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Genetic Characterization of Betacoronavirus Lineage C Viruses in Bats Reveals Marked Sequence Divergence in the Spike Protein of Pipistrellus Bat Coronavirus HKU5 in Japanese Pipistrelle: Implications for the Origin of the Novel Middle East Respiratory Syndrome Coronavirus

Susanna K. P. Lau Kenneth S. M. Li Alan K. L. Tsang Carol S. F. Lam Shakeel Ahmed Honglin Chen Kwok‐Hung Chan Patrick C. Y. Woo Kwok‐Yung Yuen

刊行年
2013-05-30
収録
『Journal of Virology』 87(15) pp. 8638-8650
出版
American Society for Microbiology
言語
英語
OpenAlex
W1986942052
DOI
10.1128/jvi.01055-13
PubMed
23720729
MAG
1986942052
ISSN
0022-538X
URL
https://www.ncbi.nlm.nih.gov/pmc/articles/3719811

要旨

While the novel Middle East respiratory syndrome coronavirus (MERS-CoV) is closely related to Tylonycteris bat CoV HKU4 (Ty-BatCoV HKU4) and Pipistrellus bat CoV HKU5 (Pi-BatCoV HKU5) in bats from Hong Kong, and other potential lineage C betacoronaviruses in bats from Africa, Europe, and America, its animal origin remains obscure. To better understand the role of bats in its origin, we examined the molecular epidemiology and evolution of lineage C betacoronaviruses among bats. Ty-BatCoV HKU4 and Pi-BatCoV HKU5 were detected in 29% and 25% of alimentary samples from lesser bamboo bat (Tylonycteris pachypus) and Japanese pipistrelle (Pipistrellus abramus), respectively. Sequencing of their RNA polymerase (RdRp), spike (S), and nucleocapsid (N) genes revealed that MERS-CoV is more closely related to Pi-BatCoV HKU5 in RdRp (92.1% to 92.3% amino acid [aa] identity) but is more closely related to Ty-BatCoV HKU4 in S (66.8% to 67.4% aa identity) and N (71.9% to 72.3% aa identity). Although both viruses were under purifying selection, the S of Pi-BatCoV HKU5 displayed marked sequence polymorphisms and more positively selected sites than that of Ty-BatCoV HKU4, suggesting that Pi-BatCoV HKU5 may generate variants to occupy new ecological niches along with its host in diverse habitats. Molecular clock analysis showed that they diverged from a common ancestor with MERS-CoV at least several centuries ago. Although MERS-CoV may have diverged from potential lineage C betacoronaviruses in European bats more recently, these bat viruses were unlikely to be the direct ancestor of MERS-CoV. Intensive surveillance for lineage C betaCoVs in Pipistrellus and related bats with diverse habitats and other animals in the Middle East may fill the evolutionary gap.

主題

この書誌の出所

  • openalex— W1986942052(2026-08-14取得)

引用

Susanna K. P. Lau・Kenneth S. M. Li・Alan K. L. Tsang・Carol S. F. Lam・Shakeel Ahmed・Honglin Chen・Kwok‐Hung Chan・Patrick C. Y. Woo・Kwok‐Yung Yuen(2013-05-30) Genetic Characterization of Betacoronavirus Lineage C Viruses in Bats Reveals Marked Sequence Divergence in the Spike Protein of Pipistrellus Bat Coronavirus HKU5 in Japanese Pipistrelle: Implications for the Origin of the Novel Middle East Respiratory Syndrome Coronavirus 『Journal of Virology』 87(15) pp. 8638-8650 American Society for Microbiology

Lau2013GeneticCharacterizationBetacoronavirus
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