RNA architecture of porcine deltacoronavirus genome inside virions detected by vRIC-seq

通过 vRIC-seq 检测病毒体内部猪德尔塔冠状病毒基因组的 RNA 结构

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作者:Ju Sun #, Zhiyuan Huang #, Lei Chen, Liangrong Guo, Yuxiang Wang, Yingxiang Deng, Guoyue Liu, Zi Wen, Dengguo Wei

Abstract

Porcine deltacoronavirus (PDCoV) is a newly emerging and special delta coronavirus, which infect mammals such as pigs, cattle and humans, as well as chickens and birds. Exploring RNA structures in the viral genome benefits the understanding of the role of RNA in the lifecycle of viruses. In this study, vRIC-seq is employed to analyze the RNA-RNA interaction in the whole genome structure of PDCoV in virions. About 12.87 and 13.52 million paired reads are obtained in two biological replicates, respectively, with 17.9% and 14.8% of them are identified as valid chimeric reads. These are employed to predict the RNA secondary structure, which is compact and highly structured. A twisted-cyclized conformation is observed in the RNA-RNA interaction map of PDCoV for the first time. 77 multi-way junctions are evenly distributed in the PDCoV genome. Our work provides fundamental structural insights that are essential for understanding the genomic structure and function, genetic evolution, and packaging characteristics of PDCoV.

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