Barriuso Jorge, Martínez María J
Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas, Madrid, Spain.
Front Microbiol. 2018 Jun 7;9:1243. doi: 10.3389/fmicb.2018.01243. eCollection 2018.
(QS) is a sophisticated cell to cell signaling mechanism mediated by small diffusible molecules called "autoinducers." This phenomenon is well studied in bacteria, where different QS systems are described that differ between Gram-negative and Gram-positive bacteria. However, a common system to these groups was discovered, the autoinducer 2. QS has implications in biofilm formation, where the application of metagenomic techniques to study these phenomena may be useful to understand the communication networks established by the different components of the community, and to discover new targets for microbial control. Here we present an screening of QS proteins in all publicly available biofilm metagenomes from the JGI database. We performed sequence, conserved motifs, phylogenetic, and three-dimensional structure analyses of the candidates, resulting in an effective strategy to search QS proteins in metagenomes sequences. The number of QS proteins present in each sample, and its phylogenetic affiliation, was clearly related to the bacterial diversity and the origin of the biofilm. The samples isolated from natural habitats presented clear differences with those from artificial habitats. Interesting findings have been made in the abundance of LuxR-like proteins finding an unbalanced ratio between the synthases and the receptor proteins in Bacteroidetes bacteria, pointing out the existence of "cheaters" in this group. Moreover, we have shown the presence of the LuxI/R QS system in bacteria from the Nitrospira taxonomic group. Finally, some undescribed proteins from the HdtS family have been found in Gamma-proteobacteria.
群体感应(QS)是一种复杂的细胞间信号传导机制,由称为“自诱导物”的小分子介导。这种现象在细菌中得到了充分研究,其中描述了革兰氏阴性菌和革兰氏阳性菌之间不同的QS系统。然而,发现了这些菌群共有的一个系统——自诱导物2。群体感应与生物膜形成有关,在生物膜形成过程中,应用宏基因组技术研究这些现象可能有助于理解群落不同组成部分建立的通讯网络,并发现微生物控制的新靶点。在此,我们对JGI数据库中所有公开可用的生物膜宏基因组中的群体感应蛋白进行了筛选。我们对候选蛋白进行了序列、保守基序、系统发育和三维结构分析,从而形成了一种在宏基因组序列中搜索群体感应蛋白的有效策略。每个样本中群体感应蛋白的数量及其系统发育归属与细菌多样性和生物膜来源明显相关。从自然栖息地分离的样本与从人工栖息地分离的样本存在明显差异。在类LuxR蛋白的丰度方面有有趣的发现,即拟杆菌中合成酶和受体蛋白之间的比例失衡,表明该菌群中存在“欺骗者”。此外,我们还证明了硝化螺旋菌分类群中的细菌存在LuxI/R群体感应系统。最后,在γ-变形菌中发现了一些未描述的HdtS家族蛋白。