| Literature DB >> 31317029 |
Maria Wiese1, Yuriy Bashmakov2, Natalia Chalyk3, Dennis Sandris Nielsen1, Łukasz Krych1, Witold Kot4, Victor Klochkov3, Dmitry Pristensky2, Tatyana Bandaletova5, Marina Chernyshova2, Nigel Kyle2, Ivan Petyaev2.
Abstract
Lycopene rich food and dark chocolate are among the best-documented products with a broad health benefit. This study explored the systemic effect of lycopene and dark chocolate (DC) on gut microbiota, blood, liver metabolism, skeletal muscle tissue oxygenation and skin. 30 volunteers were recruited for this trial, 15 women and 15 men with a mean age of 55 ± 5.7 years and with moderate obesity, 30 < BMI < 35 kg/m2. They were randomized and divided into five equal interventional groups: three received different formulations of lycopene, one of them with a 7 mg daily dose and two with 30 mg; another group was given 10 g of DC with 7 mg lycopene embedded into its matrix, and the last group received 10 g DC. The trial was double-blinded for the three lycopene groups and separately for the 2 DC groups; the trial lasted for 1 month. By the end of the trial there were dose-dependent changes in the gut microbiota profile in all three lycopene groups with an increase of relative abundance of, e.g., Bifidobacterium adolescentis and Bifidobacterium longum. This was also accompanied by dose-dependent changes in the blood, liver metabolism, skeletal muscle and skin parameters. Consumption of DC resulted in increased relative abundance of, e.g., Lactobacillus and a reduction of corneocyte exfoliation. This is the first study which reports the prebiotic potential of lycopene and DC.Entities:
Year: 2019 PMID: 31317029 PMCID: PMC6604498 DOI: 10.1155/2019/4625279
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Baseline values.
| BASELINE CHARACTERISTICS OF THE ENROLLED VOLUNTEERS | |||||
|---|---|---|---|---|---|
| Groups | |||||
| I | II | III | IV | V | |
| Number of Patients | 6 | 6 | 6 | 6 | 6 |
|
| |||||
| Males | 3 | 2 | 4 | 3 | 3 |
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| |||||
| Females | 3 | 4 | 2 | 3 | 3 |
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| |||||
| Age | 61.8±5.9 | 56.2±5.9 | 56.1±5.8 | 52.1±5.1 | 63.2±6.1 |
|
| |||||
| Light/Moderate Smokers | 1 | 1 | 1 | 1 | 1 |
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| |||||
| Body Mass Index in kg/m2 | 32.1±2.4 | 32.7±3.3 | 33.8±3.5 | 31.1±3.2 | 31.8±2.9 |
|
| |||||
| Fasting Glucose mmol/dL | 6.1±0.42 | 6.0±0.45 | 5.7±0.49 | 5.4±0.43 | 5.5±0.56 |
|
| |||||
| Total Cholesterol mg/dL | 185 ± 14.3 | 181 ± 15.2 | 175 ± 14.7 | 187 ± 16.2 | 180 ± 13.9 |
|
| |||||
| Triglycerides mg/dl | 135±14.9 | 136±13.8 | 136±13.8 | 127±13.1 | 122±13.5 |
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| |||||
| LDL mg/dL | 144±11.8 | 143±12.7 | 121±12.2 | 137±13.6 | 131±12.1 |
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| |||||
| HDL mg/dL | 41.9±3.2 | 46.5±4.4 | 51.2±4.7 | 49.8±4.4 | 44.0±4.4 |
|
| |||||
| Pulse rate per min | 66.7±4.2 | 67.7±3.5 | 65.2±3.4 | 70.5±3.9 | 66.6±5.1 |
|
| |||||
| Blood Pressure | |||||
|
| |||||
| Systolic | 112±5.5 | 123±7.4 | 117±6.9 | 124±8.5 | 118±6.7 |
|
| |||||
| Diastolic | 77.6±4.4 | 78.7±5.0 | 77.6±4.4 | 76.7±4.6 | 79±5.6 |
Changes in blood and tissue parameters after supplementation with GA lycopene for one month.
