Discovery of a rich gene pool of bat SARS-related coronaviruses provides new insights into the origin of SARS coronavirus.

Ben Hu1 Lei-Ping Zeng1 Xing-Lou Yang1 Xing-Yi Ge1 Wei Zhang1 Bei Li1 Jia-Zheng Xie1 Xu-Rui Shen1 Yun-Zhi Zhang2,3 Ning Wang1 Dong-Sheng Luo1 Xiao-Shuang Zheng1 Mei-Niang Wang1 Peter Daszak4 Lin-Fa Wang5 Jie Cui1 Zheng-Li Shi1
Affiliations 5 institutions
  1. CAS Key Laboratory of Special Pathogens and Biosafety, Center for Emerging Infectious Diseases of Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan, China.
  2. Yunnan Institute of Endemic Diseases Control and Prevention, Dali, China.
  3. Dali University, Dali, China.
  4. EcoHealth Alliance, New York, New York, United States of America.
  5. Programme in Emerging Infectious Diseases, Duke-NUS Medical School, Singapore.

Abstract

A large number of SARS-related coronaviruses (SARSr-CoV) have been detected in horseshoe bats since 2005 in different areas of China. However, these bat SARSr-CoVs show sequence differences from SARS coronavirus (SARS-CoV) in different genes (S, ORF8, ORF3, etc) and are considered unlikely to represent the direct progenitor of SARS-CoV. Herein, we report the findings of our 5-year surveillance of SARSr-CoVs in a cave inhabited by multiple species of horseshoe bats in Yunnan Province, China. The full-length genomes of 11 newly discovered SARSr-CoV strains, together with our previous findings, reveals that the SARSr-CoVs circulating in this single location are highly diverse in the S gene, ORF3 and ORF8. Importantly, strains with high genetic similarity to SARS-CoV in the hypervariable N-terminal domain (NTD) and receptor-binding domain (RBD) of the S1 gene, the ORF3 and ORF8 region, respectively, were all discovered in this cave. In addition, we report the first discovery of bat SARSr-CoVs highly similar to human SARS-CoV in ORF3b and in the split ORF8a and 8b. Moreover, SARSr-CoV strains from this cave were more closely related to SARS-CoV in the non-structural protein genes ORF1a and 1b compared with those detected elsewhere. Recombination analysis shows evidence of frequent recombination events within the S gene and around the ORF8 between these SARSr-CoVs. We hypothesize that the direct progenitor of SARS-CoV may have originated after sequential recombination events between the precursors of these SARSr-CoVs. Cell entry studies demonstrated that three newly identified SARSr-CoVs with different S protein sequences are all able to use human ACE2 as the receptor, further exhibiting the close relationship between strains in this cave and SARS-CoV. This work provides new insights into the origin and evolution of SARS-CoV and highlights the necessity of preparedness for future emergence of SARS-like diseases.

Supporting text Virus Host Location
Gene Pool 1 Amino Acid Sequence 128 Animals 1948 Chiroptera 371 Coronavirus Infections 171 Evolution, Molecular 176 Genome, Viral 317 Humans 1440 Recombination, Genetic 59 Severe Acute Respiratory Syndrome 22 Severe acute respiratory syndrome-related coronavirus 78

Evidence records

3 total
Zoonotic Surveillance
1 records · 1 evidence types
Evidence type
1 records
OVE11402
Key finding

SARS-related coronaviruses were detected and genomically characterized from horseshoe bats in a cave in Yunnan Province, China.

Virus
Host
Location
Supporting text

Herein, we report the findings of our 5-year surveillance of SARSr-CoVs in a cave inhabited by multiple species of horseshoe bats in Yunnan Province, China.

Method
surveillance | genomic characterization | sequencing
Sample type
bat samples | cave surveillance specimens
Geographic raw
Yunnan Province, China
Country inferred
CHN
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE11404
Key finding

Three newly identified bat SARS-related coronaviruses were experimentally shown to use human ACE2 as the receptor for viral entry.

Virus
Host
Location
Not specified
Supporting text

Cell entry studies demonstrated that three newly identified SARSr-CoVs with different S protein sequences are all able to use human ACE2 as the receptor.

Method
cell entry study | receptor usage assay
Receptors
human ACE2
Genomic Evolution
1 records · 1 evidence types
Evidence type
1 records
OVE11403
Key finding

Frequent recombination events within the S gene and around ORF8 occurred among bat SARS-related coronaviruses from Yunnan Province.

Virus
Host
Not specified
Location
Not specified
Supporting text

Recombination analysis shows evidence of frequent recombination events within the S gene and around the ORF8 between these SARSr-CoVs.

Event type
recombination
Genes or segments
S gene | ORF8