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Gene expression during the first 28 days of axolotl limb regeneration I: Experimental design and global analysis of gene expression

机译:腋生肢体再生的前28天中的基因表达I:基因表达的实验设计和整体分析

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摘要

While it is appreciated that global gene expression analyses can provide novel insights about complex biological processes, experiments are generally insufficiently powered to achieve this goal. Here we report the results of a robust microarray experiment of axolotl forelimb regeneration. At each of 20 post‐amputation time points, we estimated gene expression for 10 replicate RNA samples that were isolated from 1 mm of heterogeneous tissue collected from the distal limb tip. We show that the limb transcription program diverges progressively with time from the non‐injured state, and divergence among time adjacent samples is mostly gradual. However, punctuated episodes of transcription were identified for five intervals of time, with four of these coinciding with well‐described stages of limb regeneration—amputation, early bud, late bud, and pallet. The results suggest that regeneration is highly temporally structured and regulated by mechanisms that function within narrow windows of time to coordinate transcription within and across cell types of the regenerating limb. Our results provide an integrative framework for hypothesis generation using this complex and highly informative data set.
机译:尽管可以理解,全球基因表达分析可以提供有关复杂生物学过程的新颖见解,但通常实验不足以实现这一目标。在这里,我们报告a的前肢再生的强大的微阵列实验的结果。在截肢后的每个20个时间点,我们估计了10个重复RNA样品的基因表达,这些样品是从1 mm从远端肢体尖端收集的异质组织中分离出来的。我们显示,肢体转录程序从非受伤状态开始随时间逐渐发散,相邻时间之间的发散主要是渐进的。但是,在五个时间间隔内发现了标点符号的转录情节,其中四个与肢体再生的详细描述的阶段相吻合,即截肢,早期芽,晚期芽和托盘。结果表明,再生在时间上高度结构化,并且受在狭窄的时间窗口内起作用以协调再生肢体细胞类型内和跨细胞类型的转录的机制调控。我们的结果提供了使用此复杂且信息量丰富的数据集生成假设的综合框架。

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