| Parameters before and after 4 weeks of the trial | Groups | ||||
|---|---|---|---|---|---|
| I | II | III | IV | V | |
| Lycopene in serum, in ng/ml | |||||
| before | 110 ± 17 | 110 ± 12 | 210 ± 19 | 90 ± 8.4 | 120 ± 22 |
| after | 500 ± 52 | 310 ± 30 | 430 ± 30 | 190 ± 14 | 170 ± 27 |
|
| |||||
| Lycopene in cerumen, in ng/g | |||||
| before | 53 ± 9.5 | 40 ± 5.5 | 70 ± 10.2 | 750 ± 93 | 14 ± 7.6 |
| after | 102 ± 12.4 | 100 ± 12.5 | 90 ± 11.5 | 2,500 ± 237 | 12 ± 5.5 |
|
| |||||
| Triglycerides mg/dL | |||||
| before | 135±14.9 | 155 ± 12.1 | 128 ± 9.7 | 126 ± 10.2 | 122±13.5 |
| after | 133± 11.5 | 150 ± 11.3 | 110 ± 8.5 | 123 ± 10.1 | 118 ± 11.7 |
|
| |||||
| LDL, in mg/dL | |||||
| before | 144±12.5 | 143 ± 12.4 | 121 ± 10.5 | 137 ± 11.7 | 131±12.1 |
| after | 139 ± 10.1 | 134 ± 11.2 | 104 ± 9.8 | 124 ± 10.3 | 129 ± 10.2 |
|
| |||||
| HDL, in mg/dL | |||||
| before | 41.9±2.9 | 46.5 ± 3.7 | 49.8 ± 3.9 | 50.1 ± 4.2 | 44.0±2.2 |
| after | 42.2 ± 3.1 | 47.8 ± 3.9 | 50.0 ± 4.6 | 51.2 ± 4.4 | 45.1 ± 2.4 |
|
| |||||
| IOD, in | |||||
| before | 142 ± 9.2 | 141 ± 12.7 | 115 ± 10.9 | 164 ± 5.8 | 177 ± 12.1 |
| after | 101 ± 8.7 | 92 ± 8.8 | 46 ± 4.5 | 42 ± 3.7 | 153 ± 11.9 |
|
| |||||
| LDL-Px, in ELISA × 103 | |||||
| before | 310 ± 29 | 550 ± 61 | 664 ± 63 | 420 ± 45 | 450 ± 41 |
| after | 250 ± 24 | 350 ± 29 | 379 ± 34 | 130 ± 12 | 370 ± 32 |
|
| |||||
| Lipoprotein O2, in | |||||
| before | 4.07 ± 0.29 | 3.89 ± 0.35 | 3.86 ± 0.32 | 3.07 ± 0.29 | 3.67 ± 0.31 |
| after | 5.26 ± 0.33 | 4.64 ± 0.33 | 4.55 ± 0.39 | 3.44 ± 0.27 | 5.27 ± 0.39 |
|
| |||||
| StO2, in AUC mm | |||||
| before | 81 ± 6.4 | 66 ± 5.2 | 67 ± 5.1 | 59 ± 4.4 | 76 ± 5.5 |
| after | 88 ± 6.9 | 79 ± 6.1 | 83 ± 7.1 | 79 ± 6.3 | 76 ± 6.3 |
∗ p < 0.05, ∗∗p < 0.001.
