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◆ Veterinary microbiology2026-09-23

Genetic diversity, pathogenicity, and serological cross-neutralization characteristics of contemporary feline calicivirus isolates from China.

Na Li, Kelimujiang Aishanjiang, Aoxing Tang, Miao Zhang, Meng Zhu, Xiaomei Tan, Wenqi Zhu, Dan Luo, Da Zhang, Chuanfeng Li, Jie Zhu, Yingqi Zhu, ChunChun Meng, Guoxin Li, GuangQing Liu

原始摘要(英文原文)· Original abstract
Feline calicivirus (FCV) shows extensive genetic and antigenic diversity and typically causes oral-respiratory disease (ORD), although some isolates are associated with virulent systemic disease (VSD). The molecular basis of FCV-associated VSD remains unclear and cannot be attributed to a single VP1 residue, phylogenetic lineage, or recombination event. Here, we comparatively characterized three VSD-associated isolates (XA13_VSD, GZ_VSD, and AH1_VSD) and one ORD-associated isolate (SH2022_ORD) by integrating phylogenetic background, modular genomic variation, in vitro replication, experimental pathogenicity, tissue viral RNA distribution, and serological cross-neutralization. All four isolates belonged to genogroup GI, but the VSD-associated isolates were distributed across different GI sublineages. RDP5 analysis of 253 complete genomes identified 90 recombination events, including 27 spanning the Region A/Region B boundary; AH1_VSD showed a representative modular recombination pattern near the ORF1/ORF2 junction. Within this four-isolate panel, the three VSD-associated isolates showed higher in vitro replication levels and caused more severe disease than SH2022_ORD in experimentally infected cats, accompanied by greater viral RNA shedding, whole-blood FCV RNA detection at 3-9 dpi, broader tissue viral RNA distribution, and more severe histopathological lesions. After homologous neutralizing titers were standardized to 2 ¹ ⁰, AH1_VSD antiserum displayed the broadest cross-neutralizing profile within the tested panel. Collectively, these findings support a multifactorial view of FCV-associated systemic disease involving genomic background, replication and pathogenicity traits, viral dissemination, tissue involvement, and capsid antigenic variation. The comparatively broad cross-neutralization profile of AH1_VSD provides a rationale for its further evaluation as a potential parental candidate for attenuation and vaccine development.
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Genetic diversity, pathogenicity, and serological cross-neutralization characteristics of contemporary feline calicivirus isolates from China. — 科研速览 Science Skim