For the possible significance see Oral bacteria relative abundance in faeces increases due to gut microbiota depletion and is linked with patient outcomes, 2024
| Selenomonas| Selenomonas von Prowazek 1913
Oral Health: Selenomonas species are among the numerous bacteria present in the oral microbiome. The composition of the oral microbiome can influence oral health, and imbalances in the microbial community can contribute to conditions such as periodontal disease and dental caries.
Gut Microbiota: Selenomonas species are also part of the gut microbiota. The gut microbiota plays a crucial role in digestion, nutrient absorption, and overall gut health. Some bacteria, including those in the Veillonellaceae family, are involved in the fermentation of dietary fibers and the production of short-chain fatty acids.
Disease Associations: While Selenomonas is generally considered a normal part of the human microbiota, certain species or strains may be associated with infections or diseases under specific circumstances. Research on the pathogenic potential of different Selenomonas species is ongoing.
The above data is from 1000 Healthy Individuals done using Shotgun(10 Millions reads) provide courtesy of Precision Biome.
A lot more information is available when you are logged in and raise the display level
Other Sources for more information:
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NCBI | Data Punk | End Products Produced |
Different labs use different software to read the sample. See this post for more details.
One lab may say you have none, another may say you have a lot! - This may be solely due to the software they are using to estimate.
We deem lab specific values using values from the KM method for each specific lab to be the most reliable.
Lab | Frequency | Average | Median | Minimum | Maximum | Std.Dev. | Skew | 25 - 75 Percentile | 5 - 95 Percentile | Lab Ranges | Box-Plot-Whiskers | Harmonic Mean | Geometric Mean | Obs. |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
BiomeSight | 0.9517 | 0.0356 | 0.017 | 0.001 | 7.113 | 0.1501 | 0.3726 | 0.009 - 0.031 | 0.003 - 0.0869 | -0.257 - 0.3283 | -0.024 - 0.064 | 0.0099 | 0.0167 | 3526 |
custom | 0.1702 | 0.007 | 0.005 | 0.001 | 0.027 | 0.0082 | 0.7294 | 0.0037 - 0.0052 | 0.0018 - 0.0196 | -0.009 - 0.023 | 0.0013 - 0.0076 | 0.0034 | 0.0047 | 8 |
es-xenogene | 0.9545 | 0.0089 | 0.005 | 0.0007 | 0.03 | 0.0088 | 1.3412 | 0.003 - 0.01 | 0.001 - 0.03 | -0.0082 - 0.0261 | -0.0075 - 0.0205 | 0.0032 | 0.0056 | 21 |
SequentiaBiotech | 0.1944 | 0.0193 | 0.0204 | 0.0107 | 0.0236 | 0.0051 | -0.6684 | 0.0169 - 0.0231 | 0.0115 - 0.0236 | 0.0093 - 0.0293 | 0.0077 - 0.0323 | 0.0177 | 0.0186 | 7 |
Thorne | 0.9365 | 0.006 | 0.0042 | 0.0001 | 0.0994 | 0.0095 | 0.5629 | 0.0023 - 0.0059 | 0.0009 - 0.018 | -0.0125 - 0.0244 | -0.0031 - 0.0113 | 0.002 | 0.0038 | 177 |
Thryve | 0.1613 | 0.0068 | 0.0024 | 0.0004 | 0.1748 | 0.0171 | 0.7721 | 0.0016 - 0.0047 | 0.001 - 0.0228 | -0.0266 - 0.0402 | -0.0031 - 0.0094 | 0.0022 | 0.0031 | 200 |
uBiome | 0.0165 | 0.107 | 0.0616 | 0.0027 | 0.4866 | 0.1419 | 0.9592 | 0.005 - 0.1443 | 0.0036 - 0.3574 | -0.1697 - 0.3836 | -0.204 - 0.3533 | 0.0103 | 0.0337 | 13 |
Vitract | 0.2022 | 0.0028 | 0.0028 | 0.0024 | 0.0032 | 0.0006 | 0 | 0.0026 - 0.003 | 0.0024 - 0.0032 | 0.0017 - 0.0039 | 0.002 - 0.0036 | 0.2222 | 0.0028 | 162 |
Source of Ranges | Low Boundary | High Boundary | Low Boundary %age | High Boundary %age |
---|---|---|---|---|
Lab Teletest | 0 | 500 | 0 | 0.05 |
PrecisionBiome | 3.2231091608991846E-05 | 0.0006997265154495835 | 0 | 0 |
Thorne (20/80%ile) | 3.89 | 133.48 | 0.0004 | 0.0133 |
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And display level must be raised above public.
This is base on Unexplored microbial diversity from 2,500 food metagenomes and links with the human microbiome. See that paper for details on foods groups.
Data comes from FoodMicrobionet. For the meaning of weight, see that site. The bacteria does not need to be alive to have an effect.
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