Centro de Bioinformática y Simulación Molecular (CBSM), University of Talca, Talca, Chile.
Facultad de Ciencias Biológicas, Universidad Nacional Pedro Ruiz Gallo, Lambayeque, Peru.
Mol Oral Microbiol. 2018 Apr;33(2):168-180. doi: 10.1111/omi.12209. Epub 2018 Feb 1.
During dental caries, the dental biofilm modifies the composition of the hundreds of involved bacterial species. Changing environmental conditions influence competition. A pertinent model to exemplify the complex interplay of the microorganisms in the human dental biofilm is the competition between Streptococcus sanguinis and Streptococcus mutans. It has been reported that children and adults harbor greater numbers of S. sanguinis in the oral cavity, associated with caries-free teeth. Conversely, S. mutans is predominant in individuals with a high number of carious lesions. Competition between both microorganisms stems from the production of H O by S. sanguinis and mutacins, a type of bacteriocins, by S. mutans. There is limited evidence on how S. sanguinis survives its own H O levels, or if it has other mechanisms that might aid in the competition against S. mutans, nonetheless. We performed a genomic and metabolic pathway comparison, coupled with a comprehensive literature review, to better understand the competition between these two species. Results indicated that S. sanguinis can outcompete S. mutans by the production of an enzyme capable of metabolizing H O . S. mutans, however, lacks the enzyme and is susceptible to the peroxide from S. sanguinis. In addition, S. sanguinis can generate energy through gluconeogenesis and seems to have evolved different communication mechanisms, indicating that novel proteins may be responsible for intra-species communication.
在龋齿形成过程中,牙菌斑会改变数百种相关细菌的组成。环境条件的变化会影响竞争。一个恰当的模型可以说明人类牙菌斑中微生物之间复杂的相互作用,例如链球菌和变异链球菌之间的竞争。据报道,儿童和成人的口腔中含有更多的链球菌,与无龋齿的牙齿有关。相反,变形链球菌在龋齿数量较多的个体中占优势。两种微生物之间的竞争源于链球菌产生的 H2O2 和变异链球菌产生的抑菌素,一种细菌素。关于链球菌如何在自身产生的 H2O2 水平下生存,或者它是否有其他可能有助于对抗变异链球菌的机制,目前证据有限。我们进行了基因组和代谢途径比较,并结合全面的文献综述,以更好地了解这两种物种之间的竞争。结果表明,链球菌可以通过产生一种能够代谢 H2O2 的酶来与变异链球菌竞争。然而,变异链球菌缺乏这种酶,容易受到链球菌产生的过氧化物的影响。此外,链球菌可以通过糖异生产生能量,并且似乎已经进化出不同的通讯机制,表明新的蛋白质可能负责种内通讯。