Changes in sebum, and corneocyte parameters of the skin after supplementation with GA lycopene for one month.
| Parameters before and after 4 weeks of trial | Groups with GA Lycopene supplementation | ||||
|---|---|---|---|---|---|
| I | II | III | IV | V | |
| Sebum droplet size, in | |||||
| before | 4.6 ± 1.11 | 3.96 ± 0.17 | 3.72 ± 0.43 | 3.89 ± 0.21 | 4.9 ± 0.53 |
| after | 5.1 ± 0.75 | 4.14 ± 0.11 | 4.20 ± 0.88 | 3.94 ± 0.22 | 4.9 ± 0.57 |
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| |||||
| Corneocyte exfoliation rate§ | |||||
| before | 66 ± 6.8 | 82 ± 7.8 | 83 ± 9.3 | 87 ± 9.5 | 61 ± 6.2 |
| after | 63 ± 6.2 | 73 ± 12.0 | 76 ± 7.7 | 67 ± 13.5 | 60 ± 6.9 |
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| Corneocyte damage§§ | |||||
| before | 4.2 ± 0.98 | 7.19 ± 2.47 | 3.40 ± 0.97 | 3.50 ± 1.16 | 2.0 ± 1.98 |
| after | 2.5 ± 0.43 | 3.80 ± 1.23 | 2.41 ± 0.76 | 2.17 ± 0.52 | 1.8 ± 1.23 |
∗ p < 0.05, ∗∗p < 0.001.
§as an average number of single corneocytes in stratum cornea, §§as an average number of cross-linked damaged corneocyte clusters in stratum cornea; each parameter was calculated in 40 randomly selected microscopic areas (x 1,000).
Figure 1Changes in skin parameters after supplementation with 7 mg of GA lycopene for one month. Typical skin smear samples: lipid droplets of the sebum were stained with Oil Red O, and corneocytes with hematoxylin, eosin at 1,000× magnification.
Figure 2Bacterial relative abundance (Phylum level) of the different intervention groups before and after the 4 weeks of intervention as determined by 16S rRNA gene amplicon sequencing. (Group I) fortified with 7 mg lycopene - 10 g dark chocolate 7 mg DCL, (Group II) 7 mg of lycopene in a capsule 7 mg GAL-MSFA, (Group III) 30 mg of lycopene in cardiovascular GAL-MSFA, (Group IV) 30 mg lycopene liver targeting/liver health GAL-PUFA. (Group V) 10 g of dark chocolate DC.
Average relative species compositions of gut microbial communities for the intervention groups 7 mg GAL-MSFA, 30 mg GAL-MSFA, 30 GAL-PUFA at different doses at the beginning and at the end of the intervention study.
| 7 mg | GAL MSFA | 30 mg | .GAL MSFA | 30 mg | GAL PUFA | ||||
|---|---|---|---|---|---|---|---|---|---|
| Phyla | Family | Genera | Species | II_Day_0 | II_Week_4 | III_Day_0 | III_Week_4 | IV_Day_0 | IV_Week_4 |
