Genomic surveillance reveals dynamic shifts in the connectivity of COVID-19 epidemics

生物 大流行 2019年冠状病毒病(COVID-19) 进化生物学 2019-20冠状病毒爆发 严重急性呼吸综合征冠状病毒2型(SARS-CoV-2) 病毒学 计算生物学 遗传学 爆发 传染病(医学专业) 疾病 医学 病理
作者
Nathaniel L. Matteson,Gabriel W. Hassler,Ezra Kurzban,Madison A. Schwab,Sarah A. Perkins,Karthik Gangavarapu,Joshua I. Levy,Edyth Parker,David T. Pride,Abbas Hakim,Peter De Hoff,Willi Cheung,Anelizze Castro-Martínez,Andrea Rivera,Anthony Veder,Ariana Rivera,Cassandra Wauer,Jacqueline Holmes,Jedediah Wilson,Shayla N. Ngo,Ashley Plascencia,Elijah S. Lawrence,Elizabeth W. Smoot,Emily Eisner,Rebecca Tsai,Marisol Chacón,Nathan A. Baer,Phoebe Seaver,Rodolfo A. Salido,Stefan Aigner,Toan T. Ngo,Tom Barber,Tyler Ostrander,Rebecca Fielding‐Miller,Elizabeth H. Simmons,Oscar E. Zazueta,Idanya Serafin-Higuera,Manuel Sanchez‐Alavez,José L. Moreno-Camacho,Abraham García-Gil,Ashleigh R. Murphy Schafer,Eric McDonald,Jeremy Corrigan,John D. Malone,Sarah Stous,Seema Shah,Niema Moshiri,Alana Weiss,Catelyn Anderson,Christine M. Aceves,Emily Spencer,Emory Hufbauer,Justin Lee,Alison J. King,Karthik Ramesh,Kelly N. Nguyen,Kieran Saucedo,Refugio Robles‐Sikisaka,Kathleen M. Fisch,Steven L. Gonias,Amanda Birmingham,Daniel McDonald,Smruthi Karthikeyan,Natasha K. Martin,Robert T. Schooley,Agustin J. Negrete,Horacio J. Reyna,Jose R. Chavez,María L. García,José Manuel Cornejo‐Bravo,David G. Becker,Magnus Isaksson,Nicole L. Washington,William Lee,Richard S. Garfein,Marco A. Luna-Ruiz Esparza,Jonathan Alcántar‐Fernández,Benjamin Henson,Kristen Jepsen,Beatriz Olivares-Flores,Gisela Barrera-Badillo,Irma López‐Martínez,José Ernesto Ramírez–González,Rita Flores-León,Stephen F. Kingsmore,Alison Sanders,Allorah Pradenas,Benjamin L. White,Gary Matthews,Matt Hale,Ronald W. McLawhon,Sharon L. Reed,Terri Winbush,Ian McHardy,Russel A. Fielding,Laura Nicholson,Michael Quigley,Aaron Harding,Art Mendoza,Omid Bakhtar,Sara H. Browne,Jocelyn Olivas Flores,Diana G. Rincon Rodríguez,Martin Gonzalez Ibarra,Luis C. Robles Ibarra,Betsy J. Arellano Vera,Juan González‐García,Alicia Vera,Rob Knight,Louise C. Laurent,G Yeo,Joel O. Wertheim,Xiang Ji,Michael Worobey,Marc A. Suchard,Kristian G. Andersen,Abraham Campos‐Romero,Shirlee Wohl,Mark Zeller
出处
期刊:Cell [Elsevier]
卷期号:186 (26): 5690-5704.e20 被引量:4
标识
DOI:10.1016/j.cell.2023.11.024
摘要

The maturation of genomic surveillance in the past decade has enabled tracking of the emergence and spread of epidemics at an unprecedented level. During the COVID-19 pandemic, for example, genomic data revealed that local epidemics varied considerably in the frequency of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) lineage importation and persistence, likely due to a combination of COVID-19 restrictions and changing connectivity. Here, we show that local COVID-19 epidemics are driven by regional transmission, including across international boundaries, but can become increasingly connected to distant locations following the relaxation of public health interventions. By integrating genomic, mobility, and epidemiological data, we find abundant transmission occurring between both adjacent and distant locations, supported by dynamic mobility patterns. We find that changing connectivity significantly influences local COVID-19 incidence. Our findings demonstrate a complex meaning of "local" when investigating connected epidemics and emphasize the importance of collaborative interventions for pandemic prevention and mitigation.
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