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首页> 外文期刊>Wound repair and regeneration: official publication of the Wound Healing Society [and] the European Tissue Repair Society >Systematic profiling of early regulators during tissue regeneration using zebrafish model
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Systematic profiling of early regulators during tissue regeneration using zebrafish model

机译:早期期间监管机构的系统分析组织再生利用斑马鱼模型

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Great progresses have been made in comprehension of tissue regeneration process. However, one of the central questions in regeneration research remains to be deciphered is what factors initiate regenerative process. In present study, we focused on systematic profiling of early regulators in tissue regeneration via high-throughput screening on zebrafish caudal fin model. Firstly, 53 GO-annotated regeneration-related genes, which were specifically activated upon fin amputation, were identified according to the transcriptomic analysis. Moreover, qRT-PCR analysis of a couple of randomly selected genes from the aforementioned gene list validated our sequencing results. These studies confirmed the reliability of transcriptome sequencing analysis. Fibroblast growth factor 20a (fgf20a) is a key initial factor in the regeneration of zebrafish. Through a gene expression correlation analysis, we discovered a collection of 70 genes correlating withfgf20a, whose expression increased promptly at 2 days post amputation (dpa) and went down to the basal level until the completion of fin regeneration. In addition, two genes,socs3bandnppc, were chosen to investigate their functions during the fin regeneration. Inhibition of either of those genes significantly delayed the regenerative process. Taken together, we provided a simple and effective time-saving strategy that may serve as a tool for identifying early regulators in regeneration and identified 71 genes as early regulators of fin regeneration.
机译:取得了伟大的进展的理解组织再生的过程。再生研究的核心问题还有待破译是什么因素开始再生过程。专注于早期系统的剖析监管机构在组织再生大规模筛选斑马鱼尾鳍模型。regeneration-related基因,专门鳍截肢后,激活根据转录组确认分析。从随机选择的基因上述基因验证我们的排序列表结果。转录组测序分析。生长因子20 (fgf20a)是一个关键的初始斑马鱼再生的因素。基因表达相关性分析,我们发现70个基因关联的集合withfgf20a的表情迅速增加在2天截肢(dpa)和去鳍的基础水平,直到完成再生。基因,socs3bandnppc,被选出的调查在鳍再生功能。显著抑制这些基因中的任何一个推迟了再生过程。我们提供了一个简单而有效的节省时间的策略,可以作为识别的工具早期的再生和确定的监管机构71个基因早监管者鳍的再生。

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