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Flavobacterium Details: NCBI 237, gram-negative or unknown [genus]
| Flavobacterium| Flavobacterium Bergey et al. 1923 (Approved Lists 1980) emend. Bernardet et al. 1996| Flavobacterium Bergey et al. 1923 (Approved Lists 1980) emend. Dong et al. 2013| Flavobacterium Bergey et al. 1923 (Approved Lists 1980) emend. Kang et al. 2013| Flavobacterium Bergey et al. 1923 (Approved Lists 1980) emend. Kuo et al. 2013
Environmental Presence:
Flavobacterium species are commonly found in natural environments, especially aquatic habitats. They contribute to the decomposition of organic matter and play roles in nutrient cycling.
Aquatic Pathogens:
Some Flavobacterium species are known as fish pathogens and can cause diseases in various aquatic organisms, including fish and amphibians. In aquaculture settings, infections by Flavobacterium spp. can lead to economic losses.
Human Infections:
While infections by Flavobacterium species in humans are relatively uncommon, some cases of opportunistic infections have been reported. These infections are often associated with wounds, respiratory tract infections, or bloodstream infections, particularly in individuals with weakened immune systems.
Biodegradation and Bioremediation:
Certain Flavobacterium species have been studied for their ability to degrade complex organic compounds, including pollutants. They may have applications in bioremediation processes aimed at cleaning up contaminated environments.
Food Industry:
Flavobacterium species have been isolated from food processing environments. While some may be involved in spoilage, others may have industrial applications, such as the production of enzymes used in food processing.
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
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.
Desired Levels Suggestions for Flavobacterium
Lab Low and High are calculated using the formula that most labs use: Mean - 1.95 Standard Deviation to Mean + 1.95 Standard Deviation
These are values that are computed from lab specific samples and are in percentage
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
0.0502
0.3249
0.003
0.001
8.468
1.1269
0.8571
0.002 - 0.0097
0.001 - 2.265
-1.8725 - 2.5223
-0.0096 - 0.0214
0.0027
0.0076
186
Medivere
1
0.3511
0.3052
0.0112
0.7123
0.2651
0.5192
0.1666 - 0.5479
0.0497 - 0.6976
-0.1659 - 0.8681
-0.4055 - 1.1199
0.0636
0.2114
7
Thorne
0.9418
0.0062
0.004
0.0001
0.0692
0.0086
0.7713
0.0026 - 0.0065
0.0009 - 0.0167
-0.0106 - 0.023
-0.0033 - 0.0125
0.002
0.0039
178
Thryve
0.0282
0.0073
0.0042
0.0001
0.0259
0.0074
1.2487
0.0021 - 0.0101
0.0009 - 0.0245
-0.0071 - 0.0216
-0.01 - 0.0222
0.0015
0.0042
35
uBiome
0.4994
0.3301
0.2704
0.0018
3.8355
0.3165
0.5664
0.1275 - 0.4264
0.0167 - 0.7775
-0.287 - 0.9472
-0.3211 - 0.875
0.0525
0.206
394
Vitract
0.0237
0
-
-
-
-
19
External Reference Ranges for Flavobacterium
Flavobacterium (NCBI 237) per million
Source of Ranges
Low Boundary
High Boundary
Low Boundary %age
High Boundary %age
Thorne (20/80%ile)
0
77.42
0
0.0077
PrecisionBiome
1.5367535525001585E-05
0.0001669066259637475
0
0
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Food Groups Containing the Flavobacterium bacteria
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