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Published on: December 1, 2011
Comparative Analysis of Codon Usage Patterns and Host Adaptation in Merbecoviruses
Ge Yan1, Yue Li1, Huimin Zhou1
1School of Pharmacy, China Pharmaceutical University, 639 Longmian Avenue, Nanjing 211198, China.
Abstract:
Merbecovirus, a subgenus of coronaviruses that includes the highly pathogenic Middle East respiratory syndrome coronavirus (MERSr-CoV), poses a significant zoonotic threat. To better understand its host adaptation and potential for cross-species transmission, we conducted a comprehensive analysis of codon usage patterns in 1967 Merbecovirus sequences. Phylogenetic analysis confirmed the division of Merbecoviruses into seven distinct clusters. Codon usage bias was found to be low and predominantly shaped by natural selection, with a consistent A/U-rich composition across the genome. Codon adaptation index (CAI) and relative codon deoptimization index (RCDI) analyses indicate that Merbecovirus exhibits potential host adaptation to Sus scrofa (pigs), Equus caballus (horses), and Oryctolagus cuniculus (rabbits), suggesting a risk of cross-species transmission. Strikingly, this genomic-level adaptation prediction is supported by emerging functional evidence: recent studies have demonstrated that key Merbecovirus lineages utilize diverse cell entry receptors (DPP4 or ACE2), a fundamental determinant of host tropism. For instance, the ability of the HKU5 lineage to utilize ACE2 receptors from mustelids like minks (Neogale vison) provides mechanistic support for the host adaptability trends inferred from our genomic analyses. By integrating existing receptor specificity data, this study provides the first systematic, large-scale analysis of codon usage across the Merbecovirus subgenus, elucidating key mechanisms of genomic adaptation and viral evolution. Our analytical framework provides a novel comparative perspective on host diversity and pinpoints specific surveillance priorities for mitigating future spillover risks.
Insights
Merbecoviruses, including MERSr-CoV, show host adaptation to pigs, horses, and rabbits. Genomic analysis reveals potential for cross-species transmission, highlighting surveillance needs for zoonotic threats.
Area of Science:
- Virology
- Genomics
- Evolutionary Biology
Background:
- Merbecovirus, a coronavirus subgenus, includes MERSr-CoV and presents zoonotic risks.
- Understanding Merbecovirus host adaptation is crucial for predicting cross-species transmission.
- Phylogenetic analysis reveals seven distinct Merbecovirus clusters.
Purpose of the Study:
- To analyze codon usage patterns in Merbecovirus to understand host adaptation.
- To investigate the evolutionary mechanisms driving Merbecovirus host tropism.
- To identify potential animal reservoirs and mitigate zoonotic spillover risks.
Main Methods:
- Comprehensive analysis of 1967 Merbecovirus sequences.
- Phylogenetic analysis to determine viral clustering.
- Codon Usage Bias (CUB) analysis using Codon Adaptation Index (CAI) and Relative Codon Deoptimization Index (RCDI).
Main Results:
- Low codon usage bias shaped by natural selection with A/U-rich composition.
- Genomic adaptation predicted for pigs, horses, and rabbits.
- Functional evidence supports genomic predictions, with diverse cell entry receptors (DPP4/ACE2) utilized by different lineages.
Conclusions:
- Merbecovirus exhibits genomic adaptation to specific hosts, indicating cross-species transmission potential.
- Viral entry receptor usage (DPP4/ACE2) aligns with genomic adaptation trends.
- This study provides a framework for Merbecovirus surveillance and risk assessment.
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