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首页> 外文期刊>Applied and Environmental Microbiology >Contribution of the gas1 Gene of the Entomopathogenic Fungus Beauveria bassiana, Encoding a Putative Glycosylphosphatidylinositol-Anchored β-1,3-Glucanosyltransferase, to Conidial Thermotolerance and Virulence
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Contribution of the gas1 Gene of the Entomopathogenic Fungus Beauveria bassiana, Encoding a Putative Glycosylphosphatidylinositol-Anchored β-1,3-Glucanosyltransferase, to Conidial Thermotolerance and Virulence

机译:病原性真菌球孢白僵菌的gas1基因编码的糖基磷脂酰肌醇固定的β-1,3-葡糖基转移酶对分生孢子耐热性和毒力的贡献

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Beauveria bassiana is a mycoinsecticide alternative to chemicals for use in biological pest control. The fungus-insect interaction is also an emerging model system to examine unique aspects of the development, pathogenesis, and diversity of fungal lifestyles. The glycoside hydrolase 72 (GH72) family includes β-1,3-glucanosyltransferases that are glycosylphosphatidylinositol (GPI)-anchored cell wall-modeling enzymes affecting fungal physiology. A putative B. bassiana GPI-anchored β-1,3-glucanosyltransferase (Bbgas1) was isolated and characterized. B. bassiana targeted gene knockouts lacking Bbgas1 were affected in Congo red and salt sensitivity but displayed minor growth defects in the presence of sorbitol, SDS, or calcofluor white. Lectin and antibody mapping of surface carbohydrates revealed increased exposure of carbohydrate epitopes, including β-1,3-glucans, in the ΔBbgas1 strain. Transmission electron micrographs revealed localized destabilization of the cell wall in ΔBbgas1 conidia, in which fraying of the outer cell wall was apparent. Heat shock temperature sensitivity profiling showed that in contrast to the wild-type parent, ΔBbgas1 conidial spores displayed decreased germination after 1 to 4 h of heat shock at temperatures >40°C, and propidium iodide exclusion assays revealed decreased membrane stability in the knockout strain at temperatures >50°C. The ΔBbgas1 knockout showed reduced virulence in Galleria mellonella insect bioassays in both topical and intrahemocoel-injection assays. B. bassiana ΔBbgas1 strains complemented with the complete Bbgas1 open reading frame were indistinguishable from the wild-type parent in all phenotypes examined. The Bbgas1 gene did not complement the phenotype of a Saccharomyces cerevisiae β-1,3-glucanosyltransferase Δgas1 mutant, indicating that this family of enzymes likely posses discrete cellular functions.
机译:球孢白僵菌是用于生物害虫防治的化学杀真菌剂替代品。真菌与昆虫的相互作用也是一种新兴的模型系统,用于检查真菌生活方式的发展,发病机制和多样性的独特方面。糖苷水解酶72(GH72)家族包括β-1,3-葡糖基转移酶,它是影响真菌生理的糖基磷脂酰肌醇(GPI)锚定的细胞壁建模酶。分离并鉴定了假定的球孢杆菌GPI锚定的β-1,3-葡糖基糖基转移酶(Bbgas1)。缺乏Bbgas1的B. bassiana靶向基因敲除物在刚果红和盐敏感性中受到影响,但在山梨糖醇,SDS或钙氟荧光白的存在下显示出较小的生长缺陷。凝集素和表面碳水化合物的抗体图谱显示ΔBbgas1菌株中碳水化合物表位(包括β-1,3-葡聚糖)的暴露增加。透射电子显微照片揭示了ΔBbgas1分生孢子中细胞壁的局部失稳,其中明显可见细胞外壁的磨损。热激温度敏感性图谱显示,与野生型亲本相比,ΔBbgas1分生孢子孢子在> 40°C的温度下热激1至4小时后发芽减少,并且碘化丙啶排除试验表明在敲除菌株中膜稳定性降低温度> 50°C。 ΔBbgas1基因敲除表明在局部和血红素内注射试验中,在马勒种虫昆虫生物试验中毒力降低。在所有检查的表型中,与完整的Bbgas1开放阅读框互补的B. bassianaΔBbgas1菌株与野生型亲本没有区别。 Bbgas1基因与酿酒酵母β-1,3-葡糖基糖基转移酶Δgas1突变体的表型不互补,表明该酶家族可能具有离散的细胞功能。

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