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Severe Acute Respiratory Syndrome Coronavirus-Like Virus in Chinese Horseshoe Bats
by
Beatrice H. L. Wong
, Tsui, Lap-Chee
, Tsoi, Hoi-Wah
, Kenneth S. M. Li
, Leung, Suet-Yi
, Susanna K. P. Lau
, Chan, Kwok-Hung
, Huang, Yi
, Samson S. Y. Wong
, Patrick C. Y. Woo
, Yuen, Kwok-Yung
in
Amino Acid Sequence
/ Animal diseases
/ Animals
/ Antibodies
/ Base Sequence
/ Bats
/ Biological Sciences
/ Chiroptera - virology
/ Genome, Viral
/ Genomes
/ Hong Kong
/ Humans
/ Microbiology
/ Molecular Sequence Data
/ Open reading frames
/ Phylogeny
/ Reverse transcriptase polymerase chain reaction
/ Rhinolophus sinicus
/ SARS coronavirus
/ SARS virus
/ Sequence Analysis, DNA
/ Severe acute respiratory syndrome
/ Severe acute respiratory syndrome-related coronavirus - classification
/ Severe acute respiratory syndrome-related coronavirus - genetics
/ Severe acute respiratory syndrome-related coronavirus - isolation & purification
/ Viral Proteins - blood
/ Viral Proteins - genetics
/ Viruses
/ Wild animals
2005
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Severe Acute Respiratory Syndrome Coronavirus-Like Virus in Chinese Horseshoe Bats
by
Beatrice H. L. Wong
, Tsui, Lap-Chee
, Tsoi, Hoi-Wah
, Kenneth S. M. Li
, Leung, Suet-Yi
, Susanna K. P. Lau
, Chan, Kwok-Hung
, Huang, Yi
, Samson S. Y. Wong
, Patrick C. Y. Woo
, Yuen, Kwok-Yung
in
Amino Acid Sequence
/ Animal diseases
/ Animals
/ Antibodies
/ Base Sequence
/ Bats
/ Biological Sciences
/ Chiroptera - virology
/ Genome, Viral
/ Genomes
/ Hong Kong
/ Humans
/ Microbiology
/ Molecular Sequence Data
/ Open reading frames
/ Phylogeny
/ Reverse transcriptase polymerase chain reaction
/ Rhinolophus sinicus
/ SARS coronavirus
/ SARS virus
/ Sequence Analysis, DNA
/ Severe acute respiratory syndrome
/ Severe acute respiratory syndrome-related coronavirus - classification
/ Severe acute respiratory syndrome-related coronavirus - genetics
/ Severe acute respiratory syndrome-related coronavirus - isolation & purification
/ Viral Proteins - blood
/ Viral Proteins - genetics
/ Viruses
/ Wild animals
2005
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Severe Acute Respiratory Syndrome Coronavirus-Like Virus in Chinese Horseshoe Bats
by
Beatrice H. L. Wong
, Tsui, Lap-Chee
, Tsoi, Hoi-Wah
, Kenneth S. M. Li
, Leung, Suet-Yi
, Susanna K. P. Lau
, Chan, Kwok-Hung
, Huang, Yi
, Samson S. Y. Wong
, Patrick C. Y. Woo
, Yuen, Kwok-Yung
in
Amino Acid Sequence
/ Animal diseases
/ Animals
/ Antibodies
/ Base Sequence
/ Bats
/ Biological Sciences
/ Chiroptera - virology
/ Genome, Viral
/ Genomes
/ Hong Kong
/ Humans
/ Microbiology
/ Molecular Sequence Data
/ Open reading frames
/ Phylogeny
/ Reverse transcriptase polymerase chain reaction
/ Rhinolophus sinicus
/ SARS coronavirus
/ SARS virus
/ Sequence Analysis, DNA
/ Severe acute respiratory syndrome
/ Severe acute respiratory syndrome-related coronavirus - classification
/ Severe acute respiratory syndrome-related coronavirus - genetics
/ Severe acute respiratory syndrome-related coronavirus - isolation & purification
/ Viral Proteins - blood
/ Viral Proteins - genetics
/ Viruses
/ Wild animals
2005
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Severe Acute Respiratory Syndrome Coronavirus-Like Virus in Chinese Horseshoe Bats
Journal Article
Severe Acute Respiratory Syndrome Coronavirus-Like Virus in Chinese Horseshoe Bats
2005
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Overview
Although the finding of severe acute respiratory syndrome coronavirus (SARS-CoV) in caged palm civets from live animal markets in China has provided evidence for interspecies transmission in the genesis of the SARS epidemic, subsequent studies suggested that the civet may have served only as an amplification host for SARS-CoV. In a surveillance study for CoV in noncaged animals from the wild areas of the Hong Kong Special Administration Region, we identified a CoV closely related to SARS-CoV (bat-SARS-CoV) from 23 (39%) of 59 anal swabs of wild Chinese horseshoe bats (Rhinolophus sinicus) by using RT-PCR. Sequencing and analysis of three bat-SARS-CoV genomes from samples collected at different dates showed that bat-SARS-CoV is closely related to SARS-CoV from humans and civets. Phylogenetic analysis showed that bat-SARS-CoV formed a distinct cluster with SARS-CoV as group 2b CoV, distantly related to known group 2 CoV. Most differences between the bat-SARS-CoV and SARS-CoV genomes were observed in the spike genes, ORF 3 and ORF 8, which are the regions where most variations also were observed between human and civet SARS-CoV genomes. In addition, the presence of a 29-bp insertion in ORF 8 of bat-SARS-CoV genome, not in most human SARS-CoV genomes, suggests that it has a common ancestor with civet SARS-CoV. Antibody against recombinant bat-SARS-CoV nucleocapsid protein was detected in 84% of Chinese horseshoe bats by using an enzyme immunoassay. Neutralizing antibody to human SARS-CoV also was detected in bats with lower viral loads. Precautions should be exercised in the handling of these animals.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
/ Animals
/ Bats
/ Genomes
/ Humans
/ Reverse transcriptase polymerase chain reaction
/ Severe acute respiratory syndrome
/ Severe acute respiratory syndrome-related coronavirus - classification
/ Severe acute respiratory syndrome-related coronavirus - genetics
/ Severe acute respiratory syndrome-related coronavirus - isolation & purification
/ Viruses
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