Department of Biology, University of Padova, Via U. Bassi 58/b, 35121 Padova, Italy.
Department of Materials, Environmental Sciences and Urban Planning, Polytechnic University of Marche, Via Brecce Bianche, 60131 Ancona, Italy.
Viruses. 2023 Nov 21;15(12):2282. doi: 10.3390/v15122282.
Viruses are the most abundant 'biological entities' in the world's oceans. However, technical and methodological constraints limit our understanding of their diversity, particularly in benthic abyssal ecosystems (>4000 m depth). To verify advantages and limitations of analyzing virome DNA subjected either to random amplification or unamplified, we applied shotgun sequencing-by-synthesis to two sample pairs obtained from benthic abyssal sites located in the North-eastern Atlantic Ocean at ca. 4700 m depth. One amplified DNA sample was also subjected to single-molecule long-read sequencing for comparative purposes. Overall, we identified 24,828 viral Operational Taxonomic Units (vOTUs), belonging to 22 viral families. Viral reads were more abundant in the amplified DNA samples (38.5-49.9%) compared to the unamplified ones (4.4-5.8%), with the latter showing a greater viral diversity and 11-16% of dsDNA viruses almost undetectable in the amplified samples. From a procedural point of view, the viromes obtained by direct sequencing (without amplification step) provided a broader overview of both ss and dsDNA viral diversity. Nevertheless, our results suggest that the contextual use of random amplification of the same sample and long-read technology can improve the assessment of viral assemblages by reducing off-target reads.
病毒是世界海洋中最丰富的“生物实体”。然而,技术和方法上的限制限制了我们对其多样性的理解,特别是在深海海底生态系统(>4000 米深)中。为了验证随机扩增或未扩增的病毒组 DNA 分析的优势和局限性,我们应用合成测序的鸟枪法对从东北大西洋海底深度约 4700 米的两个海底深渊站点获得的两个样本对进行了分析。一个扩增的 DNA 样本也被用于单分子长读测序进行比较。总的来说,我们鉴定了 24828 个病毒操作分类单元(vOTUs),属于 22 个病毒科。与未扩增的样本(4.4-5.8%)相比,扩增的 DNA 样本中的病毒读数更为丰富(38.5-49.9%),后者显示出更高的病毒多样性,而在扩增样本中几乎无法检测到 11-16%的双链 DNA 病毒。从程序的角度来看,直接测序(无扩增步骤)获得的病毒组提供了 ss 和 dsDNA 病毒多样性的更广泛概述。然而,我们的结果表明,对同一样本的随机扩增和长读技术的上下文使用可以通过减少非目标读数来提高病毒组合的评估。