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Significant attention has been garnered in proteomic research on Pinus koraiensis infected by Bursaphelenchus xylophilus. This destructive nematode parasite disrupts the cellular structure of the pine, resulting in wilt and death. The key proteins involved in nematode secretion, cell wall degradatio...
ORGANISM(S): Pinus Koraiensis 
2024-12-06 | PXD058632 |
Bacterial and Fungal microbiomes in life cycle of Pinewood Nematode
Pinewood nematode Bursaphelenchus xylophilus RNA-Seq from phytophagous and mycetophagous life cycle phase.
Bacterial symbionts of the pinewood nematode Metagenome
The pinewood nematode (PWN), Bursaphelenchus xylophilu (Bx) s, one of the most serious forest pests, worldwide, is considered the causal agent of the pine wilt disease (PWD). The main host species belong to the genus Pinus and a variation in the susceptibility of several pine species to PWN infectio...
ORGANISM(S): Bursaphelenchus xylophilus (Pinewood nematode worm) (Aphelenchoides xylophilus) cellular organisms 
2022-01-13 | PXD029377 | Pride
Insights into the mechanisms implicated in Pinus pinaster resistance to pinewood nematode
Bursaphelenchus xylophilus (pinewood nematode, PWN) is the causal agent of pine wilt disease, causing economic and environmental losses in pine forests. The establishment of systemic acquired resistance (SAR) offers positive prospects for PWN control. We chose Bacillus subtilis JCK-1398, which effec...
ORGANISM(S): Pinus densiflora 
2024-02-15 | GSE255343 | GEO
Bursaphelenchus xylophilus (pinewood nematode, PWN) is a causal agent of pine wilt disease and results in economic and environmental losses in pine forests. The establishment of systemic acquired resistance (SAR) provides positive capacities to control PWN. We selected two SAR elicitors, acibenzolar...
ORGANISM(S): Pinus densiflora 
2020-11-02 | GSE154134 | GEO
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