An aldo-keto reductase, Bbakr1, is involved in stress response and detoxification of heavy metal chromium but not required for virulence in the insect fungal pathogen, Beauveria bassiana
Autor: | Min Li, Zhangjiang He, Xin Zhao, Huifang Wang, Zhuoyue Lu, Yongjun Zhang, Linli Luo, Tingying Luo |
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Rok vydání: | 2018 |
Předmět: |
Chromium
0301 basic medicine MAP Kinase Signaling System Mutant Aldo-Keto Reductases Virulence Conidiation Moths Reductase Microbiology Fungal Proteins 03 medical and health sciences Stress Physiological Genetics Animals Beauveria Fungal protein Aldo-keto reductase biology Wild type Spores Fungal biology.organism_classification 030104 developmental biology Inactivation Metabolic |
Zdroj: | Fungal Genetics and Biology. 111:7-15 |
ISSN: | 1087-1845 |
DOI: | 10.1016/j.fgb.2018.01.001 |
Popis: | The aldo-keto reductases (AKRs) belong to the NADP-dependent oxidoreductase superfamily, which play important roles in various physiological functions in prokaryotic and eukaryotic organisms. However, many AKR superfamily members remain uncharacterized. Here, a downstream target gene of the HOG1 MAPK pathways coding for an aldo-keto reductase, named Bbakr1, was characterized in the insect fungal pathogen, Beauveria bassiana. Bbakr1 expression increased in response to osmotic and salt stressors, and oxidative and heavy metal (chromium) stress. Deletion of Bbakr1 caused a reduction in conidiation, as well as delayed conidial germination. ΔBbakr1 displayed increased sensitivity to osmotic/high-salt stress with decreased compatible solute accumulation. In addition, the mutant was more sensitive to high concentrations of the heavy metal, chromium, and to oxidative stress than the wild type cells, with impaired ability to detoxify active aldehyde that might accumulate due to lipid peroxidation. However, over-expressing Bbakr1 in either the wild type strain or a ΔBbhog1 background did not cause any obvious changes in phenotypes as compared to their controls. Little effect on virulence was seen for either the ΔBbakr1 or overexpression strains in insect bioassays via cuticle infection or intrahemocoel injection assays, suggesting that Bbakr1 is not required for virulence. |
Databáze: | OpenAIRE |
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