Sapi Eva, Theophilus Priyanka A S, Pham Truc V, Burugu Divya, Luecke David F
Department of Biology and Environmental Science, University of New Haven , West Haven, CT 06516, USA.
Eur J Microbiol Immunol (Bp). 2016 Nov 3;6(4):272-286. doi: 10.1556/1886.2016.00026. eCollection 2016 Dec 1.
, the causative agent of Lyme disease, is capable of forming biofilm and , a structure well known for its resistance to antimicrobial agents. For the formation of biofilm, signaling processes are required to communicate with the surrounding environment such as it was shown for the RpoN-RpoS alternative sigma factor and for the LuxS quorum-sensing pathways. Therefore, in this study, the wild-type and different mutant strains lacking RpoN, RpoS, and LuxS genes were studied for their growth characteristic and development of biofilm structures and markers as well as for their antibiotic sensitivity. Our results showed that all three mutants formed small, loosely formed aggregates, which expressed previously identified biofilm markers such as alginate, extracellular DNA, and calcium. All three mutants had significantly different sensitivity to doxycyline in the early log phase spirochete cultures; however, in the biofilm rich stationary cultures, only LuxS mutant showed increased sensitivity to doxycyline compared to the wild-type strain. Our findings indicate that all three mutants have some effect on biofilm, but the most dramatic effect was found with LuxS mutant, suggesting that the quorum-sensing pathway plays an important role of biofilm formation and antibiotic sensitivity.
莱姆病的病原体能够形成生物膜,这种结构以其对抗菌剂的抗性而闻名。生物膜的形成需要信号传导过程来与周围环境进行沟通,如在RpoN - RpoS替代西格玛因子和LuxS群体感应途径中所显示的那样。因此,在本研究中,对野生型以及缺乏RpoN、RpoS和LuxS基因的不同突变菌株进行了研究,以了解它们的生长特性、生物膜结构和标志物的形成以及它们的抗生素敏感性。我们的结果表明,所有三种突变体都形成了小的、松散形成的聚集体,这些聚集体表达了先前确定的生物膜标志物,如藻酸盐、细胞外DNA和钙。在早期对数期螺旋体培养物中,所有三种突变体对强力霉素的敏感性都有显著差异;然而,在富含生物膜的稳定期培养物中,与野生型菌株相比,只有LuxS突变体对强力霉素的敏感性增加。我们的研究结果表明,所有三种突变体对生物膜都有一定影响,但LuxS突变体的影响最为显著,这表明群体感应途径在生物膜形成和抗生素敏感性中起着重要作用。