ArticleViruses2023
Emerging Hypervirulent Marek's Disease Virus Variants Significantly Overcome Protection Conferred by Commercial Vaccines.
Article in Viruses, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 24 papers.
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Who cites it
24 citing papers in PubMed, 26 citations in OpenAlex.
- Grafting of Md5 gC onto herpesvirus of turkeys confers full protection against very virulent Marek's disease virus.Poultry science · 2026Article
- Genome-wide analyses of an avian herpesvirus identify 10 loci associated with tumorigenicity and vaccine escape.Science advances · 2026Article
- Outbreak of FAdV-4 infection in blue-breasted quail (Excalfactoria chinensis) reveals novel cross-species transmission of virus in domestic poultry and ornamental pet birds.Poultry science · 2026Article
- Research note: A novel double-gene deleted vaccine against hypervirulent MDV variant generated by CRISPR/Cas9-based gene editing.Poultry science · 2026Article
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- Chicken lncRNA-9802 Induces the S Phase Arrest in the T Lymphocyte Cells Infected by Marek's Disease Virus via the TP53BP1/p53/p21 Pathway.Veterinary sciences · 2026Article
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- CRISPR/Cas14a combined with RPA for visual detection of Marek's disease virus.Microbiology spectrum · 2026Article
- Co-Infection and Phylogenetic Evolution of CIAV in Marek's Disease Tumour-Bearing Flocks in Central China.Viruses · 2026Article
- Structural Insights Into the Nuclear Import of Marek's Disease Virus Large Tegument Protein.Advances in virology · 2026Article
- Epidemiology of Marek's Disease Virus Type 2 and the Molecular and Pathology Characterization of Virus Isolates in China (2015-2024).Transboundary and emerging diseases · 2026Article
- Pathogenicity analysis and control strategies to combat avian diseases: mechanisms of increased virulence of Marek's disease virus and the development of vaccines against poultry red mites.The Journal of veterinary medical science · 2025Review
- The emergence of a highly pathogenic marek's disease virus featuring newly identified mutations in Meq oncogene in Southern China.Virology journal · 2025Article
- Two distinct polymorphisms in the basic region of Meq protein of marek's disease virus alter pathological progression and clinical manifestations.Virology journal · 2025Article
- High-fidelity long-read sequencing of an avian herpesvirus reveals extensive intrapopulation diversity in tandem repeat regions.PLoS pathogens · 2025Article
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- Surveillance and Molecular Characterization of Marek's Disease Virus (MDV) Strains Circulating in Tanzania.Viruses · 2025Article
- scRNA seq of an F1 cross of Marek's disease resistant and susceptible chickens identifies allele specific expression signatures enriched in transcription modulators.Scientific reports · 2025Article
- Protection Conferred by Gallid Alphaherpesvirus 2 Vaccines Against Immunosuppression Induced by Very Virulent Plus (vv+) Marek's Disease Virus Strains in Commercial Meat Type Chickens.Pathogens (Basel, Switzerland) · 2025Article
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Authors and funding
10 authors at 5 institutions in 2 countries.
Funding
Abstract
As one of the most important avian immunosuppressive and neoplastic diseases, Marek's disease (MD), caused by oncogenic Marek's disease virus (MDV), has caused huge economic losses worldwide over the past five decades. In recent years, MD outbreaks have occurred frequently in MD-vaccinated chicken flocks, but the key pathogenic determinants and influencing factors remain unclear. Herein, we analyzed the pathogenicity of seven newly isolated MDV strains from tumor-bearing chickens in China and found that all of them were pathogenic to chicken hosts, among which four MDV isolates, SDCW01, HNXZ05, HNSQ05 and HNSQ01, were considered to be hypervirulent MDV (HV-MDV) strains. At 73 days of the virus infection experiment, the cumulative incidences of MD were 100%, 93.3%, 90% and 100%, with mortalities of 83.3%, 73.3%, 60% and 86.7%, respectively, for the four viruses. The gross occurrences of tumors were 50%, 33.3%, 30% and 63.3%, respectively, accompanied by significant hepatosplenomegaly and serious atrophy of the immune organs. Furthermore, the immune protection effects of four commercial MD vaccines against SDCW01, CVI988, HVT, CVI988+HVT, and 814 were explored. Unexpectedly, during the 67 days of post-virus challenge, the protection indices (PIs) of these four MD vaccines were only 46.2%, 38.5%, 50%, and 28%, respectively, and the birds that received the monovalent CVI988 or HVT still developed tumors with cumulative incidences of 7.7% and 11.5%, respectively. To our knowledge, this is the first demonstration of the simultaneous comparison of the immune protection efficacy of multiple commercial MD vaccines with different vaccine strains. Our study revealed that the HV-MDV variants circulating in China could significantly break through the immune protection of the classical MD vaccines currently widely used. For future work, there is an urgent need to develop novel, more effective MD vaccines for tackling the new challenge of emerging HV-MDV strains or variants for the sustainable control of MD.
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