Yeast-secreted compounds with antifungal activity - screening, genetic parts, biosynthetic pathways and regulation [0.03%]
酵母分泌抗真菌化合物-筛选、功能元件、生物合成途径及调控
Alicia Maciá Valero,Min Lu,Sonja Billerbeck
Alicia Maciá Valero
Awareness is rising that antifungal resistance poses a threat to agriculture, food safety, biodiversity and human health. There is a limited number of antifungals available and resistance to all of them has been reported. The development of...
Engineering recombination machinery facilitates the construction of yeast cell factories [0.03%]
工程化基因重组系统促进酵母细胞工厂构建
Nan Jia,Yongjin J Zhou,Jiaoqi Gao
Nan Jia
Advances in genome editing have been promoted by programmable nucleases like CRISPR-Cas9, which triggers endogenous DNA repair mechanisms by inducing double-strand break (DSB). Cellular responses to DSBs are governed by competing repair pat...
Breeding of yeast strains with intracellular amino acid accumulation for value-added alcoholic beverages [0.03%]
用于增值酒精饮料的酵母菌株育种以积累体内氨基酸
Shota Isogai,Akira Nishimura,Hiroshi Takagi
Shota Isogai
The yeast Saccharomyces cerevisiae converts amino acids into volatile compounds with fruity and floral aromas during fermentation. These amino acid-derived aroma compounds play a critical role in defining the taste and flavor of alcoholic b...
Lighting up yeast: Overview of optogenetics in yeast and their applications to yeast biotechnology [0.03%]
点亮酵母:光遗传学在酵母中的概述及其在酵母生物技术中的应用
Jaewan Jang,José L Avalos
Jaewan Jang
Optogenetics is an empowering technology that uses light-responsive proteins to control biological processes. Because of its genetic tractability, abundance of genetic tools, and robust culturing conditions, Saccharomyces cerevisiae has ser...
Evolutionary Engineering and Molecular Characterization of an Antimycin A-Resistant Saccharomyces cerevisiae Strain: the Key Role of Pleiotropic Drug Resistance (PDR1) [0.03%]
进化工程和抗霉素A抗性酵母菌株的分子表征:多药耐药基因(PDR1)的关键作用
A Topaloğlu,C Holyavkin,Ö Esen et al.
A Topaloğlu et al.
Antimycin A, an antifungal agent that inhibits mitochondrial respiration, provides a useful model for studying resistance mechanisms. Antifungal resistance is an escalating clinical concern with limited treatment options available. To under...
Mechanism of the synergistic action of oxythiamine and ketoconazole against the yeast Malassezia pachydermatis [0.03%]
恶拉亭和酮康唑协同抑制马拉色菌的机制研究
Magdalena Czerniecka,Adam Więcko,Adam Tylicki
Magdalena Czerniecka
This article explains the biochemical basis of the synergistic effect of oxythiamine and ketoconazole against Malassezia pachydermatis yeast, which was isolated from dogs exhibiting clinical signs of otitis externa. All strains were incubat...
The Southern Hemisphere Yeast Frontier: From nature dwellers to accomplished fermenters [0.03%]
南半球的酵母边疆:从自然栖居者到卓越发酵者
T Knezevic,P Villarreal,F A Cubillos et al.
T Knezevic et al.
Yeast biodiversity has been extensively investigated by wealthy countries of the Northern Hemisphere. In contrast, despite the widespread use of fermentation practices in the Southern Hemisphere, yeast diversity in this region remains large...
Correction to: Recent progress in engineering yeast producers of cellulosic ethanol [0.03%]
关于工程酵母生产纤维素乙醇近期进展的更正 notice of correction to recent progress in engineering yeast producers of cellulosic ethanol
Published Erratum
FEMS yeast research. 2025 Jan 30:25:foaf061. DOI:10.1093/femsyr/foaf061 2025
Ewelina Celińska
Ewelina Celińska
Stress-induced ribosomal heterogeneity in Saccharomyces cerevisiae: from protein paralogs to regulatory noncoding RNAs [0.03%]
应激引起的酿酒酵母核糖体异质性:从蛋白旁系同源物到调控非编码RNA
Agata Tyczewska,Kamilla Bąkowska-Żywicka
Agata Tyczewska
Ribosomes, once considered uniform protein biosynthesis machines, are now recognized as heterogeneous and dynamic entities with specialized functions. In Saccharomyces cerevisiae, ribosomal heterogeneity arises from variability in ribosomal...