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Characterization of the Hog1 MAPK pathway in the entomopathogenic fungus Beauveria bassiana
Author(s) -
Liu Jing,
Wang ZhiKang,
Sun HuanHuan,
Ying ShengHua,
Feng MingGuang
Publication year - 2017
Publication title -
environmental microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.954
H-Index - 188
eISSN - 1462-2920
pISSN - 1462-2912
DOI - 10.1111/1462-2920.13671
Subject(s) - biology , conidiation , mutant , mapk/erk pathway , microbiology and biotechnology , kinase , genetics , gene
Summary High‐osmolarity glycerol (HOG) pathway required for yeast osmoregulation relies upon the mitogen‐activated protein kinase (MAPK) Hog1 cascade that comprise the MAPKKKs Ssk2/Ssk22 and Ste11 converging on the MAPKK Pbs2. Here we show a Hog1 cascade with the unique MAPKKK Ssk2 acting in Beauveria bassiana . Hypersensitivity to high osmolarity and high resistance to fludioxonil fungicide appeared in Δ ssk2 , Δ pbs2 and Δ hog1 mutants whereas the two hallmark phenotypes were reversed in Δ ste11 . Increased sensitivity to heat shock and decreased sensitivity to cell wall perturbation also occurred in the three mutants but not in Δ ste11 although antioxidant phenotypes were different in all deletion mutants. Intriguingly, signals of Hog1 phosphorylation induced by osmotic, oxidative and thermal cues were present in Δ ste11 but absent in Δ ssk2 and Δ pbs2 . Moreover, vegetative growth on minimal media with different carbon/nitrogen sources was much more suppressed in Δ ste11 and Δ ssk2 than in Δ pbs2 and Δ hog1 although all mutants suffered similar, but severe, conidiation defects on a standard medium. Normal host infection was abolished in Δ ste11 while virulence was differentially attenuated in other mutants. Our findings exclude Ste11 from the Hog1 cascade that regulates multiple stress responses and environmental adaptation of B. bassiana and perhaps other filamentous fungi.

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