Microbiology & Ryan Institute, School of Natural Sciences, National University of Ireland, Galway, Ireland.
Microbiology & Ryan Institute, School of Natural Sciences, National University of Ireland, Galway, Ireland.
Adv Microb Physiol. 2021;79:133-162. doi: 10.1016/bs.ampbs.2021.07.002. Epub 2021 Aug 13.
All living cells strive to allocate cellular resources in a way that promotes maximal evolutionary fitness. While there are many competing demands for resources the main decision making process centres on whether to proceed with growth and reproduction or to "hunker down" and invest in protection and survival (or to strike an optimal balance between these two processes). The transcriptional programme active at any given time largely determines which of these competing processes is dominant. At the top of the regulatory hierarchy are the sigma factors that commandeer the transcriptional machinery and determine which set of promoters are active at any given time. The regulatory inputs controlling their activity are therefore often highly complex, with multiple layers of regulation, allowing relevant environmental information to produce the most beneficial response. The tension between growth and survival is also evident in the developmental programme necessary to promote biofilm formation, which is typically associated with low growth rates and enhanced long-term survival. Nucleotide second messengers and energy pools (ATP/ADP levels) play critical roles in determining the fate of individual cells. Regulatory small RNAs frequently play important roles in the decision making processes too. In this review we discuss the trade-off that exists between reproduction and persistence in bacteria and discuss some of the recent advances in this fascinating field.
所有活细胞都在努力以促进最大进化适应性的方式分配细胞资源。虽然资源有许多竞争需求,但主要的决策过程集中在是继续生长和繁殖,还是“蹲下”并投资于保护和生存(或者在这两个过程之间取得最佳平衡)。在任何给定时间活跃的转录程序在很大程度上决定了哪些竞争过程占主导地位。在调控层次结构的顶端是西格玛因子,它们指挥转录机制并确定在任何给定时间哪些启动子处于活跃状态。因此,控制它们活性的调控输入通常非常复杂,具有多层调节,使相关环境信息产生最有益的反应。生长和生存之间的紧张关系也在促进生物膜形成所需的发育程序中显而易见,生物膜形成通常与低生长速率和增强的长期生存能力相关。核苷酸第二信使和能量池(ATP/ADP 水平)在决定单个细胞命运方面起着关键作用。调节性小 RNA 也经常在决策过程中发挥重要作用。在这篇综述中,我们讨论了细菌中繁殖和持久性之间存在的权衡,并讨论了这个迷人领域的一些最新进展。