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Published on: November 27, 2014
Multigenic control of resistance to Sendai virus infection in mice
Abstract:
Experimental infection of mice with Sendai virus (SeV) is frequently used as a model of viral pathogenesis of human respiratory disease. To understand the differences in host response to SeV among mice strains, we carried out genetic mapping studies in DBA/2 (D2) (susceptible) and C57BL/6 (B6) (resistant) mice. F(1), F(2), and N(2) backcrossed mice were generated and examined for their disease resistance and susceptibility. For the determination of virulence, percentage body weight loss and survival time were used as phenotypes. We, then, carried out a genome wide scan on 108 backcrossed mice for linkage with percentage body weight loss as phenotype. A major quantitative trait locus (QTL) showing significant linkage was mapped to the distal portion of Chr 4 (SeV1). In addition, two other QTLs showing suggestive statistical linkage were also detected on Chr 8 and 14. We, further, performed genome scan for interactions with least squares analysis of variance of all pairs of informative makers in backcrossed progenies. We identified a highly significant epistatic interaction between D3Mit182 and D14Mit10, then denoted as SeV2 and SeV3, respectively, and the latter was the same locus showing a suggestive level on Chr 14 in QTL analysis. Considered genotypes of these three loci, we could account for more than 90% of genetic effect on the differential response to SeV infection between B6 and D2 mice. These findings revealed a novel gene interactions controlling SeV resistance in mice and will enable the identification of resistance genes encoded within these loci.
Insights
Researchers mapped genetic loci controlling Sendai virus (SeV) resistance in mice. Three loci, including a major quantitative trait locus (QTL) on Chr 4 and epistatic interactions, explain over 90% of the differential host response to SeV infection.
Area of Science:
- Immunology
- Genetics
- Virology
Background:
- Sendai virus (SeV) infection in mice serves as a model for human respiratory viral diseases.
- Understanding genetic factors influencing host response is crucial for disease modeling and intervention.
Purpose of the Study:
- To identify genetic loci controlling differential host susceptibility and resistance to Sendai virus (SeV) infection in mice.
- To investigate gene interactions influencing SeV pathogenesis.
Main Methods:
- Genetic mapping using DBA/2 (susceptible) and C57BL/6 (resistant) mice strains, generating F(1), F(2), and N(2) backcrossed generations.
- Phenotypic analysis including body weight loss and survival time to determine SeV virulence.
- Genome-wide scan for quantitative trait loci (QTL) and epistatic interactions using least squares analysis of variance.
Main Results:
- A major QTL (SeV1) linked to SeV resistance was mapped to the distal Chr 4.
- Suggestive linkage QTLs were detected on Chr 8 and Chr 14 (SeV3).
- A significant epistatic interaction (SeV2 and SeV3) between loci on Chr 4 and Chr 14 was identified, collectively explaining >90% of the genetic variance in SeV response.
Conclusions:
- Novel gene interactions significantly control SeV resistance in mice.
- Identification of these loci provides targets for further research into specific resistance genes.
- This study enhances our understanding of the genetic basis of viral respiratory disease pathogenesis.

