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Integrative omics analysis of Pseudomonas aeruginosa virus PA5oct highlights the molecular complexity of jumbo phages

机译:铜绿假单胞菌病毒PA5Oct的综合OMICS分析突出了巨型噬菌体的分子复杂性

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摘要

Pseudomonas virus vB_PaeM_PA5oct is proposed as a model jumbo bacteriophage to investigate phage-bacteria interactions and is a candidate for phage therapy applications. Combining hybrid sequencing, RNA-Seq and mass spectrometry allowed us to accurately annotate its 286,783 bp genome with 461 coding regions including four non-coding RNAs (ncRNAs) and 93 virion-associated proteins. PA5oct relies on the host RNA polymerase for the infection cycle and RNA-Seq revealed a gradual take-over of the total cell transcriptome from 21% in early infection to 93% in late infection. PA5oct is not organized into strictly contiguous regions of temporal transcription, but some genomic regions transcribed in early, middle and late phases of infection can be discriminated. Interestingly, we observe regions showing limited transcription activity throughout the infection cycle. We show that PA5oct upregulates specific bacterial operons during infection including operons pncA-pncB1-nadE involved in NAD biosynthesis, psl for exopolysaccharide biosynthesis and nap for periplasmic nitrate reductase production. We also observe a downregulation of T4P gene products suggesting mechanisms of superinfection exclusion. We used the proteome of PA5oct to position our isolate amongst other phages using a gene-sharing network. This integrative omics study illustrates the molecular diversity of jumbo viruses and raises new questions towards cellular regulation and phage-encoded hijacking mechanisms.
机译:Pseudomonas病毒VB_PAEM_PA5OCT被提出为巨型巨型噬菌体,以研究噬菌体 - 细菌相互作用,是噬菌体治疗应用的候选者。结合杂化测序,RNA-SEQ和质谱允许我们用461个编码区域准确地注释其286,783bp基因组,包括四个非编码RNA(NCRNA)和93天病相关蛋白。 PA5Oct依赖于感染循环的宿主RNA聚合酶,RNA-SEQ将总细胞转录组的逐渐接管从早期感染的21%中显示为晚期感染的93%。 PA5OCT未被组织成严格连续的时间转录区域,但可以区分在感染的早期,中期和晚期阶段转录的一些基因组区域。有趣的是,观察在整个感染周期内显示有限的转录活动的区域。我们表明PA5OCT在感染过程中提出了特异性细菌操纵子,包括参与NAD生物合成的操作源PNCA-PNCB1-NADE,用于外质硝酸盐还原酶生产的PSL。我们还观察到T4P基因产物的下调,表明SuperInfection排除机制。我们使用PA5Oct的蛋白质组来使用基因共享网络在其他噬菌体中定位我们的隔离物。这种综合的OMICS研究说明了Jumbo病毒的分子多样性,并对蜂窝调节和噬菌体编码的劫持机制提出了新问题。

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