Universidade de Brasília - UnB, Faculty of Heath Sciences, Department of Dentistry, Brasília, DF, Brazil.
Univeridade Federal do Rio Grande do Sul - UFRGS, Faculty of Dentistry, Department of Social and Preventive Dentistry, Porto Alegre, RS, Brazil.
Braz Oral Res. 2020 May 8;34:e042. doi: 10.1590/1807-3107bor-2020.vol34.0042.
A few investigations of caries biofilms have identified Scardovia spp.; however, little is known about its involvement in caries pathogenesis. The purpose of this study was to assess the gene expression profile of Scardovia spp. in root caries, and compare it with other microorganisms. Clinical samples from active root caries lesions were collected. Microbial mRNA was isolated and cDNA sequenced. The function and composition of the Scardovia were investigated using two methods: a) de novo assembly of the read data and mapping to contigs, and b) reads mapping to reference genomes. Pearson correlation was performed (p < 0.05). Proportion of Scardovia inopinata and Scardovia wiggsiae sequences ranged from 0-6% in the root caries metatranscriptome. There was a positive correlation between the transcriptome of Lactobacillus spp. and Scardovia spp. (r = 0.70; p = 0.03), as well as with other Bifidobacteriaceae (r = 0.91; p = 0.0006). Genes that code for fructose 6-phosphate phosphoketolase (the key enzyme for "Bifid shunt"), as well as ABC transporters and glycosyl-hydrolases were highly expressed. In conclusion, "Bifid shunt" and starch metabolism are involved in carbohydrate metabolism of S. inopinata and S. wiggsiae in root caries. There is a positive correlation between the metabolism abundance of Lactobacillus spp., Bifidobacteriaceae members, and Scardovia in root caries.
一些龋齿生物膜的研究已经鉴定出 Scardovia 属;然而,关于其在龋齿发病机制中的作用知之甚少。本研究旨在评估 Scardovia 属在根龋中的基因表达谱,并与其他微生物进行比较。从活动性根龋病变中采集临床样本。分离微生物 mRNA 并进行 cDNA 测序。使用两种方法研究 Scardovia 的功能和组成:a) 从头组装读数据并映射到 contigs,b) 将读数据映射到参考基因组。进行了 Pearson 相关性分析(p<0.05)。在根龋转录组中,Scardovia inopinata 和 Scardovia wiggsiae 序列的比例范围为 0-6%。Lactobacillus spp. 和 Scardovia spp. 的转录组之间存在正相关(r=0.70;p=0.03),与其他双歧杆菌科也存在正相关(r=0.91;p=0.0006)。编码果糖 6-磷酸磷酸酮醇酶(“双歧分流”的关键酶)以及 ABC 转运蛋白和糖苷水解酶的基因表达水平较高。结论:“双歧分流”和淀粉代谢参与了根龋中 S. inopinata 和 S. wiggsiae 的碳水化合物代谢。在根龋中,Lactobacillus spp.、双歧杆菌科成员和 Scardovia 的代谢丰度之间存在正相关。