4.6 Article

Kinase Hog1 and Adr1 Opposingly Regulate Haploid Cell Morphology by Controlling Vacuole Size in Sporisorium scitamineum

Journal

JOURNAL OF FUNGI
Volume 8, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/jof8080865

Keywords

Sporisorium scitamineum; MAP kinase Hog1; cAMP; PKA; cell wall permeability

Funding

  1. Key Realm R&D Program of Guang Dong Province [2020B0202090001]
  2. Key Projects of Guangzhou Science and Technology Plan [201904020010]
  3. National Natural Science Foundation of China [31960521]

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The study reveals the regulatory role of MAP kinase Hog1 and cAMP/PKA signaling pathway in the morphological development of S. scitamineum. Hog1 and Adr1 antagonistically regulate the vacuolar size, cell wall integrity, and permeability, which contribute to the cell size and determine the cellular elongation rates.
Morphogenesis is a strictly regulated efficient system in eukaryotes for adapting to environmental changes. However, the morphogenesis regulatory mechanism in smut fungi is not clear. This study reports a relationship between MAP kinase Hog1 and cAMP-dependent protein kinase A catalytic subunit (Adr1) for the morphological regulation in the sugarcane pathogen Sporisorium scitamineum. The results demonstrated that MAP kinase Hog1 and cAMP/PKA signaling pathways are essential for the morphological development of S. scitamineum. Interestingly, MAP kinase Hog1 and cAMP/PKA signaling pathways' defective mutants exhibit an opposite morphological phenotype. The morphology of cAMP/PKA defective mutants is recovered by deleting the SsHOG1 gene. However, MAP kinase Hog1 and cAMP-dependent protein kinase catalytic subunit Adr1 do not interfere with each other. Further investigations showed that kinase Hog1 and Adr1 antagonistically regulates the vacuolar size, which contributes to the cell size and determines the cellular elongation rates. Kinase Hog1 and Adr1 also antagonistically balanced the cell wall integrity and permeability. Taken together, kinase Hog1- and Adr1-based opposing morphogenesis regulation of S. scitamineum by controlling the vacuolar size and cell wall permeability is established during the study.

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