|国家预印本平台
首页|Independent evolution of influenza A virus H1N1 in pigs in Guatemala

Independent evolution of influenza A virus H1N1 in pigs in Guatemala

Independent evolution of influenza A virus H1N1 in pigs in Guatemala

来源:bioRxiv_logobioRxiv
英文摘要

Abstract Commercial swine farms provide unique systems for interspecies transmission of influenza A viruses (FLUAVs) at the animal-human interface. Bidirectional transmission of FLUAVs between pigs and humans plays a significant role in the generation of novel strains that become established in the new host population. Active FLUAV surveillance was conducted for two years on a commercial pig farm in Southern Guatemala with no history of FLUAV vaccination. Nasal swabs (n=2,094) from fattening pigs (6 to 24 weeks old) with respiratory signs were collected from May 2016 to February 2018. Swabs were screened for FLUAV by RRT-PCR and full virus genomes of FLUAV-positive swabs were sequenced by next-generation sequencing (NGS). FLUAV prevalence was 12.0% (95% CI: 10.6% – 13.4%) with two distinct periods of high infection. All samples were identified as FLUAVs of the H1N1 subtype within the H1 swine clade 1A.3.3.2 and whose ancestors are the human origin 2009 H1N1 influenza pandemic virus (H1N1 pdm09). Compared to the prototypic reference segment sequence, 10 amino acid signatures were observed on relevant antigenic sites on the hemagglutinin. We also found that Guatemalan swine-origin FLUAVs show independent evolution from other H1N1 pdm09 FLUAVs circulating in Central America. The zoonotic risk of these viruses remains unknown, but strongly calls for continued FLUAV surveillance in pigs in Guatemala. ImportanceDespite increased surveillance efforts, the epidemiology of FLUAVs circulating in swine in Latin America remains understudied. For instance, the 2009 H1N1 influenza pandemic strain (H1N1 pdm09) emerged in Mexico, but its circulation remained undetected in pigs. In Central America, Guatemala is the country with the largest swine industry. We found a unique group of H1N1 pdm09 sequences that suggests independent evolution from similar viruses circulating in Central America. These viruses may represent the establishment of a novel genetic lineage with the potential to reassort with other co-circulating viruses, and whose zoonotic risk remains to be determined.

Mendez Dione、Rajao Daniela、Ferreri Lucas、Geiger Ginger、Ortiz Lucia、Perez Daniel R.、Cordon-Rosales Celia、Moran David、Gonzalez-Reiche Ana Silvia、Alvarez Danilo

Centro de Estudios en Salud, Universidad del Valle de GuatemalaPoultry Diagnostic and Research Center, Department of Population Health, College of Veterinary Medicine, University of GeorgiaDepartment of Microbiology and Immunology, Emory University School of MedicinePoultry Diagnostic and Research Center, Department of Population Health, College of Veterinary Medicine, University of GeorgiaPoultry Diagnostic and Research Center, Department of Population Health, College of Veterinary Medicine, University of Georgia||Centro de Estudios en Salud, Universidad del Valle de GuatemalaPoultry Diagnostic and Research Center, Department of Population Health, College of Veterinary Medicine, University of GeorgiaCentro de Estudios en Salud, Universidad del Valle de GuatemalaCentro de Estudios en Salud, Universidad del Valle de GuatemalaDepartment of Genetics and Genomic Sciences, Icahn School of Medicine at Mount SinaiCentro de Estudios en Salud, Universidad del Valle de Guatemala

10.1101/2022.07.21.501070

微生物学医学研究方法预防医学

swine influenzacommercial farmsurveillanceGuatemala

Mendez Dione,Rajao Daniela,Ferreri Lucas,Geiger Ginger,Ortiz Lucia,Perez Daniel R.,Cordon-Rosales Celia,Moran David,Gonzalez-Reiche Ana Silvia,Alvarez Danilo.Independent evolution of influenza A virus H1N1 in pigs in Guatemala[EB/OL].(2025-03-28)[2025-08-07].https://www.biorxiv.org/content/10.1101/2022.07.21.501070.点此复制

评论