College of Food Science and Engineering, Ocean University of China, Qingdao 266003, China.
College of Food Science and Engineering, Ocean University of China, Qingdao 266003, China; Laboratory for Marine Drugs and Bioproducts of Qingdao National Laboratory for Marine Science and Technology, Qingdao 266237, China.
Food Res Int. 2022 Jul;157:111273. doi: 10.1016/j.foodres.2022.111273. Epub 2022 Apr 21.
In recent years, programmed cell death (PCD) has attracted the attention of many scholars as an active death process. PCD refers to an active extinction process that occurs after cells receive a certain signal or are stimulated by certain factors in order to maintain the stability of the internal environment. It is orchestrated by precise molecular circuitry. Initially, PCD was thought to exhibit altruistic behavior of "active devotion", a physiological characteristic of multicellular organisms. However, many evidences show that PCD also exists in microbe, and researchers in recent years have found that some stressors during modern food processing could cause microbe undergo different forms of programmed death, including ultraviolet, gamma radiation, cold plasma, ultrasound, weak carboxylic acids and HO. The attention to these situations will help researchers to explore novel mechanisms of sterilization. At present, microbial PCD can be further divided into three types, including apoptosis-like death, autolytic death, and toxin-antitoxin systems based on the differences in their intrinsic mechanisms. In order to better utilize these PCD mechanisms, four directions are provided from searching for new antimicrobial targets, development of new types of preservatives, engineering design in the field of synthetic biology and modification of fermentation strains. We believe that this review can provide useful help for scholars to carry out further research on microbial PCD.
近年来,程序性细胞死亡(PCD)作为一种主动的死亡过程引起了许多学者的关注。PCD 是指细胞在接收到某种信号或受到某些因素刺激后,为了维持内部环境的稳定而发生的一种主动灭绝过程。它是由精确的分子电路来协调的。最初,PCD 被认为具有“主动奉献”的利他行为,这是多细胞生物的一种生理特征。然而,许多证据表明 PCD 也存在于微生物中,近年来的研究人员发现,现代食品加工过程中的一些应激源可能导致微生物经历不同形式的程序性死亡,包括紫外线、γ 射线、冷等离子体、超声波、弱羧酸和 HO。对这些情况的关注将有助于研究人员探索新的杀菌机制。目前,根据其内在机制的不同,微生物 PCD 可进一步分为凋亡样死亡、自溶死亡和毒素-抗毒素系统三种类型。为了更好地利用这些 PCD 机制,从寻找新的抗菌靶标、开发新型防腐剂、合成生物学领域的工程设计以及发酵菌株的修饰四个方向提供了建议。我们相信,这篇综述可以为学者们进一步研究微生物 PCD 提供有益的帮助。