Chilli veinal mottle virus (ChiVMV, Potyvirus capsivenamaculae) can infect various Solanaceae crops, causing a decrease in yield and quality. In recent years, ChiVMV has become one of the most prevalent viruses affecting tobacco production, but its diversity and genetic structure are still elusive. In this study, 202 ChiVMV isolates were obtained from 13 tobacco-producing areas in Yunnan Province between 2021 and 2025. Analysis of the coat protein (CP) genes of the 202 isolates showed that there exist 193 haplotypes and abundant genetic diversity. The highest variation was observed at the N-terminus of ChiVMV CP. Further analysis displayed three high-confidence recombination events in the CP gene of ChiVMV Yunnan isolates, with isolate 25DLYP-7 from the Dali region playing a putative parental isolate for these recombinations. The results of neutral and selection pressure analyses indicated that the CP gene of ChiVMV Yunnan isolates exhibits purifying selection. Distribution analysis of these ChiVMV Yunnan isolates showed that geographical isolation is closely related to the genetic diversity of ChiVMV, and field weeds may serve as important initial sources of infection. Phylogenetic analysis demonstrated that ChiVMV Yunnan populations display close association with isolates from southwestern China, as well as isolates from South Asia and Europe.
Ning Jiang, H. Fang, Zhong-Yue Mai et al.· Viruses· 1 citation
Plant immune activation often reduces growth, which is defined as “growth-defense trade-off” (GDT). Uncoupling GDT is promising for breeding of elite cultivars with strong growth and immunity. We previously identified that AP2 transcription factor TARGET OF EARLY3 (TOE3) promotes both growth and antiviral defense. However, the mechanism underlying this GDT uncoupling remains unknown. Here, we find that the amino-terminal domain of TOE3 (T3N) inhibits abscisic acid (ABA) signaling. Mechanistically, T3N binds to an ABA receptor PYL4 to interfere with PYL4-PP2C4 interaction. The PYL4-PP2C4 module regulates tobacco growth and antiviral immunity. Thus, under normal conditions, T3N enhances tobacco growth via down-regulating ABA response. Upon TMV infection, the phosphorylation of T3N is induced. Phosphorylated T3N exhibits stronger binding affinity to PYL4 to further amplify its disruptive effect on PYL4-PP2C4 module and strongly block ABA response, thereby boosting antiviral immunity. These findings reveal how TOE3 uncouples GDT to provide strategies for breeding crops with strong growth and antiviral immunity.
Bolei Jiao, Baijun Wu, H. Fang et al.· Science Advances· 0 citations
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