| Bacteroidetes | Porphyromonadaceae |
|
| 0,36 | 0,09 | 0,04 | 0,04 | 0,04 | 0,05 |
| Bacteroidetes | S24-7 | 0,73 | 1,72 | 0,15 | 0,48 | 0,07 | 0,2 | ||
| Bacteroidetes | Porphyromonadaceae |
| 0,33 | 0,1 | 0,68 | 0,09 | 0,05 | 0,24 | |
| Bacteroidetes | [Paraprevotellaceae] |
| 0,11 | 0,05 | 0,26 | 0,03 | 0,01 | 0 | |
| Bacteroidetes | Bacteroidaceae |
| 8,59 | 2,58 | 0,91 | 3,14 | 0,74 | 0,95 | |
| Bacteroidetes | Bacteroidaceae |
|
| 0,08 | 0,04 | 0,03 | 0,02 | 0,01 | 0 |
| Bacteroidetes | 0,77 | 1,14 | 0,31 | 0 | 0,08 | 0,02 | |||
| Bacteroidetes | Prevotellaceae |
|
| 13,52 | 12,2 | 8,52 | 0,38 | 0,8 | 0,13 |
| Bacteroidetes | Bacteroidaceae |
|
| 0,09 | 0,01 | 0,02 | 0,01 | 0 | 0 |
| Bacteroidetes | Bacteroidaceae |
|
| 0,15 | 0,04 | 0,04 | 0,1 | 0,09 | 0,26 |
| Bacteroidetes | Prevotellaceae |
| 0,26 | 0,19 | 0,38 | 0 | 0,2 | 0 | |
| Bacteroidetes | Prevotellaceae |
|
| 1,24 | 0,52 | 0,15 | 0 | 0,11 | 0,03 |
| Bacteroidetes | Rikenellaceae | 2,18 | 0,57 | 0,2 | 1,33 | 0,34 | 0,39 | ||
| Bacteroidetes | Bacteroidaceae |
|
| 0,49 | 0,99 | 0,15 | 1,22 | 2 | 0,01 |
| Bacteroidetes | [Odoribacteraceae] |
| 0,08 | 0,03 | 0,03 | 0,04 | 0,02 | 0,01 | |
| Bacteroidetes | [Paraprevotellaceae] |
| 1,16 | 0,5 | 0,21 | 0 | 0,04 | 0,02 | |
| Bacteroidetes | [Barnesiellaceae] | 0,71 | 0,07 | 0,02 | 0,1 | 0,05 | 0,06 | ||
| Bacteroidetes | Bacteroidaceae |
|
| 0,24 | 0,03 | 0,08 | 0,11 | 0,03 | 0,34 |
|
| |||||||||
| Actinobacteria | Bifidobacteriaceae |
|
| 0,09 | 0,11 | 0,04 | 0,16 | 0,11 | 0,16 |
| Actinobacteria | Bifidobacteriaceae |
| 0,15 | 0,54 | 0,03 | 0,5 | 0,73 | 2,31 | |
| Actinobacteria | Bifidobacteriaceae |
|
| 0,33 | 1,09 | 0,05 | 0,24 | 0,69 | 2,93 |
| Actinobacteria | Actinomycetaceae |
| 0,02 | 0,01 | 0,04 | 0,35 | 0,04 | 0,02 | |
| Actinobacteria | Coriobacteriaceae |
|
| 0 | 0 | 0,02 | 0,03 | 0,01 | 0,01 |
| Actinobacteria | Coriobacteriaceae |
|
| 0,01 | 0 | 0,01 | 0,02 | 0,09 | 0,07 |
| Actinobacteria | Coriobacteriaceae |
| 0,01 | 0,01 | 0,01 | 0,09 | 0,02 | 0,02 | |
| Actinobacteria | Coriobacteriaceae |
|
| 0,96 | 0,58 | 0,59 | 1,2 | 1,57 | 0,94 |
| Actinobacteria | Coriobacteriaceae | 0,83 | 0,41 | 0,21 | 0,27 | 0,91 | 0,52 | ||
| Actinobacteria | Coriobacteriaceae |
| 0,02 | 0,01 | 0,06 | 0,1 | 0,09 | 0,07 | |
| Actinobacteria | Coriobacteriaceae |
