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Multiplex molecular diagnostic tests may identify several pathogens including viruses and bacteria, from a single respiratory tract sample, with high sensitivity.
Whole genome sequencing can be used to make detailed conclusions about the mechanisms of genetic change of H. pylori based on sampling bacteria from a single gastric biopsy.
Liquid cultures were initiated from plates by transferring bacteria from a single colony to a 50 mL tube containing 20 mL 523 liquid medium with the appropriate antibiotics added to ensure retention of plasmids.
For example, microbiota studies that report out the distribution of bacteria from a single fecal specimen often extrapolate such results to be reflective of the distribution of the microbiota as a whole within the gut.
In this study, we have shown that it is possible to use whole genome sequencing to make detailed conclusions about the mechanisms of genetic change of H. pylori based on sampling bacteria from a single gastric biopsy.
We present microbiological, cytological and molecular analyses of the physiological response to lethal heat stress under accurately defined conditions through systematic sampling of bacteria from a single culture exposed to gradually increasing temperatures.
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There have been over 45 reports of HCH-degrading bacteria, mostly from a single family, the Sphingomonadaceae, with most of the others also from relatively closely related Gram-negative bacteria (for review, see Lal et al. 2010).
Bacteria isolated from a single colony were inoculated in TSB at 37°C overnight.
In total, 500 ml of Luria-Bertani medium containing 50 μg ml−1 ampicillin was inoculated with 4 ml of an overnight culture of bacteria generated from a single colony of freshly transformed cells and incubated at 37°C.
For instance, DNA purification from bacteria on a single microfluidic chip has been shown without either pre- or post-sample processing.
We have analyzed a natural population of the marine bacterium, Alteromonas macleodii, from a single sample of seawater to evaluate the genomic diversity present.
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diseases from a single
cultures from a single
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media from a single
cells from a single
bacteria from a medical
bacteria from a privileged
bacteria from a fat
bacteria from a human
bacteria from a peninsular
bacteria from a clonal
bacteria from a diluted
bacteria from a sensitive
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