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  • Author: Pradal M
  • References

Author: Pradal M


References 10 references


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  • Piva GG, et al. (2023) Unveiling the power of adding sterols in wine: Optimizing alcoholic fermentation with strategic management. Int J Food Microbiol 406:110350 PMID:37659280
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  • Girardi-Piva G, et al. (2022) Influence of ergosterol and phytosterols on wine alcoholic fermentation with Saccharomyces cerevisiae strains. Front Microbiol 13:966245 PMID:36160262
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  • Harlé O, et al. (2021) Correction: Investigations of the mechanisms of interactions between four non-conventional species with Saccharomyces cerevisiae in oenological conditions. PLoS One 16(6):e0253680 PMID:34138978
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  • Tesnière C, et al. (2021) Sterol uptake analysis in Saccharomyces and non-Saccharomyces wine yeast species. FEMS Yeast Res 21(3) PMID:33852000
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  • Harlé O, et al. (2020) Investigations of the mechanisms of interactions between four non-conventional species with Saccharomyces cerevisiae in oenological conditions. PLoS One 15(5):e0233285 PMID:32453779
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  • Tesnière C, et al. (2019) Relief from nitrogen starvation entails quick unexpected down-regulation of glycolytic/lipid metabolism genes in enological Saccharomyces cerevisiae. PLoS One 14(4):e0215870 PMID:31022239
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  • Tesnière C, et al. (2018) Relief from nitrogen starvation triggers transient destabilization of glycolytic mRNAs in Saccharomyces cerevisiae cells. Mol Biol Cell 29(4):490-498 PMID:29282283
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  • Duc C, et al. (2017) A set of nutrient limitations trigger yeast cell death in a nitrogen-dependent manner during wine alcoholic fermentation. PLoS One 12(9):e0184838 PMID:28922393
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  • Tesnière C, et al. (2013) Impact of nutrient imbalance on wine alcoholic fermentations: nitrogen excess enhances yeast cell death in lipid-limited must. PLoS One 8(4):e61645 PMID:23658613
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  • Delobel P, et al. (2012) A 'fragile cell' sub-population revealed during cytometric assessment of Saccharomyces cerevisiae viability in lipid-limited alcoholic fermentation. Lett Appl Microbiol 55(5):338-44 PMID:22909384
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