| Literature DB >> 31573422 |
Fanli Meng1,2, Yongxia Li1,2, Xuan Wang1,2, Yuqian Feng1,2, Zhenkai Liu1,2, Wei Zhang1,2, Xingyao Zhang1,2.
Abstract
The pine wood nematode Bursaphelenchus xylophilus is a destructive species affecting pine trees worldwide; however, the underlying mechanism leading to pathogenesis remains unclear. In this study, a B. xylophilus gene encoding thaumatin-like protein-1 (Bx-tlp-1) was silenced by RNA interference to clarify the relationship between the Bx-tlp-1 gene and pathogenicity. The in vitro knockdown of Bx-tlp-1 with double-stranded RNA (dsRNA) decreased B. xylophilus reproduction and pathogenicity. Treatments with dsRNA targeting Bx-tlp-1 decreased expression by 90%, with the silencing effect maintained even in the F3 offspring. Pine trees inoculated with B. xylophilus treated with Bx-tlp-1 dsRNA decreased the symptom of wilting, and the disease severity index was 56.7 at 30 days after inoculation. Additionally, analyses of the cavitation of intact pine stem samples by X-ray microtomography revealed that the xylem cavitation area of pine trees inoculated with B. xylophilus treated with Bx-tlp-1 dsRNA was 0.46 mm2 at 30 days after inoculation. Results from this study indicated that the silencing of Bx-tlp-1 has effects on B. xylophilus fitness. The data presented here provide the foundation for future analyses of Bx-tlp-1 functions related to B. xylophilus pathogenicity.Entities:
Keywords: Bursaphelenchus xylophilus; X-ray microtomography; thaumatin-like protein
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Year: 2019 PMID: 31573422 DOI: 10.1094/PHYTO-03-19-0082-R
Source DB: PubMed Journal: Phytopathology ISSN: 0031-949X Impact factor: 4.025