| Bacillus sp. LMG 18084| Bacillus sp. R-6546| Bacillus sp. R-7440| Bacillus sp. R-7764| Bacillus thermoamylovorans| Bacillus thermoamylovorans Combet-Blanc et al. 1995 emend. Coorevits et al. 2011| CNCM I-1378| Lactobacter thermoamylovorans| LMG 18084| LMG:18084| strain DKP
Environmental Role: Caldibacillus thermoamylovorans is adapted to high-temperature environments and is often found in thermophilic habitats where temperatures exceed those suitable for most other organisms. It participates in ecological processes such as organic matter decomposition and nutrient cycling in these extreme environments.
Biotechnological Applications: Thermophilic bacteria like Caldibacillus thermoamylovorans have potential applications in biotechnology and industrial processes due to their ability to produce heat-stable enzymes and metabolize complex organic compounds at high temperatures. Enzymes produced by thermophilic bacteria are used in various industrial processes, including biofuel production, waste treatment, and bioremediation.
Medical Relevance: While Caldibacillus thermoamylovorans is not typically associated with human infections or medical conditions, thermophilic bacteria, in general, have been studied for their potential medical applications. Heat-stable enzymes produced by thermophilic bacteria are used in molecular biology techniques such as polymerase chain reaction (PCR) and DNA sequencing. These enzymes are also being explored for therapeutic applications, including in the treatment of certain diseases and conditions.
Bioremediation Potential: Some thermophilic bacteria, including Caldibacillus species, have been investigated for their potential applications in bioremediation of contaminated environments. Their ability to degrade organic pollutants and thrive in extreme conditions makes them promising candidates for remediation of polluted sites, including those contaminated with hydrocarbons, heavy metals, and other toxic compounds.
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. |
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Thorne | 0.4603 | 0.0002 | 0.0002 | 0.0001 | 0.0013 | 0.0002 | 0.7141 | 0.0001 - 0.0003 | 0.0001 - 0.0005 | -0.0001 - 0.0006 | -0.0002 - 0.0006 | 0.0002 | 0.0002 | 87 |
Source of Ranges | Low Boundary | High Boundary | Low Boundary %age | High Boundary %age |
---|---|---|---|---|
PrecisionBiome | 1.934740794240497E-05 | 0.00012662573135457933 | 0 | 0 |
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And display level must be raised above public.
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