Substantial Antigenic Drift in the Hemagglutinin Protein of Swine Influenza A Viruses
VIRUSES-BASEL
Authors: Ryt-Hansen, Pia; Pedersen, Anders Gorm; Larsen, Inge; Kristensen, Charlotte Sonne; Krog, Jesper Schak; Wacheck, Silke; Larsen, Lars Erik
Abstract
The degree of antigenic drift in swine influenza A viruses (swIAV) has historically been regarded as minimal compared to that of human influenza A virus strains. However, as surveillance activities on swIAV have increased, more isolates have been characterized, revealing a high level of genetic and antigenic differences even within the same swIAV lineage. The objective of this study was to investigate the level of genetic drift in one enzootically infected swine herd over one year. Nasal swabs were collected monthly from sows (n = 4) and piglets (n = 40) in the farrowing unit, and from weaners (n = 20) in the nursery. Virus from 1-4 animals were sequenced per month. Analyses of the sequences revealed that the hemagglutinin (HA) gene was the main target for genetic drift with a substitution rate of 7.6 x 10(-3) substitutions/site/year and evidence of positive selection. The majority of the mutations occurred in the globular head of the HA protein and in antigenic sites. The phylogenetic tree of the HA sequences displayed a pectinate typology, where only a single lineage persists and forms the ancestor for subsequent lineages. This was most likely caused by repeated selection of a single immune-escape variant, which subsequently became the founder of the next wave of infections.
Surveillance of European Domestic Pig Populations Identifies an Emerging Reservoir of Potentially Zoonotic Swine Influenza A Viruses
CELL HOST & MICROBE
Authors: Henritzi, Dinah; Petric, Philipp Peter; Lewis, Nicola Sarah; Graaf, Annika; Pessia, Alberto; Starick, Elke; Breithaupt, Angele; Strebelow, Guenter; Luttermann, Christine; Parker, Larissa Mareike Kristin; Schroeder, Charlotte; Hammerschmidt, Baerbel; Herrler, Georg; Beilage, Elisabeth Grosse; Stadlbauer, Daniel; Simon, Viviana; Krammer, Florian; Wacheck, Silke; Pesch, Stefan; Schwemmle, Martin; Beer, Martin; Harder, Timm Clemens
Abstract
Swine influenza A viruses (swIAVs) can play a crucial role in the generation of new human pandemic viruses. In this study, in-depth passive surveillance comprising nearly 2,500 European swine holdings and more than 18,000 individual samples identified a year-round presence of up to four major swIAV lineages on more than 50% of farms surveilled. Phylogenetic analyses show that intensive reassortment with human pandemic A(H1N1)/2009 (H1pdm) virus produced an expanding and novel repertoire of at least 31 distinct swIAV genotypes and 12 distinct hemagglutinin/neuraminidase combinations with largely unknown consequences for virulence and host tropism. Several viral isolates were resistant to the human antiviral MxA protein, a prerequisite for zoonotic transmission and stable introduction into human populations. A pronounced antigenic variation was noted in swIAV, and several H1pdm lineages antigenically distinct from current seasonal human H1pdm co-circulate in swine. Thus, European swine populations represent reservoirs for emerging IAV strains with zoonotic and, possibly, pre-pandemic potential.