Additional file 5: Additional Figure 4. Number of species and genes detected (N), Chao1 and ACE richness indexes and Shannon diversity index for each study group. Data are shown for all three available datasets (16S rRNA sequencing, shotgun metagenomics [MTG] and RNA sequencing [MTT]). Baseline samples were collected after the washout period. Those comparisons which were significant (p<0,05) according to Wilcoxon test are indicated with *
Objective Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential a...
Objective: Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential ...
Objective: Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential ...
Additional file 3: Additional Figure 2. Differences in bacterial abundance between metagenomic (MTG)...
Additional file 6: Additional Figure 5. Changes in the levels of total and transcriptionally active ...
Additional file 9: Additional Figure 8. Changes in bacterial communities’ gene content and activity ...
Additional file 7: Additional Figure 6. Presence of arginolytic and non-arginolytic bacteria at the ...
Additional file 2: Additional Figure 1. Relationship between sequencing effort and bacterial species...
Additional file 11: Additional Figure 10. Effect of genome-size normalization on taxonomic compositi...
Additional file 8: Additional Figure 7. Metagenomic and metatranscriptomic functional profiles corre...
Additional file 10: Additional Figure 9. Changes in bacterial communities’ gene content and activity...
Additional file 1: Additional Tables 1–17. Additional tables are separated in sheets in a single exc...
Supplemental Figure S2: Functional shifts in the core supragingival microbiome during various dentit...
OBJECTIVES: To assess the effects of an experimental 0.454% stannous fluoride (SnF2) dentifrice on t...
Supplemental Figure S1: Functional shifts in the core salivary microbiome during various dentition s...
Objective Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential a...
Objective: Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential ...
Objective: Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential ...
Additional file 3: Additional Figure 2. Differences in bacterial abundance between metagenomic (MTG)...
Additional file 6: Additional Figure 5. Changes in the levels of total and transcriptionally active ...
Additional file 9: Additional Figure 8. Changes in bacterial communities’ gene content and activity ...
Additional file 7: Additional Figure 6. Presence of arginolytic and non-arginolytic bacteria at the ...
Additional file 2: Additional Figure 1. Relationship between sequencing effort and bacterial species...
Additional file 11: Additional Figure 10. Effect of genome-size normalization on taxonomic compositi...
Additional file 8: Additional Figure 7. Metagenomic and metatranscriptomic functional profiles corre...
Additional file 10: Additional Figure 9. Changes in bacterial communities’ gene content and activity...
Additional file 1: Additional Tables 1–17. Additional tables are separated in sheets in a single exc...
Supplemental Figure S2: Functional shifts in the core supragingival microbiome during various dentit...
OBJECTIVES: To assess the effects of an experimental 0.454% stannous fluoride (SnF2) dentifrice on t...
Supplemental Figure S1: Functional shifts in the core salivary microbiome during various dentition s...
Objective Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential a...
Objective: Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential ...
Objective: Bacterial metabolism of arginine in the oral cavity has a pH-raising and thus, potential ...