Palma Margarida, Guerreiro Joana F, Sá-Correia Isabel
Institute for Bioengineering and Biosciences, Department of Bioengineering, Instituto Superior Técnico, Universidade de Lisboa, Lisbon, Portugal.
Front Microbiol. 2018 Feb 21;9:274. doi: 10.3389/fmicb.2018.00274. eCollection 2018.
Acetic acid is an important microbial growth inhibitor in the food industry; it is used as a preservative in foods and beverages and is produced during normal yeast metabolism in biotechnological processes. Acetic acid is also a major inhibitory compound present in lignocellulosic hydrolysates affecting the use of this promising carbon source for sustainable bioprocesses. Although the molecular mechanisms underlying response and adaptation to acetic acid have been studied for years, only recently they have been examined in more detail in . However, due to its remarkable tolerance to acetic acid and other weak acids this yeast species is a major threat in the spoilage of acidic foods and beverages and considered as an interesting alternative cell factory in Biotechnology. This review paper emphasizes genome-wide strategies that are providing global insights into the molecular targets, signaling pathways and mechanisms behind and tolerance to acetic acid, and extends this information to other weak acids whenever relevant. Such comprehensive perspective and the knowledge gathered in these two yeast species allowed the identification of candidate molecular targets, either for the design of effective strategies to overcome yeast spoilage in acidic foods and beverages, or for the rational genome engineering to construct more robust industrial strains. Examples of successful applications are provided.
乙酸是食品工业中一种重要的微生物生长抑制剂;它被用作食品和饮料中的防腐剂,并且在生物技术过程中酵母的正常代谢过程中产生。乙酸也是木质纤维素水解产物中存在的一种主要抑制性化合物,影响着这种有前景的碳源在可持续生物过程中的利用。尽管多年来一直在研究对乙酸的响应和适应的分子机制,但直到最近才在[具体研究对象]中对其进行了更详细的研究。然而,由于这种酵母对乙酸和其他弱酸具有显著的耐受性,它是酸性食品和饮料变质的主要威胁,并且在生物技术领域被视为一种有趣的替代细胞工厂。这篇综述文章强调了全基因组策略,这些策略为乙酸耐受性和适应性背后的分子靶点、信号通路和机制提供了全局视角,并在相关时将这些信息扩展到其他弱酸。这种全面的视角以及在这两种酵母中积累的知识使得能够识别候选分子靶点,这些靶点既可以用于设计克服酸性食品和饮料中酵母变质的有效策略,也可以用于合理的基因组工程以构建更强大的工业菌株。文中提供了成功应用的实例。