| "Bacillus mortiferus" Harris 1901| "Bacillus necroticus" Nativelle 1936 in Weinberg et al. 1937| "Bacteroides freundii" Hauduroy et al. 1937| "Fusubacterium ridiculosum" (Prevot 1948) Moore and Holdeman 1969| "Hiblerillus rectus" Heller 1922| "Pseudobacterium freundii" (Hauduroy et al. 1937) Krasil'nikov 1949| "Pseudobacterium mortiferum" (Harris 1901) Krasil'nikov 1949| "Pseudobacterium necroticum" (Nativelle 1936) Krasil'nikov 1949| "Spherophorus freundi" (sic) (Hauduroy et al. 1937) Prevot 1938| "Spherophorus mortiferus" (sic) (Harris 1901) Prevot 1938| "Spherophorus necroticus" (Nativelle 1936) Prevot 1938| "Spherophorus ridiculosus" (sic) Prevot 1948| ATCC 25557| ATCC 25751 [[Clostridium rectum]]| Bacillus mortiferus| Bacillus necroticus| Bacteroides freundii| BCRC 14525 [[Clostridium rectum]]| CCUG 14475| Clostridium rectum| Clostridium rectum (Heller 1922) Holdeman and Moore 1972 (Approved Lists 1980)| DSM 1295 [[Clostridium rectum]]| DSM 19809| Fusibacterium mortiferum| Fusobacterium mortiferum| Fusobacterium mortiferum (Harris 1901) Moore and Holdeman 1970 (Approved Lists 1980) emend. De Witte et al. 2017| Fusubacterium ridiculosum| Hiblerillus rectus| JCM 1412 [[Clostridium rectum]]| NCIB 10651 [[Clostridium rectum]]| NCIB:10651 [[Clostridium rectum]]| NCIMB 10651 [[Clostridium rectum]]| Pseudobacterium freundii| Pseudobacterium mortiferum| Pseudobacterium necroticum| Spherophorus freundi| Spherophorus mortiferus| Spherophorus necroticus| Spherophorus ridiculosus| strain PCL [[Clostridium rectum]]| VPI 2488 [[Clostridium rectum]]
Environmental Role: Flavobacterium aquatile and other members of the genus Flavobacterium are known for their diverse metabolic capabilities and their ability to degrade complex organic compounds in aquatic environments. They contribute to nutrient cycling, organic matter decomposition, and the maintenance of ecosystem balance in freshwater and marine habitats.
Biotechnological Applications: Some Flavobacterium species, including Flavobacterium aquatile, have been studied for their potential biotechnological applications, particularly in the fields of wastewater treatment, bioremediation, and aquaculture. They may have roles in the degradation of pollutants and the production of enzymes or bioactive compounds with industrial or environmental significance.
Rare Human Infections: While Flavobacterium aquatile is not considered a common human pathogen, there have been rare reports of infections in humans, typically associated with immunocompromised individuals or those with underlying medical conditions. In such cases, Flavobacterium aquatile infections may present as opportunistic infections, such as wound infections, bacteremia, or urinary tract infections.
Prevention: Preventive measures to minimize the risk of infections with Flavobacterium aquatile or other environmental bacteria include maintaining good hygiene practices, avoiding exposure to contaminated water sources, and implementing proper wound care and infection control measures, particularly in healthcare settings.
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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 | UD-Low | UD-High | KM Low | KM High | Lab Low | Lab High | Mean | Median | Standard Deviation | Box Plot Low | Box Plot High | KM Percentile Low | KM Percentile High |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Other Labs | 0.49 | 6 | 17780 | 0 | 24024 | 6508.2 | 110 | 8936.7 | 6 | 17780 | 7.7 %ile | 84.6 %ile | ||
thorne | 55.17 | 1 | 14 | 0 | 12 | 5.4 | 4 | 3.4 | 1 | 14 | 0 %ile | 100 %ile | ||
thryve | 12.82 | 0 | 0 | 1 | 153895 | 0 | 53155 | 6592.3 | 30 | 23756.4 | 6 | 508 | 0 %ile | 100 %ile |
ubiome | 1.52 | 24 | 31914 | 0 | 22244 | 4162 | 288 | 9225.7 | 24 | 31914 | 7.1 %ile | 85.7 %ile |
Source of Ranges | Low Boundary | High Boundary | Low Boundary %age | High Boundary %age |
---|---|---|---|---|
Thorne (20/80%ile) | 0 | 2.35 | 0 | 0.0002 |
Lab | Frequency Seen | Average | Standard Deviation | Sample Count | Lab Samples |
---|---|---|---|---|---|
CerbaLab | 66.667 % | 0.002 % | 0.002 % | 2.0 | 3 |
custom | 30.303 % | 0.98 % | 0.905 % | 20.0 | 66 |
es-xenogene | 13.333 % | 0.011 % | 0.001 % | 4.0 | 30 |
Thorne | 56.081 % | 0.001 % | 0.001 % | 83.0 | 148 |
Thryve | 12.75 % | 0.633 % | 2.119 % | 185.0 | 1451 |
uBiome | 1.521 % | 0.416 % | 0.923 % | 12.0 | 789 |
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