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To identify possible virulence determinants within metagenome datasets of biogas-producing communities, BLAST analyses vs. the Microbial virulence Database MvirDB were accomplished.
Only a marginal number of reads showed similarity to sequences described in the Microbial Virulence Database MvirDB such as those encoding protein toxins, virulence proteins or antibiotic resistance determinants.
MvirDB: Microbial Virulence Database; BLAST: Basic Local Alignment Search Tool RTXX: Repeats in Toxin; PCR: Polymerase Chain Reaction; Stx: Shiga toxin; EGT: environmental gene tag; NT: NCBI non-redundant nucleotide database; LPS: lipopolysaccharide; GS: Genome Sequencer; Pfam: Protein families; CSTR: Continuously stirred tank reactor.
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Microbial virulence factors have been reported to inhibit autophagy by binding to Atg proteins [6], [8], [17].
The importance of this close association is underscored by the essential role of the Mp attachment organelle for microbial virulence.
These associations between individual genes and syndromes both recapitulate already known links but also generate new testable hypotheses that could reveal novel mechanisms of microbial virulence.
Such bottlenecks are thought to be costly to microbial populations due to the accumulation of deleterious mutations by Muller's ratchet, which may in turn serve to diminish microbial virulence [49].
Several alternative diagnostic methodologies focusing upon the detection of microbial virulence factors produced by the various BV-associated organisms have been proposed in recent years.
Results from our initial spaceflight study raised compelling questions regarding the effect of spaceflight on microbial virulence and gene expression [2].
We found that the tumor-associated microbiome is significantly enriched with enzymes related to microbial virulence.
In this regard, it is noteworthy that microbial virulence requires a susceptible host.
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