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Updated: Feb 4, 2026

An Ex vivo Assay to Study Candida albicans Hyphal Morphogenesis in the Gastrointestinal Tract
Published on: July 1, 2020
AoMbp1 interacts with AoSwi6 and regulates hyphal development, stress tolerance, trap morphogenesis, and
Na Bai1, Hui Yuan2, Guiqiu Luo2
1State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Key Laboratory of Industrial Microbial Fermentation Engineering of Yunnan Province, and School of Life Sciences, Yunnan University, Kunming 650091, China; School of Life Sciences, Henan Institute of Science and Technology, Xinxiang 453003, China.
Abstract:
The APSES family proteins, specific to fungi, regulate growth, development, and various biological processes. As a typical nematode-trapping fungus, Arthrobotrys oligospora has been extensively studied to understand the mechanism of trap formation. In this study, AoMbp1, an ortholog of the Saccharomyces cerevisiae APSES-type transcription factor Mbp1, was functionally characterized in A. oligospora. Aombp1 inactivation caused severe defects in mycelial growth and development. Specifically, the ∆Aombp1 mutant exhibited significantly reduced growth, increased hyphal septation and lipid droplet accumulation, and a marked decrease in nuclear numbers. Moreover, it showed substantially reduced conidiophore production and spore yield, along with abnormal spore morphology. Sensitivity to various chemical stressors, particularly hyperosmotic agents, was heightened, whereas trap formation and nematode predation ability were significantly impaired. The traps lost their original three-dimensional structure and adopted a planar shape. Further, RNA sequencing, DNA affinity purification sequencing, and yeast two-hybrid assays revealed that AoMbp1 interacts with AoSwi6, another APSES protein. Together, they participate in regulating the cell cycle, meiosis, lipid metabolism, and DNA replication and repair. Collectively, these findings clarify the role and underlying mechanisms of Mbp1 in mycelial development and trap morphogenesis in nematode-trapping fungi.
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