Frozen dough technology enables industrial-scale production of baked foods, yet freeze-thaw damage -particular yeast activity loss - remains a critical bottleneck. This study evaluated an ultra-tolerant Saccharomyces cerevisiae strain developed via hybrid fusion evolution using a - 20 °C, 4-day frozen dough model. The evolved strain demonstrated superior industrial adaptability, achieving >80 % specific volume retention (vs. 52-54 % in parental strains) and limiting the increase in hardness to only 38 %-49 % (vs. 69 %-102 % in parental strains). Untargeted metabolomics revealed multiple tolerance mechanisms in the evolved strain. These included enhanced unsaturation of membrane lipids (e.g., phosphatidylcholine (PC) (18:3)), accumulation of intermediates from the mevalonate pathway, upregulation of key antioxidant compounds including dihydrobiopterin and spermidine analogs, and a shift in energy metabolism involving coenzyme-related pathways. These molecular adaptations were supported by increased antioxidant capacity, as shown by DPPH, ABTS, and FRAP assays, and by maintained membrane integrity, confirmed through field-emission scanning electron microscopy. Overall, this study provides ultra-freeze-thaw-tolerant yeast strains along with mechanistic insights that support improved frozen dough quality, higher production efficiency, and greater sustainable in baking applications.
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| Evidence ID | Analyze ID | Gene/Complex | Systematic Name/Complex Accession | Qualifier | Gene Ontology Term ID | Gene Ontology Term | Aspect | Annotation Extension | Evidence | Method | Source | Assigned On | Reference |
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| Evidence ID | Analyze ID | Gene | Gene Systematic Name | Phenotype | Experiment Type | Experiment Type Category | Mutant Information | Strain Background | Chemical | Details | Reference |
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| Evidence ID | Analyze ID | Gene | Gene Systematic Name | Disease Ontology Term | Disease Ontology Term ID | Qualifier | Evidence | Method | Source | Assigned On | Reference |
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| Evidence ID | Analyze ID | Regulator | Regulator Systematic Name | Target | Target Systematic Name | Direction | Regulation of | Happens During | Regulator Type | Direction | Regulation Of | Happens During | Method | Evidence | Strain Background | Reference |
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| Site | Modification | Modifier | Source | Reference |
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| Evidence ID | Analyze ID | Interactor | Interactor Systematic Name | Interactor | Interactor Systematic Name | Allele | Assay | Annotation | Action | Phenotype | SGA score | P-value | Source | Reference | Note |
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| Evidence ID | Analyze ID | Interactor | Interactor Systematic Name | Interactor | Interactor Systematic Name | Assay | Annotation | Action | Modification | Source | Reference | Note |
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| Complement ID | Locus ID | Gene | Species | Gene ID | Strain background | Direction | Details | Source | Reference |
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| Evidence ID | Analyze ID | Dataset | Description | Keywords | Number of Conditions | Reference |
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