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Genomic virulence features of Beauveria bassiana as a biocontrol agent for the mountain pine beetle population

球孢白僵菌 生物 球孢菌 山松甲虫 人口 毒力 大小蠹属 昆虫病原真菌 生物杀虫剂 小蠹虫 植物 生物病虫害防治 基因 生态学 遗传学 象甲科 人口学 杀虫剂 社会学
作者
Janet X. Li,Kleinberg X. Fernandez,Carol Ritland,Sharon Jancsik,Daniel B. Engelhardt,Lauren Coombe,René L. Warren,Marco J. van Belkum,Allan L. Carroll,John C. Vederas,Jöerg Bohlmann,İnanç Birol
出处
期刊:BMC Genomics [BioMed Central]
卷期号:24 (1) 被引量:3
标识
DOI:10.1186/s12864-023-09473-4
摘要

The mountain pine beetle, Dendroctonus ponderosae, is an irruptive bark beetle that causes extensive mortality to many pine species within the forests of western North America. Driven by climate change and wildfire suppression, a recent mountain pine beetle (MPB) outbreak has spread across more than 18 million hectares, including areas to the east of the Rocky Mountains that comprise populations and species of pines not previously affected. Despite its impacts, there are few tactics available to control MPB populations. Beauveria bassiana is an entomopathogenic fungus used as a biological agent in agriculture and forestry and has potential as a management tactic for the mountain pine beetle population. This work investigates the phenotypic and genomic variation between B. bassiana strains to identify optimal strains against a specific insect.Using comparative genome and transcriptome analyses of eight B. bassiana isolates, we have identified the genetic basis of virulence, which includes oosporein production. Genes unique to the more virulent strains included functions in biosynthesis of mycotoxins, membrane transporters, and transcription factors. Significant differential expression of genes related to virulence, transmembrane transport, and stress response was identified between the different strains, as well as up to nine-fold upregulation of genes involved in the biosynthesis of oosporein. Differential correlation analysis revealed transcription factors that may be involved in regulating oosporein production.This study provides a foundation for the selection and/or engineering of the most effective strain of B. bassiana for the biological control of mountain pine beetle and other insect pests populations.
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