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Widespread Contamination of Arabidopsis Embryo and Endosperm Transcriptome Data Sets

机译:拟南芥胚胎和胚乳转录组数据集的广泛污染

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摘要

A major goal of global gene expression profiling in plant seeds has been to investigate the parental contributions to the transcriptomes of early embryos and endosperm. However, consistency between independent studies has been poor, leading to considerable debate. We have developed a statistical tool that reveals the presence of substantial RNA contamination from maternal tissues in nearly all published Arabidopsis thaliana endosperm and early embryo transcriptomes generated in these studies. We demonstrate that maternal RNA contamination explains the poor reproducibility of these transcriptomic data sets. Furthermore, we found that RNA contamination from maternal tissues has been repeatedly misinterpreted as epigenetic phenomena, which has resulted in inaccurate conclusions regarding the parental contributions to both the endosperm and early embryo transcriptomes. After accounting for maternal RNA contamination, no published genome-wide data set supports the concept of delayed paternal genome activation in plant embryos. Moreover, our analysis suggests that maternal and paternal genomic imprinting are equally rare events in Arabidopsis endosperm. Our publicly available software (https://github.com/Gregor-Mendel-Institute/tissue-enrichment-test) can help the community assess the level of contamination in transcriptome data sets generated from both seed and non-seed tissues.
机译:植物种子全球基因表达谱的主要目标是调查早期胚胎和胚乳的转录组的父母贡献。然而,独立研究之间的一致性差,导致相当大的辩论。我们开发了一种统计工具,揭示了在几乎所有公开的拟南芥内胚层和早期胚胎转录om中的母体组织中实质性RNA污染的存在。我们证明母体RNA污染解释了这些转录组数据集的可差异性差。此外,我们发现来自母体组织的RNA污染已被反复误解为表观遗传现象,这导致了对胚乳和早期胚胎转录om的父母贡献的不准确性结论。在核查母体RNA污染后,没有公开的基因组数据集支持植物胚胎中延迟父肠基因组活化的概念。此外,我们的分析表明母亲和父亲和父类基因组印记在拟南芥胚乳中同样罕见的事件。我们公开的软件(https://github.com/gregor-mendel-institute/tissue-enrichment-test)可以帮助社区评估从两种种子和非种子组织产生的转录组数据集中的污染水平。

著录项

  • 来源
    《The Plant Cell》 |2017年第4期|共10页
  • 作者单位

    Austrian Acad Sci Gregor Mendel Inst Vienna Bioctr A-1030 Vienna Austria;

    Austrian Acad Sci Gregor Mendel Inst Vienna Bioctr A-1030 Vienna Austria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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