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RNA-Seq 揭示了海参肠道再生关键阶段基因表达的动态变化。[已更正]

RNA-Seq reveals dynamic changes of gene expression in key stages of intestine regeneration in the sea cucumber Apostichopus japonicus. [corrected].

机构信息

Institute of Oceanology, Chinese Academy of Sciences, Qingdao, PR China.

出版信息

PLoS One. 2013 Aug 6;8(8):e69441. doi: 10.1371/journal.pone.0069441. Print 2013.

Abstract

BACKGROUND

Sea cucumbers (Holothuroidea; Echinodermata) have the capacity to regenerate lost tissues and organs. Although the histological and cytological aspects of intestine regeneration have been extensively studied, little is known of the genetic mechanisms involved. There has, however, been a renewed effort to develop a database of Expressed Sequence Tags (ESTs) in Apostichopus japonicus, an economically-important species that occurs in China. This is important for studies on genetic breeding, molecular markers and special physiological phenomena. We have also constructed a library of ESTs obtained from the regenerative body wall and intestine of A. japonicus. The database has increased to ~30000 ESTs.

RESULTS

We used RNA-Seq to determine gene expression profiles associated with intestinal regeneration in A. japonicus at 3, 7, 14 and 21 days post evisceration (dpe). This was compared to profiles obtained from a normally-functioning intestine. Approximately 5 million (M) reads were sequenced in every library. Over 2400 up-regulated genes (>10%) and over 1000 down-regulated genes (~5%) were observed at 3 and 7dpe (log2Ratio ≥ 1, FDR ≤ 0.001). Specific "Go terms" revealed that the DEGs (Differentially Expressed Genes) performed an important function at every regeneration stage. Besides some expected pathways (for example, Ribosome and Spliceosome pathway term), the "Notch signaling pathway," the "ECM-receptor interaction" and the "Cytokine-cytokine receptor interaction" were significantly enriched. We also investigated the expression profiles of developmental genes, ECM-associated genes and Cytoskeletal genes. Twenty of the most important differentially expressed genes (DEGs) were verified by Real-time PCR, which resulted in a trend concordance of almost 100% between the two techniques.

CONCLUSION

Our studies demonstrated dynamic changes in global gene expression during intestine regeneration and presented a series of candidate genes and enriched pathways that contribute to intestine regeneration in sea cucumbers. This provides a foundation for future studies on the genetics/molecular mechanisms associated with intestine regeneration.

摘要

背景

海参(海参纲;棘皮动物)具有再生丢失组织和器官的能力。尽管肠再生的组织学和细胞学方面已经得到了广泛的研究,但涉及的遗传机制却知之甚少。然而,人们已经重新努力开发中国重要经济物种刺参的表达序列标签(EST)数据库。这对于遗传育种、分子标记和特殊生理现象的研究非常重要。我们还构建了刺参再生体壁和肠组织的 EST 文库。该数据库已增加到约 30000 个 EST。

结果

我们使用 RNA-Seq 来确定与刺参肠再生相关的基因表达谱,在剖腹后 3、7、14 和 21 天(dpe)进行分析。这与从正常功能肠中获得的图谱进行了比较。每个文库中大约测序了 500 万(M)个读段。在 3 和 7dpe 时观察到超过 2400 个上调基因(>10%)和超过 1000 个下调基因(~5%)(log2Ratio≥1,FDR≤0.001)。特定的“GO 术语”表明,DEGs(差异表达基因)在每个再生阶段都具有重要功能。除了一些预期的途径(例如核糖体和剪接体途径术语)外,“Notch 信号通路”、“ECM-受体相互作用”和“细胞因子-细胞因子受体相互作用”也显著富集。我们还研究了发育基因、ECM 相关基因和细胞骨架基因的表达谱。通过实时 PCR 验证了 20 个最重要的差异表达基因(DEGs),两种技术的结果几乎达到 100%的趋势一致性。

结论

我们的研究表明,在肠再生过程中,全局基因表达发生了动态变化,并提出了一系列有助于海参肠再生的候选基因和富集途径。这为未来研究与肠再生相关的遗传学/分子机制提供了基础。

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