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Genome-Wide Analysis of the Transcription Start Sites and Promoter Motifs of Phytoplasmas

机译:基因组 - 植物转录起始位点及植物促销者基序分析

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Phytoplasmas are obligate intracellular parasitic bacteria that infect both plants and insects. We previously identified the sigma factor RpoD-dependent consensus promoter sequence of phytoplasma. However, the genome-wide landscape of RNA transcripts, including non-coding RNAs (ncRNAs) and RpoD-independent promoter elements, was still unknown. In this study, we performed an improved RNA sequencing analysis for genome-wide identification of the transcription start sites (TSSs) and the consensus promoter sequences. We constructed cDNA libraries using a random adenine/thymine hexamer primer, in addition to a conventional random hexamer primer, for efficient sequencing of 5-termini of AT-rich phytoplasma RNAs. We identified 231 TSSs, which were classified into four categories: mRNA TSSs, internal sense TSSs, antisense TSSs (asTSSs), and orphan TSSs (oTSSs). The presence of asTSSs and oTSSs indicated the genome-wide transcription of ncRNAs, which might act as regulatory ncRNAs in phytoplasmas. This is the first description of genome-wide phytoplasma ncRNAs. Using a de novo motif discovery program, we identified two consensus motif sequences located upstream of the TSSs. While one was almost identical to the RpoD-dependent consensus promoter sequence, the other was an unidentified novel motif, which might be recognized by another transcription initiation factor. These findings are valuable for understanding the regulatory mechanism of phytoplasma gene expression.
机译:柔软植物是对植物和昆虫感染的细胞内寄生虫细菌。我们之前鉴定了植物的Sigma因子RPOD依赖性共有的植物的共识序列。然而,RNA转录物的基因组景观,包括非编码RNA(NCRNA)和无关的启动子元素,仍然未知。在该研究中,我们对转录起始位点(TSSS)和共有促进剂序列的基因组鉴定进行了改进的RNA测序分析。除了常规的随机六聚体引物之外,我们还使用随机腺嘌呤/胸腺嘧啶六聚己烯引物构建cDNA文库,用于有效测序5-末端的富含植物植物RNA。我们确定了231个TSSS,分为四类:mRNA TSSS,内部感觉TSSS,反义TSSS(ASTSSS)和孤儿TSSS(OTSSS)。 ASTSS和OTSSS的存在表明NCRNA的基因组转录,这可能在植物中作为调节NCRNA。这是基因组宽柔软的NCRNA的第一个描述。使用De Novo Motif Discovery计划,我们确定了位于TSSS上游的两种共识序列。虽然一个几乎与RPOD依赖性共识启动子序列相同,但另一个是未识别的新型基序,其可能被另一种转录起始因子识别。这些发现对于理解植物基因表达的调节机制是有价值的。

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