| 0,09 | 0,09 | 0,07 | 0,1 | 0,23 | 0,04 | |
|
| |||||||||
| Firmicutes | Veillonellaceae |
| 0,3 | 0,82 | 1,54 | 0,09 | 1,2 | 7,23 | |
| Firmicutes | Lachnospiraceae |
| 0,04 | 0,02 | 0,02 | 0,04 | 0,03 | 0,11 | |
| Firmicutes | Clostridiaceae |
| 0,01 | 0 | 0,01 | 0,04 | 0,1 | 0 | |
| Firmicutes | Streptococcaceae |
| 0,13 | 0,21 | 0,8 | 8,14 | 0,19 | 2,26 | |
| Firmicutes | Clostridiaceae | 0,95 | 0,75 | 0,82 | 4,8 | 5,63 | 0,94 | ||
| Firmicutes | Lachnospiraceae |
| 0,08 | 0,14 | 0,04 | 0,03 | 0,09 | 0,05 | |
| Firmicutes | 6,99 | 6,64 | 16,32 | 10,2 | 8,45 | 5,98 | |||
| Firmicutes | Clostridiaceae |
|
| 0,03 | 0,01 | 0,03 | 0,22 | 0,53 | 0,04 |
| Firmicutes | Lachnospiraceae |
|
| 0,01 | 0,01 | 0,02 | 0 | 0 | 0,01 |
| Firmicutes | Lachnospiraceae |
|
| 0,04 | 0,04 | 0,05 | 0,06 | 0,13 | 0,06 |
| Firmicutes | Lachnospiraceae |
|
| 0,86 | 0,68 | 1,09 | 1,02 | 1,72 | 2,23 |
| Firmicutes | Lachnospiraceae |
| 3,08 | 2,23 | 3,78 | 4,24 | 7,24 | 9,07 | |
| Firmicutes | Lachnospiraceae |
|
| 0,13 | 0,22 | 0,36 | 0,15 | 0,15 | 0,15 |
| Firmicutes | Ruminococcaceae |
|
| 1,39 | 2,42 | 1,04 | 1 | 0,98 | 1,13 |
| Firmicutes | Veillonellaceae |
| 0,39 | 0,17 | 0,04 | 0,02 | 3,69 | 0,01 | |
| Firmicutes | Ruminococcaceae | 20,99 | 30,92 | 25,11 | 15,39 | 20,02 | 23,35 | ||
| Firmicutes | Other |
|
| 1,31 | 0,77 | 1,59 | 6,12 | 4,79 | 1,8 |
| Firmicutes | Streptococcaceae |
|
| 0,01 | 0 | 0,02 | 0,08 | 0 | 0,11 |
| Firmicutes | Lachnospiraceae |
| 0,2 | 0,31 | 0,17 | 0,19 | 0,26 | 0,17 | |
| Firmicutes | Erysipelotrichaceae | 0,08 | 0,04 | 0,02 | 0,09 | 0,2 | 0,05 | ||
| Firmicutes | Christensenellaceae | 0,23 | 0,28 | 0,18 | 0,04 | 0,93 | 0,24 | ||
| Firmicutes | Lachnospiraceae |
| 0,12 | 0,1 | 0,13 | 0,15 | 0,18 | 0,21 | |
| Firmicutes | Clostridiaceae |
| 0,32 | 0,45 | 0,3 | 0,42 | 0,3 | 0,27 | |
| Firmicutes | Lachnospiraceae | 7,01 | 8,06 | 8,82 | 7,27 | 9,5 | 8,18 | ||
| Firmicutes | Ruminococcaceae |
| 1,71 | 1,44 | 1,69 | 2,56 | 1,98 | 1,66 | |
| Firmicutes | Erysipelotrichaceae |
|
| 0,53 | 0,27 | 0,38 | 1,03 | 0,78 | 0,09 |
| Firmicutes | Lachnospiraceae |
| 0,25 | 0,11 | 0,23 | 0,04 | 0,23 | 0,21 | |
| Firmicutes | [Mogibacteriaceae] | 0,17 | 0,11 | 0,06 | 0,08 | 0,29 | 0,11 | ||
| Firmicutes | Lachnospiraceae |
|
| 4,85 | 5,88 | 5,46 | 4,67 | 7,47 | 6,19 |
| Firmicutes | Lachnospiraceae |
