2025/07/29 by M. Y. Wang, Lianjing Zhao, Li Luo +5 · 1 voice
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · #Plant Disease Management Techniques #Plant Disease Resistance and Genetics #Plant and Fungal Interactions Research
paper · doi:10.1094/phyto-02-25-0086-r
openalex publication_date 2025/07/29 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/31
Thanatephorus cucumeris anastomosis subgroup 3-TB (AG-3-TB) is the primary pathogen causing tobacco target spot disease, which has resulted in substantial economic losses in tobacco production worldwide. Traditionally, soilborne sclerotia have been considered to be the main primary infection source, whereas the role of airborne basidiospores has long been underestimated; particularly, they serve as the inoculum of primary and secondary infection developing on the hymenia of infected alternate host plants. This study investigated the influence of different host plants on T. cucumeris AG-3 sporulation. The results showed that in the natural environment, T. cucumeris AG-3-TB could develop hymenia on Solanaceae (tobacco, tomato, eggplant, pepper, and potato), Gramineae (rice), Cruciferae (cabbage), weeds (shamrock, dandelion, and Tartary buckwheat), and the soil surface surrounding tomato stems, and the fungal hymenium formation capacity differed among plant host species. Furthermore, this sporulation phenomenon was widely prevalent across the AG-3-TB subgroup, and urea as a nitrogen fertilizer and 18% albendazole-moroxydine hydrochloride wettable powder as a virucide significantly promoted AG-3-TB strain sporulation on tomato hosts. Our findings indicate that host plant species, strain differences, urea, and fungistatic stress significantly influence the fungal sporulation, revealing the pivotal role of spore production in the disease development.