Exploring the role of detoxification genes in the resistance of Bursaphelenchus xylophilus to different exogenous nematicidal substances using transcriptomic analyses

松材线虫 生物 转录组 戒毒(替代医学) 嗜木菌 生物测定 基因 RNA干扰 生物杀虫剂 异型生物质的 基因表达 毒理 线虫 杀虫剂 遗传学 生态学 生物化学 核糖核酸 医学 替代医学 病理 酶
作者
Jingxin Cao,Xin Hao,Yang Eric Li,Ruina Tan,Zhixin Cui,Lu Li,Yue Zhang,Jingyu Cao,Mengru Min,Liwei Liang,Zhe Xu,Wei Ma,Ling Ma
出处
期刊:Pesticide Biochemistry and Physiology [Elsevier BV]
卷期号:194: 105527-105527 被引量:9
标识
DOI:10.1016/j.pestbp.2023.105527
摘要

Bursaphelenchus xylophilus (Pine wood nematode, PWN) has become a worldwide forest disease due to its rapid infection ability, high lethality and difficulty in control. The main means of countering B. xylophilus is currently chemical control, but nematicides can present problems such as environmental pollution and drug resistance. The development of novel environmentally-friendly nematicides has thus become a focus of recent research. In this study, BxUGT3 and BxUGT34, which might be related to detoxification, were investigated by comparing transcriptomic and WGCNA approaches. Three other genes with a similar expression pattern, BxUGT13, BxUGT14, and BxUGT16, were found by gene family analysis. Further bioassays and qPCR assays confirmed that these five genes showed significant changes in transcript levels upon exposure to α-pinene and carvone, demonstrating that they respond to exogenous nematicidal substances. Finally, RNAi and bioassays showed that B. xylophilus with silenced BxUGT16 had increased mortality in the face of α-pinene and carvone stress, suggesting that BxUGT16 plays an important role in detoxification. Taken together, this study used novel molecular research methods, explored the detoxification mechanism of B. xylophilus at a transcriptomic level, and revealed a molecular target for the development of novel biopesticides.
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