Transmission of SARS-CoV-2 in domestic cats imposes a narrow bottleneck

Author:

Braun Katarina M.ORCID,Moreno Gage K.ORCID,Halfmann Peter J.,Hodcroft Emma B.ORCID,Baker David A.ORCID,Boehm Emma C.ORCID,Weiler Andrea M.,Haj Amelia K.ORCID,Hatta MasatoORCID,Chiba ShihoORCID,Maemura Tadashi,Kawaoka YoshihiroORCID,Koelle KatiaORCID,O’Connor David H.ORCID,Friedrich Thomas C.ORCID

Abstract

The evolutionary mechanisms by which SARS-CoV-2 viruses adapt to mammalian hosts and, potentially, undergo antigenic evolution depend on the ways genetic variation is generated and selected within and between individual hosts. Using domestic cats as a model, we show that SARS-CoV-2 consensus sequences remain largely unchanged over time within hosts, while dynamic sub-consensus diversity reveals processes of genetic drift and weak purifying selection. We further identify a notable variant at amino acid position 655 in Spike (H655Y), which was previously shown to confer escape from human monoclonal antibodies. This variant arises rapidly and persists at intermediate frequencies in index cats. It also becomes fixed following transmission in two of three pairs. These dynamics suggest this site may be under positive selection in this system and illustrate how a variant can quickly arise and become fixed in parallel across multiple transmission pairs. Transmission of SARS-CoV-2 in cats involved a narrow bottleneck, with new infections founded by fewer than ten viruses. In RNA virus evolution, stochastic processes like narrow transmission bottlenecks and genetic drift typically act to constrain the overall pace of adaptive evolution. Our data suggest that here, positive selection in index cats followed by a narrow transmission bottleneck may have instead accelerated the fixation of S H655Y, a potentially beneficial SARS-CoV-2 variant. Overall, our study suggests species- and context-specific adaptations are likely to continue to emerge. This underscores the importance of continued genomic surveillance for new SARS-CoV-2 variants as well as heightened scrutiny for signatures of SARS-CoV-2 positive selection in humans and mammalian model systems.

Funder

U.S. National Library of Medicine

Wisconsin Partnership Program COVID-19 Response Grant

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

Reference68 articles.

1. Susceptibility of ferrets, cats, dogs, and other domesticated animals to SARS-coronavirus 2;J Shi;Science,2020

2. Comparative pathogenesis of COVID-19, MERS, and SARS in a nonhuman primate model;B Rockx;Science,2020

3. Syrian hamsters as a small animal model for SARS-CoV-2 infection and countermeasure development;M Imai;Proc Natl Acad Sci U S A,2020

4. Infection with novel coronavirus (SARS-CoV-2) causes pneumonia in Rhesus macaques.;C Shan;Cell Res,2020

5. SARS-CoV-2 infection in farmed minks, the Netherlands, April and May 2020.;N Oreshkova;Euro Surveill.,2020

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