Broad Cross-Species Infection of Cultured Cells by Bat HKU2-Related Swine Acute Diarrhea Syndrome Coronavirus and Identification of Its Replication in Murine Dendritic Cells In Vivo Highlight Its Potential for Diverse Interspecies Transmission.

Yong-Le Yang1 Pan Qin1 Bin Wang1 Yan Liu1 Guo-Han Xu1 Lei Peng1 Jiyong Zhou1 Shu Jeffrey Zhu2 Yao-Wei Huang2
Affiliations 2 institutions
  1. Key Laboratory of Animal Virology of Ministry of Agriculture, Institute of Preventive Veterinary Medicine, Department of Veterinary Medicine, Zhejiang University, Hangzhou, Zhejiang, China.
  2. Key Laboratory of Animal Virology of Ministry of Agriculture, Institute of Preventive Veterinary Medicine, Department of Veterinary Medicine, Zhejiang University, Hangzhou, Zhejiang, China [email protected] [email protected].

Abstract

Outbreaks of severe diarrhea in neonatal piglets in Guangdong, China, in 2017 resulted in the isolation and discovery of a novel swine enteric alphacoronavirus (SeACoV) derived from the species Rhinolophus bat coronavirus HKU2 (Y. Pan, X. Tian, P. Qin, B. Wang, et al., Vet Microbiol 211:15-21, 2017). SeACoV was later referred to as swine acute diarrhea syndrome CoV (SADS-CoV) by another group (P. Zhou, H. Fan, T. Lan, X.-L. Yang, et al., Nature 556:255-258, 2018). The present study was set up to investigate the potential species barriers of SADS-CoV in vitro and in vivo We first demonstrated that SADS-CoV possesses a broad species tropism and is able to infect cell lines from diverse species, including bats, mice, rats, gerbils, hamsters, pigs, chickens, nonhuman primates, and humans. Trypsin contributes to but is not essential for SADS-CoV propagation in vitro Furthermore, C57BL/6J mice were inoculated with the virus via oral or intraperitoneal routes. Although the mice exhibited only subclinical infection, they supported viral replication and prolonged infection in the spleen. SADS-CoV nonstructural proteins and double-stranded RNA were detected in splenocytes of the marginal zone on the edge of lymphatic follicles, indicating active replication of SADS-CoV in the mouse model. We identified that splenic dendritic cells (DCs) are the major targets of virus infection by immunofluorescence and flow cytometry approaches. Finally, we demonstrated that SADS-CoV does not utilize known CoV receptors for cellular entry. The ability of SADS-CoV to replicate in various cells lines from a broad range of species and the unexpected tropism for murine DCs provide important insights into the biology of this bat-origin CoV, highlighting its possible ability to cross interspecies barriers.IMPORTANCE Infections with bat-origin coronaviruses (CoVs) (severe acute respiratory syndrome CoV [SARS-CoV] and Middle East respiratory syndrome CoV [MERS-CoV]) have caused severe illness in humans after "host jump" events. Recently, a novel bat-HKU2-like CoV named swine acute diarrhea syndrome CoV (SADS-CoV) has emerged in southern China, causing lethal diarrhea in newborn piglets. It is important to assess the species barriers of SADS-CoV infection since the animal hosts (other than pigs and bats) and zoonotic potential are still unknown. An in vitro susceptibility study revealed a broad species tropism of SADS-CoV, including various rodent and human cell lines. We established a mouse model of SADS-CoV infection, identifying its active replication in splenic dendritic cells, which suggests that SADS-CoV has the potential to infect rodents. These findings highlight the potential cross-species transmissibility of SADS-CoV, although further surveillance in other animal populations is needed to fully understand the ecology of this bat-HKU2-origin CoV.

Supporting text Virus Host Location
Coronavirus 195 interspecies transmission 51 mouse infection model 2 SADS-CoV 3 Alphacoronavirus 29 Animals 1948 Cell Line 158 Cells, Cultured 26 Chickens 146 China 229 Chiroptera 371 Coronavirus Infections 171 Cross Infection 3 Dendritic Cells 6 Diarrhea 29 Disease Models, Animal 77 Female 289 Humans 1440 Male 224 Mice 253 Mice, Inbred C57BL 21 Middle East Respiratory Syndrome Coronavirus 68 Rats 73 Severe Acute Respiratory Syndrome 22

Evidence records

2 total
Experimental Infection
2 records · 1 evidence types
Evidence type
2 records
OVE3447
Key finding

SADS-CoV was experimentally shown to infect cell lines derived from bats, mice, rats, gerbils, hamsters, pigs, chickens, nonhuman primates, and humans, demonstrating a broad species tropism.

Virus
Host
Location
Not specified
Supporting text

We first demonstrated that SADS-CoV possesses a broad species tropism and is able to infect cell lines from diverse species, including bats, mice, rats, gerbils, hamsters, pigs, chickens, nonhuman primates, and humans.

Method
cell culture infection assay | virus propagation | tropism testing
Sample type
cell lines
Experimental system
in vitro cell-culture infection system
OVE3448
Key finding

C57BL/6J mice inoculated with SADS-CoV supported active viral replication and prolonged infection in the spleen under laboratory challenge conditions.

Virus
Host
Location
Not specified
Supporting text

C57BL/6J mice were inoculated with SADS-CoV via oral or intraperitoneal routes. Although the mice exhibited only subclinical infection, they supported viral replication and prolonged infection in the spleen.

Method
animal inoculation | virus replication assay | tissue analysis
Sample type
spleen
Experimental system
mouse in vivo infection model