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Open access Aug 2026

Pan-Genomic Characterization of the Nudix Hydrolase Gene Family and Its Response to Different Pathogen Strains in Maize (Zea mays)

Background: Nudix hydrolases (NHs), characterized by the conserved Nudix motif (GX5EX7REUXEEXGU), hydrolyze nucleoside diphosphate derivatives and play vital roles in plant stress responses and cellular homeostasis. However, the NH gene family has not been systematically characterized in maize (Zea mays L.). Methods: We performed a genome-wide analysis of ZmNH (Nudix hydrolase) genes using a maize pan-genome encompassing 26 high-quality genomes. Results: A total of 73 ZmNH members were identified, comprising 22 core genes (present in all 26 lines), 28 dispensable genes (present in 2–25 lines), and 23 private genes (present in only one line). Phylogenetic analysis clustered them into three subgroups (Type-I, -II, and -III), with Type-III being the largest (28 members). Gene structure and motif analyses revealed conserved exon–intron architectures and 10 conserved motifs. Nonsynonymous/synonymous substitution ratio (Ka/Ks) calculations across the 26 inbred lines indicated that most ZmNH genes were under purifying selection (Ka/Ks < 1), whereas ZmNH2 and ZmNH12 showed evidence of positive selection in some lines. Expression profiling under four stress conditions—Fusarium graminearum, Cercospora zeina, Exserohilum turcicum, and Ostrinia furnacalis—identified 20 differentially expressed ZmNH genes. Notably, ZmNH9 was consistently responsive across multiple pathogen treatments, suggesting a potential role in broad-spectrum disease resistance. Conclusions: These findings provide a foundation for future functional studies of the maize NH gene family.

Shu-Yao Tang, Yu-Han Zheng, Xi Chen et al. · 0 citations
Open access Aug 2026

Repeated Cross-Sectional Surveillance and ORF5-Based Molecular Epidemiology of Porcine Reproductive and Respiratory Syndrome Virus in Anhui Province, China, 2019–2024

Porcine reproductive and respiratory syndrome virus (PRRSV) remains a major threat to swine production, and its circulation after the African swine fever outbreak requires continued surveillance. This study investigated the temporal, regional, and genetic characteristics of PRRSV in Anhui Province from September 2019 to November 2024. Ten rounds of repeated cross-sectional surveillance were conducted at 147 slaughterhouses and 21 rendering plants. Tissue samples were collected by random, cluster, or risk-based sampling, pooled in groups of five, and tested by RT-qPCR. Representative positive samples with Ct values < 25 underwent ORF5 amplification, Sanger sequencing, and phylogenetic analysis. A total of 994 site visits yielded 18,733 tissue samples. No positive samples were detected in autumn 2020 or spring 2021, whereas PRRSV was detected again from autumn 2021 and subsequently fluctuated. The highest site-level positivity was 41.18% in autumn 2023, and the highest estimated individual-level positivity was 4.66% in spring 2023. Regional differences were statistically significant, with the highest site-level positivity in northern Anhui, and pooled-sample positivity was higher in rendering plants than in slaughterhouses. All 24 ORF5 sequences belonged to PRRSV-2 and mainly clustered with NADC30-like, NADC34-like, or MLV/classical strains. These findings demonstrate temporal fluctuations and lineage coexistence, supporting continued multisource surveillance and broader genomic and antigenic evaluation.

Hua Liu, Zhao Qi, Ying-Chun Zhou et al. · 0 citations