Identification and genetic characterization of five novel bat coronaviruses from Yunnan, China.

Qian Li1,2 Yutong Hou1 Baoyang Huang1 Xiang Le1 Binghui Wang3,4 Xueshan Xia5,6
Affiliations 6 institutions
  1. Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, Yunnan, 650500, P. R. China.
  2. The First Affiliated Hospital & Clinical Medical College, Dali University, Dali, Yunnan, 671000, P. R. China.
  3. Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, Yunnan, 650500, P. R. China. [email protected].
  4. Yunnan Province Key Laboratory of Public Health and Biosafety & School of Public Health, Kunming Medical University, Kunming, Yunnan, 650500, P. R. China. [email protected].
  5. Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, Yunnan, 650500, P. R. China. [email protected].
  6. Yunnan Province Key Laboratory of Public Health and Biosafety & School of Public Health, Kunming Medical University, Kunming, Yunnan, 650500, P. R. China. [email protected].

Abstract

Coronaviruses (CoVs) represent a serious threat to human health and have become a major transmissible, endemic, and causative pathogen in humans; they represent a major health concern, given their ability to cause infectious diseases. Bats are natural hosts for diverse viruses. Many transmission events of CoVs and identification of multiple novel CoVs in bats has increased attention towards their capacity to serve as hosts for zoonotic viruses. In this study, 61 bats from Yunnan Province were analyzed, identifying seven CoVs, including three α- and two β-CoVs with full-genome sequences. Among the five identified alpha-CoVs, four belong to the Decacovirus subgenus and one to the Minunacovirus subgenus. Two beta-CoVs were also identified, both belonging to the Sarbecovirus subgenus.The genetic structures revealed similarities to known strains such as HKU10 and SARS-CoV-2, along with novel findings such as the Minunacovirus subgenus CoV YJ3c/f and unique ORF patterns. Our results demonstrated that strain JCC9 has a unique recombination pattern and shows a higher binding affinity to civet and pangolin ACE2 receptors, then the HpJC8xc strain transmits and recombines between hosts (bats), indicating a potential risk of crossing the interspecies barrier and infecting other animals. The CoVs detected in the bats studied in this research exhibit high diversity. Genomic analysis revealed that CoVs in bats undergo frequent recombination events. Furthermore, recombination patterns and evolutionary analyses suggest that alpha-CoVs are more prone to cross-species transmission across different bat families/genera, whereas beta-CoVs demonstrate host specificity and tend to co-evolve with their bat hosts.Our finding suggest that bats, as hosts of CoVs, be constantly monitored to prevent outbreaks of new infections caused by viruses passing across interspecies barriers, and consequently, viral diseases in humans or livestock.

Supporting text Virus Host Location
Bats 46 Characterization 2 Coronaviruses 32 Transmission 55 Yunnan 1 Chiroptera 371 Coronavirus 92 Genome, Viral 317 Phylogeny 805 Animals 1948 China 229 Coronavirus Infections 171

Evidence records

5 total
Zoonotic Surveillance
1 records · 1 evidence types
Evidence type
1 records
OVE8455
Key finding

Seven coronaviruses, including three alpha- and two beta-CoVs, were detected and identified from 61 bats sampled in Yunnan Province.

Virus
Host
Location
Supporting text

In this study, 61 bats from Yunnan Province were analyzed, identifying seven CoVs, including three α- and two β-CoVs with full-genome sequences.

Method
genome sequencing | molecular detection
Sample type
bat samples
Geographic raw
Yunnan Province
Country inferred
CHN
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
Genomic Evolution
3 records · 2 evidence types
Evidence type
1 records
OVE8456
Key finding

Bat coronavirus strain JCC9 from Yunnan exhibited a unique genome-wide recombination pattern identified by sequence analysis.

Virus
Host
Not specified
Location
Not specified
Supporting text

Our results demonstrated that strain JCC9 has a unique recombination pattern ...

Event type
recombination
Evidence type
2 records
OVE8459
Key finding

Phylogenetic analyses indicated that alpha-CoVs show a higher tendency for cross-species transmission among bat families and genera, while beta-CoVs exhibit host specificity and co-evolution with their bat hosts.

Virus
Host
Location
Not specified
Supporting text

Recombination patterns and evolutionary analyses suggest that alpha-CoVs are more prone to cross-species transmission across different bat families/genera, whereas beta-CoVs demonstrate host specificity and tend to co-evolve with their bat hosts.

Analysis methods
genomic analysis | phylogenetic analysis | evolutionary analysis
OVE8458
Key finding

The HpJC8xc strain was reported to transmit and recombine between bat hosts, suggesting cross-species transmission among bats in Yunnan.

Virus
Host
Location
Supporting text

The HpJC8xc strain transmits and recombines between hosts (bats), indicating a potential risk of crossing the interspecies barrier ...

Analysis methods
genome sequencing | recombination analysis