Evolutionary Dynamics of MERS-CoV: Potential Recombination, Positive Selection and Transmission.

Zhao Zhang1 Libing Shen1 Xun Gu1,2
Affiliations 2 institutions
  1. State Key Laboratory of Genetic Engineering and MOE Key Laboratory of Contemporary Anthropology, School of Life Sciences, Fudan University, Shanghai, 200433, PR China.
  2. Department of Genetics, Development, and Cell Biology, Iowa State University, Ames, IA, 50011, USA.

Abstract

Middle East respiratory syndrome coronavirus (MERS-CoV) belongs to beta group of coronavirus and was first discovered in 2012. MERS-CoV can infect multiple host species and cause severe diseases in human. We conducted a series of phylogenetic and bioinformatic analyses to study the evolution dynamics of MERS-CoV among different host species with genomic data. Our analyses show: 1) 28 potential recombinant sequences were detected and they can be classified into seven potential recombinant types; 2) The spike (S) protein of MERS-CoV was under strong positive selection when MERS-CoV transmitted from their natural host to human; 3) Six out of nine positive selection sites detected in spike (S) protein are located in its receptor-binding domain which is in direct contact with host cells; 4) MERS-CoV frequently transmitted back and forth between human and camel after it had acquired the human-camel infection capability. Together, these results suggest that potential recombination events might have happened frequently during MERS-CoV's evolutionary history and the positive selection sites in MERS-CoV's S protein might enable it to infect human.

Supporting text Virus Host Location
Evolution, Molecular 176 Genetic Variation 127 Recombination, Genetic 59 Selection, Genetic 23 Animals 1948 Computational Biology 15 Coronavirus Infections 171 Humans 1440 Middle East Respiratory Syndrome Coronavirus 68 Phylogeny 805

Evidence records

3 total
Functional Mechanism
2 records · 1 evidence types
Evidence type
2 records
OVE2337
Key finding

The Spike (S) protein of MERS-CoV experienced strong positive selection associated with adaptation during transmission from its natural host to human.

Virus
Host
Not specified
Location
Not specified
Supporting text

The spike (S) protein of MERS-CoV was under strong positive selection when MERS-CoV transmitted from their natural host to human.

Genes or proteins
Spike (S) protein
Mechanism types
host-range expansion | receptor binding
OVE2339
Key finding

MERS-CoV transmitted from its natural animal host to humans, representing an animal-to-human spillover event.

Virus
Host
Location
Not specified
Supporting text

The spike (S) protein of MERS-CoV was under strong positive selection when MERS-CoV transmitted from their natural host to human.

Mechanism types
host tropism
Genomic Evolution
1 records · 1 evidence types
Evidence type
1 records
OVE2340
Key finding

MERS-CoV was reported to transmit bidirectionally between camel and human after the virus acquired human-camel infection capability.

Virus
Host
Location
Not specified
Supporting text

MERS-CoV frequently transmitted back and forth between human and camel after it had acquired the human-camel infection capability.

Analysis methods
phylogenetic analysis | genomic data analysis