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Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever Virus

机译:组合短和长读序列揭示了非洲猪瘟病毒的复杂转录组建

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摘要

African swine fever virus (ASFV) is a large DNA virus belonging to the Asfarviridae family. Despite its agricultural importance, little is known about the fundamental molecular mechanisms of this pathogen. Short-read sequencing (SRS) can produce a huge amount of high-precision sequencing reads for transcriptomic profiling, but it is inefficient for comprehensively annotating transcriptomes. Long-read sequencing (LRS) can overcome some of SRS’s limitations, but it also has drawbacks, such as low-coverage and high error rate. The limitations of the two approaches can be surmounted by the combined use of these techniques. In this study, we used Illumina SRS and Oxford Nanopore Technologies LRS platforms with multiple library preparation methods (amplified and direct cDNA sequencings and native RNA sequencing) for constructing the ASFV transcriptomic atlas. This work identified many novel transcripts and transcript isoforms and annotated the precise termini of previously described RNAs. This study identified a novel species of ASFV transcripts, the replication origin-associated RNAs. Additionally, we discovered several nested genes embedded into larger canonical genes. In contrast to the current view that the ASFV transcripts are monocistronic, we detected a significant extent of polycistronism. A multifaceted meshwork of transcriptional overlaps was also discovered.
机译:非洲猪瘟病毒(ASFV)是属于Asfarviridae家族的大型DNA病毒。尽管其农业重要性,但对该病原体的基本分子机制知之甚少。短读测序(SRS)可产生巨大的高精度对转录组分析测序读数量,但它是低效率的用于综合注释转录。长读测序(LRS)可以克服SRS的一些限制,但它也具有缺点,例如低覆盖率和高差错率。可以通过联合使用这些技术来超越两种方法的局限性。在这项研究中,我们使用了具有多种文库制备方法的Illumina SRS和牛津纳米孔技术LRS平台(扩增和直接cDNA序列和天然RNA测序),用于构建ASFV转录组atlas。这项工作鉴定了许多新的转录物和转录同种型,并向先前描述的RNA的精确末端注释。该研究确定了一种新型ASFV转录物,复制源相关的RNA。此外,我们发现了几种嵌入较大的规范基因的嵌套基因。与目前的视图相比,ASFV转录物是单锁相色调,我们在大大程度的多种程度上检测到了多种。还发现了转录重叠的多方面的网状作品。

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