| 1,78 | 2,07 | 2,2 | 2,56 | 3,41 | 3,43 | |
| Firmicutes | Ruminococcaceae |
| 1,85 | 2,11 | 4,7 | 2,11 | 1,49 | 4,73 | |
| Firmicutes | Lachnospiraceae |
| 1,88 | 2,8 | 1,77 | 2,15 | 2,76 | 2,13 | |
| Firmicutes | Ruminococcaceae |
|
| 5,54 | 3,82 | 2,47 | 1,85 | 0,62 | 3,46 |
| Firmicutes | Erysipelotrichaceae |
| 0,63 | 0,38 | 2,25 | 1,18 | 2,4 | 2,88 | |
|
| |||||||||
| Proteobacteria | Desulfovibrionaceae |
| 0,02 | 0,01 | 0,01 | 0,01 | 0,11 | 0,02 | |
| Proteobacteria | Enterobacteriaceae | 0,66 | 0,74 | 0,33 | 9,8 | 0,95 | 0,08 | ||
| Proteobacteria | Alcaligenaceae |
| 0,04 | 0,06 | 0,01 | 0 | 0,01 | 0 | |
|
| |||||||||
| Verrucomicrobia | Verrucomicrobiaceae |
|
| 0,17 | 0,12 | 1,49 | 0,13 | 0,72 | 0,91 |
|
| |||||||||
| Tenericutes | 0,19 | 0,12 | 0,2 | 0,08 | 0,01 | 0,21 | |||
|
| |||||||||
| TM7 | 0 | 0 | 0,01 | 0,01 | 0,02 | 0,01 | |||
|
| |||||||||
| Cyanobacteria | 0,01 | 0,01 | 0,01 | 0,01 | 0,03 | 0,02 | |||
Average relative species compositions of gut microbial communities for the intervention groups 7 mg DCL, 7 mg GAL-MSFA and DC at the beginning and at the end of the intervention study.
| 7 mg_DCL | 7 mg_DCL | 7 mg_GAL-MSFA | 7 mg_GAL-MSFA | DC | DC | ||||
|---|---|---|---|---|---|---|---|---|---|
| I_Day_0 | I_Week_4 | II_Day_0 | II_Week_4 | V_Day_0 | V_Week_4 | ||||
| Bacteroidetes | Bacteroidaceae |
|
| 1,08 | 0,21 | 0,15 | 0,04 | 0,12 | 0,04 |
| Bacteroidetes | Bacteroidaceae |
|
| 1,71 | 0,41 | 0,24 | 0,03 | 0,21 | 0,07 |
| Bacteroidetes | Bacteroidaceae |
| 7,54 | 1,84 | 8,60 | 2,57 | 1,64 | 0,57 | |
| Bacteroidetes | Bacteroidaceae |
|
| 1,43 | 0,17 | 0,01 | 0,00 | 0,30 | 0,00 |
| Bacteroidetes | Prevotellaceae |
|
| 2,05 | 22,30 | 13,55 | 12,19 | 0,28 | 2,72 |
| Bacteroidetes | [Odoribacteraceae] |
| 0,11 | 0,01 | 0,08 | 0,03 | 0,06 | 0,01 | |
| Bacteroidetes | Porphyromonadaceae |
|
| 0,46 | 0,07 | 0,36 | 0,09 | 0,13 | 0,05 |
| Bacteroidetes | Porphyromonadaceae | Parabacteroides | 0,48 | 0,05 | 0,33 | 0,10 | 0,26 | 0,32 | |
| TM7 | 0,02 | 0,00 | 0,01 | 0,00 | 0,00 | 0,01 | |||
| Bacteroidetes | S24-7 | 0,00 | 0,00 | 0,72 | 1,71 | 1,55 | 1,56 | ||
| Bacteroidetes | [Paraprevotellaceae] |
| 0,58 | 0,05 | 0,11 | 0,05 | 0,04 | 0,00 | |
| Bacteroidetes | Bacteroidaceae |
|
| 0,08 | 0,03 | 0,08 | 0,04 | 0,09 | 0,00 |
| Bacteroidetes | Bacteroidaceae |
|
| 0,09 | 0,01 | 0,09 | 0,01 | 0,04 | 0,01 |
