<p>RNA viruses represent an integral component of human-associated environments and human health. However, the ecology of environmental RNA viruses remains largely unexplored. Here, we analyzed 2922 metatranscriptomic samples collected from urban and surrounding environments—including human-dense settings (e.g., transit hubs, hospitals, banks), alongside peri-urban settings — across 102 cities in 31 countries and constructed the Urban &amp; Peri-urban RNA Virus Atlas (UPVAtlas), comprising 54,945 RNA viruses, 77% of which had not been previously observed. Phylogenetic reconstruction based on RNA-dependent RNA polymerases from UPVAtlas greatly expanded the evolutionary diversity of RNA viruses, leading to the identification of two potential candidate phyla, one candidate class, and several unclassified clades. Host association analyses further revealed the ecological complexity of environmental RNA viruses, with the diversity of vertebrate-related and ESKAPE pathogen-related viruses underscoring the importance of continued monitoring of urban environments for tracking RNA viral prevalence and dynamics, with direct relevance to future public health.</p>

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Diversity and distinctive characteristics of the global RNA virome in urban and peri-urban environments

  • Zihao Gao,
  • Jun Wu,
  • Alexander G. Lucaci,
  • Jian Ouyang,
  • Lan Wang,
  • Krista A. Ryon,
  • Eran Elhaik,
  • Alexander J. Probst,
  • Xavier Rodó,
  • Thirumalaisamy P. Velavan,
  • Anastasia Chasapi,
  • Christos A. Ouzounis,
  • Manuela Oliveira,
  • Emmanuel Dias-Neto,
  • Olayinka Osuolale,
  • Michael Poulsen,
  • Dmitry Meleshko,
  • Malay Bhattacharyya,
  • Juan A. Ugalde,
  • Alba Tull,
  • Kathleen H. Rubins,
  • Maria A. Sierra,
  • Braden T. Tierney,
  • Bharath Prithiviraj,
  • Nitesh Kumar Sharma,
  • Viorel Munteanu,
  • Serghei Mangul,
  • Kubra Can Kurt,
  • Masayuki Ushio,
  • Natalia Mazur-Panasiuk,
  • Katarzyna Kopera,
  • Kamila Marszałek,
  • Michał Kowalski,
  • Rodolfo Brizola Toscan,
  • Wojciech Branicki,
  • Krzysztof Pyrć,
  • Paweł P. Łabaj,
  • Balakrishnan Subramanian,
  • Alina Frolova,
  • Joshua G. Burkhart,
  • Youping Deng,
  • Klas I. Udekwu,
  • Lynn M. Schriml,
  • Nur Hazlin Hazrin-Chong,
  • Haruo Suzuki,
  • Patrick K. H. Lee,
  • Antonio Pedro Camargo,
  • Nikos C. Kyrpides,
  • Di Liu,
  • Lin-Fa Wang,
  • Christopher E. Mason,
  • Tieliu Shi,
  • Jacqueline Proszynski,
  • Daniel Brennan,
  • Chris K. Deng,
  • Andrew Wan,
  • Masaki Nasu,
  • Andre Kahles,
  • Eduardo Castro-Nallar,
  • Paula Quiroga,
  • Mariana Massó,
  • Harleen Kaur,
  • Angela Ivask

摘要

RNA viruses represent an integral component of human-associated environments and human health. However, the ecology of environmental RNA viruses remains largely unexplored. Here, we analyzed 2922 metatranscriptomic samples collected from urban and surrounding environments—including human-dense settings (e.g., transit hubs, hospitals, banks), alongside peri-urban settings — across 102 cities in 31 countries and constructed the Urban & Peri-urban RNA Virus Atlas (UPVAtlas), comprising 54,945 RNA viruses, 77% of which had not been previously observed. Phylogenetic reconstruction based on RNA-dependent RNA polymerases from UPVAtlas greatly expanded the evolutionary diversity of RNA viruses, leading to the identification of two potential candidate phyla, one candidate class, and several unclassified clades. Host association analyses further revealed the ecological complexity of environmental RNA viruses, with the diversity of vertebrate-related and ESKAPE pathogen-related viruses underscoring the importance of continued monitoring of urban environments for tracking RNA viral prevalence and dynamics, with direct relevance to future public health.