Erazo-Garcia Maria P, Sheyn Uri, Barth Zachary K, Craig Rory J, Wessman Petronella, Jivaji Abdeali M, Ray W Keith, Svensson-Coelho Maria, Cornwallis Charlie K, Rengefors Karin, Brussaard Corina P D, Moniruzzaman Mohammad, Aylward Frank O
Department of Biological Sciences, Virginia Tech; Blacksburg, 24061, USA.
Department of Algal Development and Evolution, Max Planck Institute for Biology Tübingen; Tübingen, 72076, Germany.
bioRxiv. 2024 Sep 3:2024.09.03.611062. doi: 10.1101/2024.09.03.611062.
Latency is a common strategy in a wide range of viral lineages, but its prevalence in giant viruses remains unknown. Here we describe the activity and viral production from a 617 kbp integrated giant viral element in the model green alga . We resolve the integrated viral region using long-read sequencing and show that viral particles are produced and released in otherwise healthy cultures. A diverse array of viral-encoded selfish genetic elements are expressed during GEVE reactivation and produce proteins that are packaged in virions. In addition, we show that field isolates of sp. harbor latent giant viruses related to the GEVE that exhibit similar infection dynamics, demonstrating that giant virus latency is prevalent in natural host communities. Our work reports the largest temperate virus documented to date and the first active GEVE identified in a unicellular eukaryote, substantially expanding the known limits of viral latency.
潜伏期是广泛的病毒谱系中常见的一种策略,但在巨型病毒中的流行程度尚不清楚。在这里,我们描述了模式绿藻中一个617千碱基对整合巨型病毒元件的活性和病毒产生情况。我们使用长读长测序解析了整合的病毒区域,并表明在其他方面健康的培养物中会产生并释放病毒颗粒。在GEVE重新激活期间,多种病毒编码的自私遗传元件被表达,并产生包装在病毒粒子中的蛋白质。此外,我们表明,sp. 的野外分离株携带与GEVE相关的潜伏巨型病毒,表现出相似的感染动态,这表明巨型病毒潜伏期在自然宿主群落中很普遍。我们的工作报道了迄今为止记录的最大的温和病毒以及在单细胞真核生物中鉴定出的第一个活跃的GEVE,极大地扩展了已知的病毒潜伏期范围。