簇。在早期过渡期间,转录网络似乎调节幼虫体的细胞命运和形态发生。在延迟过渡中,这些网络似乎在扮演重要角色,准备平面用于改装生活方式和成人过程的调节。尽管A. Digitifera的发育进展在某种程度上受到鉴定的基因网络的差异共表达,但阶段特定的转录概况似乎是独立的实体。虽然转录的阴性调节在早期发育中主要是占主导地位,但在幼虫和成人阶段上上调细胞分化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号