Comparative susceptibility of SARS-CoV-2, SARS-CoV, and MERS-CoV across mammals.

Meng Li1 Juan Du1,2 Weiqiang Liu1,2 Zihao Li1,2 Fei Lv1,2 Chunyan Hu1,2 Yichen Dai1 Xiaoxiao Zhang1,2 Zhan Zhang1,2 Gaoming Liu1 Qi Pan1,2 Yang Yu3 Xiao Wang1 Pingfen Zhu1 Xu Tan4 Paul A Garber5 Xuming Zhou6
Affiliations 6 institutions
  1. Key Laboratory of Animal Ecology and Conservation Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, 100101, China.
  2. University of Chinese Academy of Sciences, Beijing, 100049, China.
  3. School of Life Sciences, University of Science and Technology of China, Anhui, China.
  4. Beijing Advanced Center for Structural Biology, Beijing Frontier Innovation Center, School of Pharmaceutical Sciences, Tsinghua-Peking Center for Life Sciences, Tsinghua University, 100084, Beijing, China.
  5. Department of Anthropology, Program in Ecology, Evolution, and Conservation Biology, University of Illinois, Urbana, IL, USA.
  6. Key Laboratory of Animal Ecology and Conservation Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, 100101, China. [email protected].

Abstract

Exploring wild reservoirs of pathogenic viruses is critical for their long-term control and for predicting future pandemic scenarios. Here, a comparative in vitro infection analysis was first performed on 83 cell cultures derived from 55 mammalian species using pseudotyped viruses bearing S proteins from SARS-CoV-2, SARS-CoV, and MERS-CoV. Cell cultures from Thomas's horseshoe bats, king horseshoe bats, green monkeys, and ferrets were found to be highly susceptible to SARS-CoV-2, SARS-CoV, and MERS-CoV pseudotyped viruses. Moreover, five variants (del69-70, D80Y, S98F, T572I, and Q675H), that beside spike receptor-binding domain can significantly alter the host tropism of SARS-CoV-2. An examination of phylogenetic signals of transduction rates revealed that closely related taxa generally have similar susceptibility to MERS-CoV but not to SARS-CoV and SARS-CoV-2 pseudotyped viruses. Additionally, we discovered that the expression of 95 genes, e.g., PZDK1 and APOBEC3, were commonly associated with the transduction rates of SARS-CoV, MERS-CoV, and SARS-CoV-2 pseudotyped viruses. This study provides basic documentation of the susceptibility, variants, and molecules that underlie the cross-species transmission of these coronaviruses.

Supporting text Virus Host Location
Chiroptera 371 COVID-19 425 Middle East Respiratory Syndrome Coronavirus 68 Severe acute respiratory syndrome-related coronavirus 78 Animals 1948 Chlorocebus aethiops 70 Ferrets 79 Phylogeny 805 SARS-CoV-2 453

Evidence records

2 total
Experimental Infection
2 records · 1 evidence types
Evidence type
2 records
OVE6682
Key finding

Cell cultures derived from Thomas's horseshoe bats, king horseshoe bats, green monkeys, and ferrets were highly susceptible to SARS-CoV-2, SARS-CoV, and MERS-CoV pseudotyped viruses in controlled in vitro experiments.

Virus
Host
Location
Not specified
Supporting text

Cell cultures from Thomas's horseshoe bats, king horseshoe bats, green monkeys, and ferrets were found to be highly susceptible to SARS-CoV-2, SARS-CoV, and MERS-CoV pseudotyped viruses.

Method
cell culture infection assay | pseudovirus susceptibility assessment
Sample type
cell cultures
Experimental system
in vitro pseudotyped-virus infection system
OVE6681
Key finding

In vitro host-range assays using SARS-CoV-2, SARS-CoV, and MERS-CoV pseudotyped viruses showed variable susceptibility among 83 cell cultures from 55 mammalian species.

Virus
Host
Location
Not specified
Supporting text

A comparative in vitro infection analysis was first performed on 83 cell cultures derived from 55 mammalian species using pseudotyped viruses bearing S proteins from SARS-CoV-2, SARS-CoV, and MERS-CoV.

Method
pseudovirus infection assay | comparative in vitro infection analysis
Sample type
cell cultures
Experimental system
in vitro pseudotyped-virus infection system