Related Experiment Video
Updated: May 11, 2026

Prediction of HIV-1 Coreceptor Usage (Tropism) by Sequence Analysis using a Genotypic Approach
Published on: December 1, 2011
Proposals for the classification of human rhinovirus species A, B and C into genotypically assigned types
Chloe L McIntyre1, Nick J Knowles2, Peter Simmonds1
1Roslin Institute, University of Edinburgh, Easter Bush, Edinburgh EH15 9RG, UK.
Abstract:
Human rhinoviruses (HRVs) frequently cause mild upper respiratory tract infections and more severe disease manifestations such as bronchiolitis and asthma exacerbations. HRV is classified into three species within the genus Enterovirus of the family Picornaviridae. HRV species A and B contain 75 and 25 serotypes identified by cross-neutralization assays, although the use of such assays for routine HRV typing is hampered by the large number of serotypes, replacement of virus isolation by molecular methods in HRV diagnosis and the poor or absent replication of HRV species C in cell culture. To address these problems, we propose an alternative, genotypic classification of HRV-based genetic relatedness analogous to that used for enteroviruses. Nucleotide distances between 384 complete VP1 sequences of currently assigned HRV (sero)types identified divergence thresholds of 13, 12 and 13 % for species A, B and C, respectively, that divided inter- and intra-type comparisons. These were paralleled by 10, 9.5 and 10 % thresholds in the larger dataset of >3800 VP4 region sequences. Assignments based on VP1 sequences led to minor revisions of existing type designations (such as the reclassification of serotype pairs, e.g. A8/A95 and A29/A44, as single serotypes) and the designation of new HRV types A101-106, B101-103 and C34-C51. A protocol for assignment and numbering of new HRV types using VP1 sequences and the restriction of VP4 sequence comparisons to type identification and provisional type assignments is proposed. Genotypic assignment and identification of HRV types will be of considerable value in the future investigation of type-associated differences in disease outcomes, transmission and epidemiology.
Insights
A new genotypic classification for human rhinoviruses (HRVs) uses VP1 gene sequences to improve typing. This method addresses limitations of serotyping and aids in understanding HRV-associated disease and epidemiology.
Area of Science:
- Virology
- Molecular Biology
- Infectious Diseases
Background:
- Human rhinoviruses (HRVs) cause respiratory illnesses, including asthma exacerbations.
- Current HRV classification relies on serotyping, which is challenging due to numerous serotypes and difficulties in culturing certain species.
- Molecular methods are replacing traditional virus isolation for HRV diagnosis.
Purpose of the Study:
- To propose an alternative, genotypic classification system for human rhinoviruses (HRVs).
- To establish genetic relatedness thresholds for HRV typing based on VP1 sequences.
- To facilitate future research on HRV-associated disease outcomes and epidemiology.
Main Methods:
- Analysis of nucleotide distances within 384 complete VP1 sequences of assigned HRV (sero)types.
- Determination of divergence thresholds for distinguishing inter- and intra-type comparisons across HRV species A, B, and C.
- Comparison of VP1 sequence data with a larger dataset of over 3800 VP4 region sequences.
Main Results:
- Established divergence thresholds for VP1 sequences: 13% (species A), 12% (species B), and 13% (species C).
- Identified similar thresholds using VP4 sequences: 10% (species A), 9.5% (species B), and 10% (species C).
- Led to minor revisions in existing HRV type designations and the identification of new HRV types (A101-106, B101-103, C34-C51).
Conclusions:
- A genotypic classification based on VP1 sequences offers a robust alternative to serotyping for human rhinoviruses (HRVs).
- The proposed system includes protocols for assigning and numbering new HRV types using VP1 sequences.
- Genotypic HRV typing will be crucial for investigating type-specific differences in disease, transmission, and epidemiology.
Related Concept Videos
Viruses with RNA Genomes
Microbial Classification System
Methods of Classification and Identification
Human Virome
Blood Types
ABO blood group
ABO antigens are glycoproteins encoded by genes present on...
Modern Molecular Taxonomy

