Majumdar Sarangam, Pal Sukla
Dipartimento di Ingegneria Scienze Informatiche e Matematica, Università degli Studi di L' Aquila, Via Vetoio - Loc. Coppito, 67010, L' Aquila, Italy.
Theoretical Physics Division, Physical Research Laboratory, Navrangpura, Ahmedabad, Gujarat, 380009, India.
J Cell Commun Signal. 2018 Jun;12(2):491-502. doi: 10.1007/s12079-018-0462-6. Epub 2018 Feb 23.
Microbes have their own communication systems. Secretion and reception of chemical signaling molecules and ion-channels mediated electrical signaling mechanism are yet observed two special ways of information transmission in microbial community. In this article, we address the aspects of various crucial machineries which set the backbone of microbial cell-to-cell communication process such as quorum sensing mechanism (bacterial and fungal), quorum sensing regulated biofilm formation, gene expression, virulence, swarming, quorum quenching, role of noise in quorum sensing, mathematical models (therapy model, evolutionary model, molecular mechanism model and many more), synthetic bacterial communication, bacterial ion-channels, bacterial nanowires and electrical communication. In particular, we highlight bacterial collective behavior with classical and quantum mechanical approaches (including quantum information). Moreover, we shed a new light to introduce the concept of quantum synthetic biology and possible cellular quantum Turing test.
微生物拥有它们自己的通讯系统。化学信号分子的分泌与接收以及离子通道介导的电信号传导机制是在微生物群落中观察到的两种特殊信息传递方式。在本文中,我们探讨了构成微生物细胞间通讯过程基础的各种关键机制,如群体感应机制(细菌和真菌)、群体感应调控的生物膜形成、基因表达、毒力、群体游动、群体淬灭、噪声在群体感应中的作用、数学模型(治疗模型、进化模型、分子机制模型等等)、合成细菌通讯、细菌离子通道、细菌纳米线和电通讯。特别地,我们用经典和量子力学方法(包括量子信息)突出了细菌的集体行为。此外,我们引入了量子合成生物学的概念以及可能的细胞量子图灵测试,带来了新的见解。