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MBD0012

Sigma-Aldrich

Microbial DNA standard from Enterococcus faecalis

Suitable for PCR, sequencing and NGS, 10 ng/μL

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About This Item

UNSPSC Code:
41105500
NACRES:
NA.24

Quality Level

form

liquid

concentration

10 ng/μL

technique(s)

DNA extraction: suitable
DNA sequencing: suitable
PCR: suitable

shipped in

ambient

storage temp.

−20°C

Related Categories

General description

Standardization of sample analysis is currently needed in microbiome genomics research workflow. Lack of standardization can lead to biases and errors in common processes during sample preparation and analysis such as sample amplification, sequencing and bioinformatics analyses. Enterococcus faecalis genomic DNA microbial standard can serve as standard for benchmarking the performance along the workflow of microbiomics or meta-genomics analyses and as a tool to increase reproducibility and allow comparison of results obtained by different labs. Enterococcus faecalis is a gram positive, facultative anaerobic, non-motile, coci-shaped bacterium. It is a commensal bacterium of the human intestine and a major opportunistic pathogen in immunocompromised and elderly patients. The pathogenesis of E. faecalis infection relies in part on its capacity to colonize the gut. Following disruption of intestinal homeostasis, E. faecalis can overgrow, cross the intestinal barrier, and enter the lymph and bloodstream. Isolates of E. faecalis that have ended up in strain collections, mainly from clinical infection sources, appear to have acquired resistance to tetracycline and chloramphenicol in the 1950s and 1960s, followed by gentamicin and erythromycin resistance in the 1970s, then ampicillin and vancomycin resistance in the 1980s and 1990s.


Read here how to use our standards to ensure data integrity for your microbiome research.

Application

The genomic DNA is provided at >=10 ng/μL concentration in TE buffer pH 8.0. It is recommended to avoid freeze thaw cycles of this product.
Suitable for Quantitative standard for PCR, Sequencing and NGS

Features and Benefits

  • Individual microbial standard for microbiomics and meta-genomics workflow
  • Suitable standard for PCR, sequencing and NGS
  • Improve Bioinformatics analyses
  • Increases reproducibility
  • Compare results lab to lab

Physical form

Liquid -The genomic DNA is provided at >=10 ng/μL concentration in TE buffer pH 8.0

wgk_germany

WGK 1

flash_point_f

Not applicable

flash_point_c

Not applicable


Certificates of Analysis (COA)

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Daria Van Tyne et al.
Annual review of microbiology, 68, 337-356 (2014-07-09)
The enterococci are an ancient genus that evolved along with the tree of life. These intrinsically rugged bacteria are highly adapted members of the intestinal consortia of a range of hosts that spans the animal kingdom. Enterococci are also leading
B E Murray
Clinical microbiology reviews, 3(1), 46-65 (1990-01-01)
Enterococci are important human pathogens that are increasingly resistant to antimicrobial agents. These organisms were previously considered part of the genus Streptococcus but have recently been reclassified into their own genus, called Enterococcus. To date, 12 species pathogenic for humans
J Paul Brooks et al.
BMC microbiology, 15, 66-66 (2015-04-17)
Characterizing microbial communities via next-generation sequencing is subject to a number of pitfalls involving sample processing. The observed community composition can be a severe distortion of the quantities of bacteria actually present in the microbiome, hampering analysis and threatening the
Lionel Rigottier-Gois et al.
The Journal of infectious diseases, 211(1), 62-71 (2014-07-19)
Enterococcus faecalis is a commensal bacterium of the human intestine and a major opportunistic pathogen in immunocompromised and elderly patients. The pathogenesis of E. faecalis infection relies in part on its capacity to colonize the gut. Following disruption of intestinal

Articles

An overview of human microbiome research, workflow challenges, sequencing, library production, data analysis, and available microbiome reagents to support your research.

The use of standards is critical to the integrity of metagenomics research. Learn how DNA standards for bacteria, fungi, and viruses are applied to studying the microbiome. Choose standards for E. coli and other key species, as well as mixed community standards.

Our team of scientists has experience in all areas of research including Life Science, Material Science, Chemical Synthesis, Chromatography, Analytical and many others.

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