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首页> 外文期刊>Applied and Environmental Microbiology >Mitogen-Activated Protein Kinase hog1 in the Entomopathogenic Fungus Beauveria bassiana Regulates Environmental Stress Responses and Virulence to Insects
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Mitogen-Activated Protein Kinase hog1 in the Entomopathogenic Fungus Beauveria bassiana Regulates Environmental Stress Responses and Virulence to Insects

机译:致病性真菌球孢白僵菌中的丝裂原激活蛋白激酶hog1调节环境胁迫反应和对昆虫的毒力。

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摘要

Beauveria bassiana is an economically important insect-pathogenic fungus which is widely used as a biocontrol agent to control a variety of insect pests. However, its insecticide efficacy in the field is often influenced by adverse environmental factors. Thus, understanding the genetic regulatory processes involved in the response to environmental stress would facilitate engineering and production of a more efficient biocontrol agent. Here, a mitogen-activated protein kinase (MAPK)-encoding gene, Bbhog1, was isolated from B. bassiana and shown to encode a functional homolog of yeast HIGH-OSMOLARITY GLYCEROL 1 (HOG1). A Bbhog1 null mutation was generated in B. bassiana by targeted gene replacement, and the resulting mutants were more sensitive to hyperosmotic stress, high temperature, and oxidative stress than the wild-type controls. These results demonstrate the conserved function of HOG1 MAPKs in the regulation of abiotic stress responses. Interestingly, ΔBbhog1 mutants exhibited greatly reduced pathogenicity, most likely due to a decrease in spore viability, a reduced ability to attach to insect cuticle, and a reduction in appressorium formation. The transcript levels of two hydrophobin-encoding genes, hyd1 and hyd2, were dramatically decreased in a ΔBbhog1 mutant, suggesting that Bbhog1 may regulate the expression of the gene associated with hydrophobicity or adherence.
机译:球孢白僵菌是一种经济上重要的昆虫致病真菌,被广泛用作控制多种害虫的生物防治剂。然而,其在田间的杀虫功效常常受到不利的环境因素的影响。因此,了解涉及对环境压力的响应的遗传调控过程将有助于工程设计和生产更有效的生物防治剂。在这里,一个有丝分裂原激活的蛋白激酶(MAPK)编码基因,Bbhog1,是从球孢白僵菌中分离出来的,并显示出编码酵母高渗甘油1(HOG1)的功能同源物。通过有针对性的基因置换,在球孢白僵菌中产生了Bbhog1无效突变,与野生型对照相比,所得突变株对高渗胁迫,高温和氧化胁迫更敏感。这些结果证明了HOG1 MAPK在非生物应激反应调节中的保守功能。有趣的是,ΔBbhog1突变体的致病性大大降低,最有可能是由于孢子活力降低,附着在昆虫表皮上的能力降低以及app的形成减少。在ΔBbhog1突变体中,两个疏水蛋白编码基因hyd1和hyd2的转录水平显着降低,表明Bbhog1可能调节与疏水性或粘附相关的基因的表达。

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