| Bacteroidetes | [Barnesiellaceae] | 0,22 | 0,06 | 0,70 | 0,07 | 0,03 | 0,01 | ||
| Bacteroidetes | Prevotellaceae |
|
| 0,02 | 0,00 | 1,25 | 0,52 | 0,09 | 0,13 |
| Bacteroidetes | Prevotellaceae |
| 0,42 | 0,00 | 0,27 | 0,19 | 0,08 | 0,64 | |
| Bacteroidetes | Rikenellaceae | 1,12 | 0,58 | 2,18 | 0,57 | 0,38 | 0,08 | ||
|
| |||||||||
| Actinobacteria | Coriobacteriaceae |
|
| 0,47 | 0,70 | 0,95 | 0,57 | 0,24 | 0,57 |
| Actinobacteria | Coriobacteriaceae |
| 0,02 | 0,06 | 0,09 | 0,09 | 0,07 | 0,15 | |
| Actinobacteria | Bifidobacteriaceae |
|
| 0,06 | 0,62 | 0,33 | 1,09 | 1,13 | 0,58 |
| Actinobacteria | Bifidobacteriaceae |
|
| 0,37 | 0,83 | 0,09 | 0,11 | 0,23 | 0,08 |
| Actinobacteria | Bifidobacteriaceae |
| 0,66 | 0,42 | 0,16 | 0,54 | 1,29 | 0,41 | |
| Actinobacteria | Coriobacteriaceae | 0,20 | 0,52 | 0,83 | 0,41 | 1,36 | 1,50 | ||
| Actinobacteria | Coriobacteriaceae |
| 0,03 | 0,03 | 0,02 | 0,01 | 0,03 | 0,05 | |
| Actinobacteria | Coriobacteriaceae |
| 0,01 | 0,01 | 0,01 | 0,01 | 0,01 | 0,02 | |
| Actinobacteria | Actinomycetaceae |
| 0,03 | 0,04 | 0,02 | 0,01 | 0,02 | 0,04 | |
|
| |||||||||
| Firmicutes | Ruminococcaceae |
| 1,52 | 1,01 | 1,86 | 2,11 | 1,45 | 1,92 | |
| Firmicutes | Clostridiaceae |
| 0,50 | 0,29 | 0,32 | 0,45 | 0,61 | 0,75 | |
| Firmicutes | Lachnospiraceae |
| 0,10 | 0,12 | 0,12 | 0,10 | 0,07 | 0,09 | |
| Firmicutes | 7,10 | 7,06 | 6,98 | 6,65 | 5,43 | 5,16 | |||
| Firmicutes | Lachnospiraceae |
| 2,19 | 2,06 | 1,78 | 2,06 | 1,66 | 1,76 | |
| Firmicutes | Ruminococcaceae |
| 0,83 | 1,10 | 5,54 | 3,82 | 0,87 | 0,54 | |
| Firmicutes | Clostridiaceae | 1,88 | 0,99 | 0,95 | 0,75 | 0,58 | 0,94 | ||
| Firmicutes | Lachnospiraceae |
| 1,22 | 1,61 | 0,87 | 0,68 | 1,37 | 1,49 | |
| Firmicutes | Christensenellaceae | 0,51 | 0,52 | 0,23 | 0,27 | 0,36 | 1,61 | ||
| Firmicutes | Other |
| 1,55 | 1,29 | 1,31 | 0,78 | 1,06 | 1,22 | |
| Firmicutes | Erysipelotrichaceae |
| 0,10 | 0,79 | 0,63 | 0,38 | 0,83 | 1,11 | |
| Firmicutes | Lachnospiraceae |
| 0,10 | 0,05 | 0,08 | 0,14 | 0,20 | 0,25 | |
| Firmicutes | Ruminococcaceae |
|
| 0,22 | 0,10 | 0,07 | 0,03 | 0,00 | 0,02 |
| Firmicutes | Lachnospiraceae |
| 3,78 | 5,86 | 3,08 | 2,24 | 4,21 | 4,65 | |
| Firmicutes | Veillonellaceae |
| 1,08 | 1,00 | 0,30 | 0,82 | 3,64 | 1,25 | |
| Firmicutes | Ruminococcaceae |
|
