Centre of Molecular and Environmental Biology (CBMA), Department of Biology, University of Minho, 4710-057, Braga, Portugal.
Institute of Microbiology, University of Innsbruck, 6020, Innsbruck, Austria.
Appl Microbiol Biotechnol. 2019 Apr;103(7):2857-2871. doi: 10.1007/s00253-019-09659-5. Epub 2019 Feb 7.
Cold-adapted microorganisms inhabiting permanently low-temperature environments were initially just a biological curiosity but have emerged as rich sources of numerous valuable tools for application in a broad spectrum of innovative technologies. To overcome the multiple challenges inherent to life in their cold habitats, these microorganisms have developed a diverse array of highly sophisticated synergistic adaptations at all levels within their cells: from cell envelope and enzyme adaptation, to cryoprotectant and chaperone production, and novel metabolic capabilities. Basic research has provided valuable insights into how these microorganisms can thrive in their challenging habitat conditions and into the mechanisms of action of the various adaptive features employed, and such insights have served as a foundation for the knowledge-based development of numerous novel biotechnological tools. In this review, we describe the current knowledge of the adaptation strategies of cold-adapted microorganisms and the biotechnological perspectives and commercial tools emerging from this knowledge. Adaptive features and, where possible, applications, in relation to membrane fatty acids, membrane pigments, the cell wall peptidoglycan layer, the lipopolysaccharide component of the outer cell membrane, compatible solutes, antifreeze and ice-nucleating proteins, extracellular polymeric substances, biosurfactants, chaperones, storage materials such as polyhydroxyalkanoates and cyanophycins and metabolic adjustments are presented and discussed.
适应寒冷的微生物栖息在永久性低温环境中,最初只是一种生物学上的好奇心,但现在已经成为许多有价值的工具的丰富来源,可应用于广泛的创新技术中。为了克服在寒冷栖息地生活所固有的多种挑战,这些微生物在细胞的各个层次上都发展出了多种多样的高度复杂的协同适应:从细胞膜和酶的适应,到抗冻剂和伴侣蛋白的产生,以及新的代谢能力。基础研究为我们提供了有价值的见解,了解这些微生物如何在具有挑战性的栖息地条件下茁壮成长,以及各种适应性特征的作用机制,这些见解为基于知识的开发提供了基础许多新的生物技术工具。在这篇综述中,我们描述了适应寒冷的微生物的适应策略的最新知识,以及由此产生的生物技术视角和商业工具。我们介绍和讨论了与膜脂肪酸、膜色素、细胞壁肽聚糖层、外细胞膜的脂多糖成分、相容性溶质、抗冻蛋白和冰核蛋白、胞外聚合物物质、生物表面活性剂、伴侣蛋白、储存物质(如聚羟基烷酸酯和蓝藻素)以及代谢调整有关的适应特征,以及它们的应用。