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玉米中受RNA聚合酶IV影响的新生转录

Nascent transcription affected by RNA polymerase IV in Zea mays.

作者信息

Erhard Karl F, Talbot Joy-El R B, Deans Natalie C, McClish Allison E, Hollick Jay B

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley, California 94720-3102.

Department of Molecular and Cell Biology, University of California, Berkeley, California 94720-3200 Department of Molecular Genetics, Center for RNA Biology, The Ohio State University, Columbus, Ohio 43210.

出版信息

Genetics. 2015 Apr;199(4):1107-25. doi: 10.1534/genetics.115.174714. Epub 2015 Feb 4.

Abstract

All eukaryotes use three DNA-dependent RNA polymerases (RNAPs) to create cellular RNAs from DNA templates. Plants have additional RNAPs related to Pol II, but their evolutionary role(s) remain largely unknown. Zea mays (maize) RNA polymerase D1 (RPD1), the largest subunit of RNA polymerase IV (Pol IV), is required for normal plant development, paramutation, transcriptional repression of certain transposable elements (TEs), and transcriptional regulation of specific alleles. Here, we define the nascent transcriptomes of rpd1 mutant and wild-type (WT) seedlings using global run-on sequencing (GRO-seq) to identify the broader targets of RPD1-based regulation. Comparisons of WT and rpd1 mutant GRO-seq profiles indicate that Pol IV globally affects transcription at both transcriptional start sites and immediately downstream of polyadenylation addition sites. We found no evidence of divergent transcription from gene promoters as seen in mammalian GRO-seq profiles. Statistical comparisons identify genes and TEs whose transcription is affected by RPD1. Most examples of significant increases in genic antisense transcription appear to be initiated by 3'-proximal long terminal repeat retrotransposons. These results indicate that maize Pol IV specifies Pol II-based transcriptional regulation for specific regions of the maize genome including genes having developmental significance.

摘要

所有真核生物都使用三种依赖DNA的RNA聚合酶(RNAP),以DNA模板生成细胞RNA。植物有与Pol II相关的其他RNAP,但它们的进化作用在很大程度上仍不清楚。玉米RNA聚合酶D1(RPD1)是RNA聚合酶IV(Pol IV)的最大亚基,正常植物发育、副突变、某些转座元件(TE)的转录抑制以及特定等位基因的转录调控都需要它。在这里,我们使用全局运行测序(GRO-seq)定义rpd1突变体和野生型(WT)幼苗的新生转录组,以确定基于RPD1调控的更广泛靶点。WT和rpd1突变体GRO-seq图谱的比较表明,Pol IV在转录起始位点和聚腺苷酸化添加位点下游均对转录产生全局影响。我们没有发现如在哺乳动物GRO-seq图谱中所见的基因启动子发散转录的证据。统计比较确定了转录受RPD1影响的基因和TE。基因反义转录显著增加的大多数例子似乎是由3'-近端长末端重复逆转座子引发的。这些结果表明,玉米Pol IV为玉米基因组的特定区域指定基于Pol II的转录调控,包括具有发育意义的基因。

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