UNLOCK, Wageningen University & Research and Technical University Delft, Droevendaalsesteeg 4, 6708 PB,Wageningen, the Netherlands.
Department of Food Hygiene and Technology and Institute of Food Science and Technology, Universidad de León, Campus de Vegazana s/n, 24071 León, Spain.
FEMS Microbiol Rev. 2024 Jan 12;48(1). doi: 10.1093/femsre/fuad062.
Awareness is growing that human health cannot be considered in isolation but is inextricably woven with the health of the environment in which we live. It is, however, under-recognized that the sustainability of human activities strongly relies on preserving the equilibrium of the microbial communities living in/on/around us. Microbial metabolic activities are instrumental for production, functionalization, processing, and preservation of food. For circular economy, microbial metabolism would be exploited to produce building blocks for the chemical industry, to achieve effective crop protection, agri-food waste revalorization, or biofuel production, as well as in bioremediation and bioaugmentation of contaminated areas. Low pH is undoubtedly a key physical-chemical parameter that needs to be considered for exploiting the powerful microbial metabolic arsenal. Deviation from optimal pH conditions has profound effects on shaping the microbial communities responsible for carrying out essential processes. Furthermore, novel strategies to combat contaminations and infections by pathogens rely on microbial-derived acidic molecules that suppress/inhibit their growth. Herein, we present the state-of-the-art of the knowledge on the impact of acidic pH in many applied areas and how this knowledge can guide us to use the immense arsenal of microbial metabolic activities for their more impactful exploitation in a Planetary Health perspective.
人们越来越意识到,人类健康不能被孤立地考虑,而是与我们生活的环境健康密不可分。然而,人们认识不足的是,人类活动的可持续性强烈依赖于保护生活在我们周围的微生物群落的平衡。微生物的代谢活动对食品的生产、功能化、加工和保存至关重要。为了实现循环经济,微生物代谢将被用于生产化学工业的基础原料,以实现有效的作物保护、农业食品废物再利用或生物燃料生产,以及受污染地区的生物修复和生物增强。低 pH 值无疑是需要考虑的关键理化参数,以利用强大的微生物代谢武器库。偏离最佳 pH 值条件会对负责进行基本过程的微生物群落产生深远影响。此外,对抗病原体污染和感染的新策略依赖于微生物衍生的酸性分子,这些分子抑制/抑制它们的生长。本文介绍了酸性 pH 值在许多应用领域的最新知识,以及这些知识如何指导我们利用微生物代谢活动的巨大武器库,从行星健康的角度更有效地利用它们。