Dental Research Group, School of Medicine and Health Sciences, University of Otago, Wellington, New Zealand; Department of Microbiology, Faculty of Medical Sciences,University of Sri Jayewardenepura, Sri Lanka.
Dental Research Group, School of Medicine and Health Sciences, University of Otago, Wellington, New Zealand.
Arch Oral Biol. 2017 Oct;82:6-10. doi: 10.1016/j.archoralbio.2017.05.014. Epub 2017 May 22.
The aim was to investigate the relationship between groups of bacteria identified by cluster analysis of the DGGE fingerprints and the amounts and diversity of yeast present.
Bacterial and yeast populations in saliva samples from 24 adults were analysed using denaturing gradient gel electrophoresis (DGGE) of the bacteria present and by yeast culture.
Eubacterial DGGE banding patterns showed considerable variation between individuals. Seventy one different amplicon bands were detected, the band number per saliva sample ranged from 21 to 39 (mean±SD=29.3±4.9). Cluster and principal component analysis of the bacterial DGGE patterns yielded three major clusters containing 20 of the samples. Seventeen of the 24 (71%) saliva samples were yeast positive with concentrations up to 10cfu/mL. Candida albicans was the predominant species in saliva samples although six other yeast species, including Candida dubliniensis, Candida tropicalis, Candida krusei, Candida guilliermondii, Candida rugosa and Saccharomyces cerevisiae, were identified. The presence, concentration, and species of yeast in samples showed no clear relationship to the bacterial clusters.
Despite indications of in vitro bacteria-yeast interactions, there was a lack of association between the presence, identity and diversity of yeasts and the bacterial DGGE fingerprint clusters in saliva. This suggests significant ecological individual-specificity of these associations in highly complex in vivo oral biofilm systems under normal oral conditions.
通过对 DGGE 指纹图谱聚类分析鉴定的细菌群与存在的酵母数量和多样性之间的关系进行研究。
采用变性梯度凝胶电泳(DGGE)分析细菌和酵母培养物,对 24 名成年人唾液样本中的细菌和酵母种群进行分析。
个体间的细菌 DGGE 带型模式存在很大差异。共检测到 71 种不同的扩增子带,每个唾液样本的带数范围为 21 至 39(平均值±标准差=29.3±4.9)。细菌 DGGE 图谱的聚类和主成分分析产生了包含 20 个样本的三个主要聚类。24 个唾液样本中的 17 个(71%)为阳性,酵母浓度高达 10cfu/mL。虽然鉴定出了包括白假丝酵母、都柏林假丝酵母、热带假丝酵母、克柔假丝酵母、光滑假丝酵母和酿酒酵母在内的 6 种其他酵母物种,但唾液样本中仍以白假丝酵母为主。样本中酵母的存在、浓度和种类与细菌聚类无明显关系。
尽管存在体外细菌-酵母相互作用的迹象,但在唾液中,酵母的存在、身份和多样性与细菌 DGGE 指纹聚类之间没有关联。这表明在正常口腔条件下,高度复杂的体内口腔生物膜系统中这些关联具有显著的个体特异性生态性。