Bolduc Benjamin, Zablocki Olivier, Guo Jiarong, Zayed Ahmed A, Vik Dean, Dehal Paramvir, Wood-Charlson Elisha M, Arkin Adam, Merchant Nirav, Pett-Ridge Jennifer, Roux Simon, Vaughn Matthew, Sullivan Matthew B
Department of Microbiology, The Ohio State University, Columbus, OH, USA.
Center of Microbiome Science, Columbus, OH, USA.
ISME Commun. 2021 Dec 14;1(1):77. doi: 10.1038/s43705-021-00083-3.
Microbes drive myriad ecosystem processes, but under strong influence from viruses. Because studying viruses in complex systems requires different tools than those for microbes, they remain underexplored. To combat this, we previously aggregated double-stranded DNA (dsDNA) virus analysis capabilities and resources into 'iVirus' on the CyVerse collaborative cyberinfrastructure. Here we substantially expand iVirus's functionality and accessibility, to iVirus 2.0, as follows. First, core iVirus apps were integrated into the Department of Energy's Systems Biology KnowledgeBase (KBase) to provide an additional analytical platform. Second, at CyVerse, 20 software tools (apps) were upgraded or added as new tools and capabilities. Third, nearly 20-fold more sequence reads were aggregated to capture new data and environments. Finally, documentation, as "live" protocols, was updated to maximize user interaction with and contribution to infrastructure development. Together, iVirus 2.0 serves as a uniquely central and accessible analytical platform for studying how viruses, particularly dsDNA viruses, impact diverse microbial ecosystems.
微生物驱动着无数的生态系统过程,但受到病毒的强烈影响。由于在复杂系统中研究病毒需要与研究微生物不同的工具,因此它们仍未得到充分探索。为了解决这个问题,我们之前将双链DNA(dsDNA)病毒分析能力和资源整合到CyVerse协作网络基础设施上的“iVirus”中。在此,我们将iVirus的功能和可及性大幅扩展到iVirus 2.0,具体如下。首先,核心iVirus应用程序被集成到美国能源部的系统生物学知识库(KBase)中,以提供一个额外的分析平台。其次,在CyVerse,20个软件工具(应用程序)得到升级或作为新工具和功能添加进来。第三,汇总了近20倍的序列读数,以获取新的数据和环境。最后,作为“实时”协议的文档进行了更新,以最大限度地促进用户与基础设施开发的互动并做出贡献。总之,iVirus 2.0是一个独特的核心且易于使用的分析平台,用于研究病毒,特别是dsDNA病毒,如何影响多样的微生物生态系统。