| 2,21 | 3,35 | 1,39 | 2,43 | 2,00 | 2,34 |
| Firmicutes | Ruminococcaceae |
| 1,22 | 1,24 | 1,71 | 1,44 | 2,63 | 1,02 | |
| Firmicutes | Erysipelotrichaceae | 0,06 | 0,06 | 0,08 | 0,04 | 0,06 | 0,02 | ||
| Firmicutes | Streptococcaceae | S | 0,36 | 0,59 | 0,13 | 0,21 | 0,26 | 3,29 | |
| Firmicutes | Lactobacillaceae |
| 0,02 | 0,01 | 0,00 | 0,02 | 0,02 | 0,14 | |
| Firmicutes | Ruminococcaceae | 20,67 | 19,42 | 20,96 | 30,93 | 33,04 | 26,33 | ||
| Firmicutes | Lachnospiraceae |
|
| 0,01 | 0,01 | 0,01 | 0,01 | 0,01 | 0,02 |
| Firmicutes | [Mogibacteriaceae] | 0,04 | 0,05 | 0,18 | 0,11 | 0,09 | 0,11 | ||
| Firmicutes | Lachnospiraceae |
|
| 0,06 | 0,04 | 0,04 | 0,04 | 0,05 | 0,07 |
| Firmicutes | Erysipelotrichaceae |
|
| 0,01 | 0,00 | 0,59 | 0,09 | 0,08 | 0,07 |
| Firmicutes | Lachnospiraceae |
| 0,04 | 0,04 | 0,04 | 0,02 | 0,05 | 0,09 | |
| Firmicutes | Lachnospiraceae |
| 3,64 | 2,31 | 1,87 | 2,81 | 1,61 | 3,00 | |
| Firmicutes | Veillonellaceae |
|
| 0,04 | 0,05 | 0,01 | 0,03 | 0,16 | 0,27 |
| Firmicutes | Veillonellaceae |
| 0,22 | 0,12 | 0,39 | 0,17 | 0,08 | 0,01 | |
| Firmicutes | Lachnospiraceae |
| 0,27 | 0,17 | 0,20 | 0,30 | 0,24 | 0,41 | |
| Firmicutes | Clostridiaceae |
|
| 0,06 | 0,03 | 0,03 | 0,01 | 0,01 | 0,01 |
| Firmicutes | Lachnospiraceae |
|
| 0,53 | 0,37 | 0,13 | 0,22 | 0,21 | 0,25 |
| Firmicutes | Lachnospiraceae |
| 0,73 | 0,36 | 0,25 | 0,11 | 0,44 | 0,84 | |
| Firmicutes | Lachnospiraceae |
|
| 7,50 | 5,93 | 4,84 | 5,90 | 6,08 | 10,35 |
| Firmicutes | Erysipelotrichaceae |
|
| 0,14 | 0,13 | 0,53 | 0,27 | 0,09 | 0,32 |
| Firmicutes | Lachnospiraceae | 11,09 | 9,48 | 7,01 | 8,05 | 6,73 | 9,18 | ||
|
| |||||||||
| Proteobacteria | Enterobacteriaceae | 0,35 | 0,08 | 0,67 | 0,74 | 2,51 | 0,65 | ||
| Proteobacteria | Alcaligenaceae |
| 0,07 | 0,04 | 0,04 | 0,06 | 0,03 | 0,19 | |
| Proteobacteria | Desulfovibrionaceae |
| 0,01 | 0,01 | 0,02 | 0,01 | 0,02 | 0,01 | |
|
| |||||||||
| Tenericutes | 0,14 | 0,16 | 0,18 | 0,12 | 0,40 | 1,44 | |||
|
| |||||||||
| Verrucomicrobia | Verrucomicrobiaceae |
|
| 2,02 | 2,68 | 0,17 | 0,12 | 5,41 | 4,58 |
Figure 3PCoA score plot of tag-encoded 16S rRNA gene amplicon sequencing data based on generalized UniFrac distance metrics (n = 6, for each time point) of week 0 (red dots) and week 4 (blue dots) intervention Group III. R = 0.250, p=0.04.