Panoramic analysis of coronaviruses carried by representative bat species in Southern China to better understand the coronavirus sphere.

Yelin Han1,2,3,4 Panpan Xu1,2,3,4 Yuyang Wang1,2,3,4 Wenliang Zhao1,2,3,4 Junpeng Zhang5 Shuyi Zhang5 Jianwei Wang1 Qi Jin6,7,8 Zhiqiang Wu9,10,11,12
Affiliations 12 institutions
  1. NHC Key Laboratory of Systems Biology of Pathogens, Institute of Pathogen Biology, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.
  2. Key Laboratory of Respiratory Disease Pathogenomics, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.
  3. Key Laboratory of Pathogen Infection Prevention and Control (Peking Union Medical College), Ministry of Education, Beijing, China.
  4. State Key Laboratory of Respiratory Health and Multimorbidity, Chinese Academy of Medical Sciences, Beijing, China.
  5. College of Animal Science and Veterinary Medicine, Shenyang Agricultural University, Shenyang, China.
  6. NHC Key Laboratory of Systems Biology of Pathogens, Institute of Pathogen Biology, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China. [email protected].
  7. Key Laboratory of Pathogen Infection Prevention and Control (Peking Union Medical College), Ministry of Education, Beijing, China. [email protected].
  8. State Key Laboratory of Respiratory Health and Multimorbidity, Chinese Academy of Medical Sciences, Beijing, China. [email protected].
  9. NHC Key Laboratory of Systems Biology of Pathogens, Institute of Pathogen Biology, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China. [email protected].
  10. Key Laboratory of Respiratory Disease Pathogenomics, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China. [email protected].
  11. Key Laboratory of Pathogen Infection Prevention and Control (Peking Union Medical College), Ministry of Education, Beijing, China. [email protected].
  12. State Key Laboratory of Respiratory Health and Multimorbidity, Chinese Academy of Medical Sciences, Beijing, China. [email protected].

Abstract

Bats, recognized as considerable reservoirs for coronaviruses (CoVs), serve as natural hosts for several highly pathogenic CoVs, including SARS-CoV and SARS-CoV-2. Investigating the bat CoV community provides insights into the origin for highly pathogenic CoVs and highlights bat CoVs with potential spillover risks. This study probes the evolution, recombination, host range, geographical distribution, and cross-species transmission characteristics of bat CoVs across China and its associated CoVs in other regions. Through detailed research on 13,064 bat samples from 14 provinces of China, 1141 CoV strains are found across 10 subgenera and one unclassified Alpha-CoV, generating 399 complete genome sequences. Within bat CoVs, 11 new CoV species are identified and 425 recombination events are detected. Bats in southern China, particularly in Yunnan province, exhibit a pronounced diversity of CoVs. Limited sampling and low detection rates exist for CoVs in Myotacovirus, Nyctacovirus, Hibecovirus, Nobecovirus in China. The genus Myotis is highlighted as a potential ancestral host for Alpha-CoV, with the genus Hipposideros suggested as a likely progenitor host for bat-associated Beta-CoV, indicating the complexity of cross-species transmission dynamics. Through the comprehensive analysis, this study enriches the understanding of bat CoVs and offers a valuable resource for future research.

Supporting text Virus Host Location
Alphacoronavirus 29 Chiroptera 371 COVID-19 425 Severe acute respiratory syndrome-related coronavirus 78 Animals 1948 China 229 SARS-CoV-2 453

Evidence records

6 total
Zoonotic Surveillance
3 records · 2 evidence types
Evidence type
1 records
OVE7342
Key finding

Coronaviruses were detected in 13,064 bat samples from 14 provinces of China, yielding 1,141 CoV strains across 10 subgenera and one unclassified Alpha-CoV.

Virus
Host
Location
Supporting text

Through detailed research on 13,064 bat samples from 14 provinces of China, 1141 CoV strains are found across 10 subgenera and one unclassified Alpha-CoV, generating 399 complete genome sequences.

Method
genome sequencing | molecular detection
Sample type
bat samples
Geographic raw
China | 14 provinces
Country inferred
CHN
Evidence type
2 records
OVE7346
Key finding

The bat genus Myotis is identified as a potential ancestral host for Alpha-CoV lineages.

Virus
Host
Location
Not specified
Supporting text

The genus Myotis is highlighted as a potential ancestral host for Alpha-CoV.

Method
phylogenetic analysis | host–virus evolutionary inference
OVE7347
Key finding

The bat genus Hipposideros is suggested as a likely progenitor host for bat-associated Beta-CoVs.

Virus
Host
Location
Not specified
Supporting text

The genus Hipposideros is suggested as a likely progenitor host for bat-associated Beta-CoV.

Method
phylogenetic analysis | host–virus evolutionary inference
Genomic Evolution
3 records · 2 evidence types
Evidence type
1 records
OVE7344
Key finding

Genomic analysis detected 425 recombination events among bat coronaviruses in China.

Virus
Host
Not specified
Location
Not specified
Supporting text

Within bat CoVs, 11 new CoV species are identified and 425 recombination events are detected.

Event type
recombination
Evidence type
2 records
OVE7343
Key finding

Phylogenetic analysis of bat coronaviruses identified 11 new CoV species, indicating evolutionary diversification within bat CoVs in China.

Virus
Host
Location
Not specified
Supporting text

Within bat CoVs, 11 new CoV species are identified and 425 recombination events are detected.

Analysis methods
phylogenetic analysis | genomic analysis
OVE7348
Key finding

Phylogenetic analyses indicate cross-species coronavirus transmission among distinct bat genera, with Myotis linked to Alpha-CoV and Hipposideros linked to Beta-CoV lineages.

Virus
Host
Location
Not specified
Supporting text

The genus Myotis is highlighted as a potential ancestral host for Alpha-CoV, with the genus Hipposideros suggested as a likely progenitor host for bat-associated Beta-CoV, indicating the complexity of cross-species transmission dynamics.

Analysis methods
phylogenetic analysis | comparative genomic study