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◆ Journal of fungi (Basel, Switzerland)2026-09-01

Saccharomycopsis schoenii: A Model Predatory Yeast Provides Insights into Evolution, Genomics and Biocontrol.

Divya Kriti, Marjan Barazandeh, Joseph Uche Ogbede, Guri Giaever, Corey Nislow

原始摘要(英文原文)· Original abstract
Fungal mycoparasitism, where one fungus preys on another, offers a sustainable, eco-friendly alternative to synthetic chemical fungicides in agriculture and conventional antifungal therapies to manage clinical pathogens. The budding yeast Saccharomycopsis schoenii has emerged as a compelling model for contact-dependent, necrotrophic predation. Belonging to the CUG-Ser2 clade, its obligate predatory lifestyle is characterized by extensive genomic restructuring, including the loss of the sulfate assimilation pathway, which couples methionine starvation to a predatory behavioral switch. In this review, we highlight recent comparative genomics and functional studies as they relate to S. schoenii predation. For example, S. schoenii uses rewired mitogen-activated protein kinase (MAPK) signaling, actin-based penetration pegs and a large tandem expansion of secreted aspartic proteases (SAPs) to breach prey cell walls. Analysis of its genome reveals structural adaptations, including AT-rich regional centromeres and dispersed mating-type (MAT) loci. The more we learn about S. schoenii's contact-dependent attack, the greater the opportunities to deploy S. schoenii as a safe, mycotoxin-free biocontrol agent against both multi-drug-resistant Candida auris and post-harvest Penicillium molds.
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Saccharomycopsis schoenii: A Model Predatory Yeast Provides Insights into Evolution, Genomics and Biocontrol. — 科研速览 Science Skim