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首页> 外文期刊>Scientific reports. >Transcriptome analysis of different developmental stages of amphioxus reveals dynamic changes of distinct classes of genes during development
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Transcriptome analysis of different developmental stages of amphioxus reveals dynamic changes of distinct classes of genes during development

机译:AMphioxus不同发育阶段的转录组分析显示出在发育过程中不同类别的动态变化

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Vertebrates diverged from other chordates approximately 500 million years ago and have adopted several modifications of developmental processes. Amphioxus is widely used in evolutionary developmental biology research, such as on the basic patterning mechanisms involved in the chordate body plan and the origin of vertebrates. The fast development of next-generation sequencing has advanced knowledge of the genomic organization of amphioxus; however, many aspects of gene regulation during amphioxus development have not been fully characterized. In this study, we applied high-throughput sequencing on the transcriptomes of 13 developmental stages of Chinese amphioxus to gain a comprehensive understanding of transcriptional processes occurring from the fertilized egg to the adult stage. The expression levels of 3,423 genes were significantly changed (FDR ≤ 0.01). All of these genes were included in a clustering analysis, and enrichment of biological functions associated with these clusters was determined. Significant changes were observed in several important processes, including the down-regulation of the cell cycle and the up-regulation of translation. These results should build a foundation for identifying developmentally important genes, especially those regulatory factors involved in amphioxus development, and advance understanding of the developmental dynamics in vertebrates.
机译:脊椎动物从其他脊索源性分叉大约5亿年前,并采用了几次发育过程的修改。 Amphioxus广泛应用于进化发展生物学研究,例如关于曲线体计划和脊椎动物起源的基本图案化机制。下一代测序的快速发展具有对Amphioxus的基因组组织的先进知识;然而,在Amphioxus发育过程中基因调节的许多方面尚未完全表征。在这项研究中,我们对中国Amphioxus的13个发育阶段的转录组进行了高通量测序,以全面了解从受精卵到成人阶段发生的转录过程。 3,423基因的表达水平显着变化(FDR≤0.01)。所有这些基因都包含在聚类分析中,并确定与这些簇相关的生物学功能的富集。在几种重要过程中观察到显着的变化,包括细胞周期的下调和翻译的上调。这些结果应为识别出现发展重要基因的基础,特别是患有Amphioxus开发的监管因素,以及推进脊椎动物中发育动力学的理解。

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