Department of Biological Sciences, Universidad de los Andes, Bogotá 111711, Colombia.
School of Sciences, Universidad de los Andes, Bogotá 111711, Colombia.
Viruses. 2020 Sep 26;12(10):1091. doi: 10.3390/v12101091.
Since the discovery of phages in 1915, these viruses have been studied mostly in aerobic systems, or without considering the availability of oxygen as a variable that may affect the interaction between the virus and its host. However, with such great abundance of anaerobic environments on the planet, the effect that a lack of oxygen can have on the phage-bacteria relationship is an important consideration. There are few studies on obligate anaerobes that investigate the role of anoxia in causing infection. In the case of facultative anaerobes, it is a well-known fact that their shifting from an aerobic environment to an anaerobic one involves metabolic changes in the bacteria. As the phage infection process depends on the metabolic state of the host bacteria, these changes are also expected to affect the phage infection cycle. This review summarizes the available information on phages active on facultative and obligate anaerobes and discusses how anaerobiosis can be an important parameter in phage infection, especially among facultative anaerobes.
自 1915 年噬菌体被发现以来,这些病毒主要在有氧系统中进行研究,或者不考虑氧气的可用性作为一个可能影响病毒与其宿主相互作用的变量。然而,由于地球上存在大量的厌氧环境,缺氧对噬菌体-细菌关系的影响是一个重要的考虑因素。关于专性厌氧菌的研究很少,这些研究调查了缺氧在引起感染方面的作用。对于兼性厌氧菌,众所周知,它们从有氧环境转变为无氧环境会导致细菌发生代谢变化。由于噬菌体感染过程依赖于宿主细菌的代谢状态,这些变化预计也会影响噬菌体感染周期。这篇综述总结了关于专性和兼性厌氧菌的噬菌体的现有信息,并讨论了厌氧条件如何成为噬菌体感染的一个重要参数,特别是在兼性厌氧菌中。