Fungicides play an indispensable role in ensuring food security. However, rational chemical selection and fungicide precision application guidance remain constrained by the limitations in real-time monitoring of tracking pathogens within plant tissues. In the current study, we generated a genetically stable Phytophthora infestans strain (PiLuc) expressing luciferase gene, which serves as a dual-mode quantification platform for both in vitro and in vivo throughput screening. Consequently, we designed a 96-well plate high-throughput screening system to assess compounds inhibitory efficacy using PiLuc. Crucially, bioluminescence imaging enabled visualization of PiLuc in potato leaves and tubers during early infection stage, which is invisible to the naked eye. Capitalizing on the semi non-destructive and visual advantages, we developed a system for fungicide bioavailability evaluation and dosage-response assessment in tuber tissues, integrating real-time dynamic monitoring of pathogen. The development of bioluminescent imaging of late blight pathogen establishes an enabling platform for high-throughput fungicide screening while improving the precision bioavailability assessments.
Bioluminescent imaging of an oomycete pathogen empowers chemical selections and rational fungicide applications.
利用生物发光成像技术对卵菌病原体进行研究,有助于化学筛选和合理施用杀菌剂
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作者:Chen Han, Mao Jiana, Fang Yujie, Raza Waqas, Li Zhi, Zhang Chongyuan, Zhu Yingguang, Wang Yuanchao, Dong Suomeng
| 期刊: | Plant Methods | 影响因子: | 4.400 |
| 时间: | 2025 | 起止号: | 2025 May 7; 21(1):57 |
| doi: | 10.1186/s13007-025-01374-9 | 研究方向: | 微生物学 |
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