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Microbiol Spectr . Divergent avian strains drive an off-season influenza A peak in municipal wastewater

tetano

Editor, Senior Moderator
Microbiol Spectr

. 2026 Sep 8:e0202726.
doi: 10.1128/spectrum.02027-26. Online ahead of print.

Divergent avian strains drive an off-season influenza A peak in municipal wastewater​


Alexander L Jaffe # 1 , Alessandro Zulli # 1 , Dorothea Duong 2 , Bridgette Shelden 2 , Miriam Goldman 2 , Miles Richardson 2 , Marlene K Wolfe 3 , Alexandria B Boehm 1

Affiliations


Abstract​


Wastewater sequencing is an increasingly valuable tool in tracking the spread of infectious disease agents across space and time in areas of dense human settlement. Among pathogens that can be readily detected by this approach is influenza A, which follows predictable patterns of prevalence through the winter months in North America. Here, we leverage routine surveillance of a municipal wastewater treatment plant in Northern California to describe an atypical, off-season spike in influenza A concentrations that rivals that of the winter respiratory virus season. Drawing upon metagenomic data generated through hybrid-capture sequencing, we assemble and subsequently characterize fragments of divergent influenza genomes that appear to derive predominantly from the avian H16 clade. These strains exhibit close evolutionary relationships to influenza isolated from migratory shorebirds, hinting at potential host species and mechanisms of geographic spread. Analysis of read abundances suggests that these avian strains dominate the pool of influenza circulating during the summer months, when typical human-infecting strains are essentially absent. Together, our results expand the value of wastewater sequencing to encompass sensitive tracking of outbreaks within animals in interface regions where human settlement abuts wildlands, increasing overall pandemic preparedness.IMPORTANCEResearchers now commonly search municipal wastewater for viral genetic material, which can indicate trends in the diversity and abundance of strains circulating in communities. Here, we show that under certain conditions, municipal wastewater can also capture the signatures of viruses circulating among animal populations, such as birds. Specifically, we draw on a targeted form of nucleic acid sequencing to discover a strain of influenza that is fairly genetically distinct from known relatives and may be circulating among shorebirds in Northern California. These findings both broaden the possible use cases of wastewater sequencing and provide new insights into avian viruses, some of which can jump host species to make other animals or people sick.

Keywords: hybrid-capture sequencing; metagenomics; viral genomics; wastewater sequencing.
 
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