Centro de Ciências Naturais e Humanas, Universidade Federal do ABC (UFABC), Alameda da Universidade, s/n, São Bernardo do Campo 09606-045, SP, Brazil.
Núcleo Integrado de Biotecnologia, Universidade de Mogi das Cruzes (UMC), Av. Dr. Cândido Xavier de Almeida Souza, 200, Mogi das Cruzes 08780-911, SP, Brazil.
Int J Mol Sci. 2021 May 26;22(11):5628. doi: 10.3390/ijms22115628.
Autoinducer 2 (or AI-2) is one of the molecules used by bacteria to trigger the Quorum Sensing (QS) response, which activates expression of genes involved in a series of alternative mechanisms, when cells reach high population densities (including bioluminescence, motility, biofilm formation, stress resistance, and production of public goods, or pathogenicity factors, among others). Contrary to most autoinducers, AI-2 can induce QS responses in both Gram-negative and Gram-positive bacteria, and has been suggested to constitute a trans-specific system of bacterial communication, capable of affecting even bacteria that cannot produce this autoinducer. In this work, we demonstrate that the ethanologenic Gram-negative bacterium (a non-AI-2 producer) responds to exogenous AI-2 by modulating expression of genes involved in mechanisms typically associated with QS in other bacteria, such as motility, DNA repair, and nitrogen fixation. Interestingly, the metabolism of AI-2-induced cells seems to favor ethanol production over biomass accumulation, probably as an adaptation to the high-energy demand of N fixation. This opens the possibility of employing AI-2 during the industrial production of second-generation ethanol, as a way to boost N fixation by these bacteria, which could reduce costs associated with the use of nitrogen-based fertilizers, without compromising ethanol production in industrial plants.
自诱导物 2(或 AI-2)是细菌用来触发群体感应(QS)反应的分子之一,当细胞达到高种群密度时(包括生物发光、运动性、生物膜形成、应激抗性和生产公共物品或致病性因子等),它会激活一系列替代机制中涉及的基因表达。与大多数自诱导物不同,AI-2 可以诱导革兰氏阴性和革兰氏阳性细菌的 QS 反应,并且被认为构成了细菌间的跨种交流系统,甚至可以影响不能产生这种自诱导物的细菌。在这项工作中,我们证明了产乙醇的革兰氏阴性菌(非 AI-2 产生菌)通过调节与其他细菌中 QS 相关的机制(如运动性、DNA 修复和固氮)的基因表达来对外源 AI-2 做出反应。有趣的是,AI-2 诱导的细胞的代谢似乎有利于乙醇的产生而不是生物量的积累,这可能是对固氮高能量需求的一种适应。这为在第二代乙醇的工业生产中使用 AI-2 提供了可能性,作为通过这些细菌促进固氮的一种方式,这可以降低使用含氮肥料的成本,而不会影响工业工厂的乙醇生产。