Salmonella Prophages, Their Propagation, Host Specificity and Antimicrobial Resistance Gene Transduction
Antibiotics, ISSN: 2079-6382, Vol: 12, Issue: 3
2023
- 3Citations
- 22Captures
- 2Mentions
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- Citations3
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- Captures22
- Readers22
- 22
- Mentions2
- Blog Mentions1
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- News Mentions1
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Antibiotics, Vol. 12, Pages 595: Salmonella Prophages, Their Propagation, Host Specificity and Antimicrobial Resistance Gene Transduction
Antibiotics, Vol. 12, Pages 595: Salmonella Prophages, Their Propagation, Host Specificity and Antimicrobial Resistance Gene Transduction Antibiotics doi: 10.3390/antibiotics12030595 Authors: Lisa Trofeit Elisabeth Sattler Johannes
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University of Veterinary Medicine Researcher Broadens Understanding of Salmonella (Salmonella Prophages, Their Propagation, Host Specificity and Antimicrobial Resistance Gene Transduction)
2023 MAR 30 (NewsRx) -- By a News Reporter-Staff News Editor at NewsRx Life Science Daily -- Investigators publish new report on salmonella. According to
Article Description
Salmonella enterica subsp. enterica is a zoonotic bacterial pathogen that causes foodborne outbreaks in humans. Lytic bacteriophages to control Salmonella in food production are already being used in scientific studies and some are commercially available. However, phage application is still controversial. In addition to virulent phages, which are used in phage therapy and lyse the bacterial host, lysogenic phages coexist in the environment and can reside as prophages in the bacterial host. Therefore, information about Salmonella prophages is essential to understand successful phage therapy. In 100 Salmonella food isolates of the serovars Enteritidis and Typhimurium, we propagated prophages by oxidative stress. In isolates of the serovars Typhimurium and Enteritidis, 80% and 8% prophages could be activated, respectively. In the phage lysates from the serovar Typhimurium, the following antibiotic resistance genes or gene fragments were detected by PCR: sul1, sul2, bla, strA and cmlA; however, no tetA,B,C, bla, bla, aadA1, dfr1,2 or cat were detected. In contrast, no resistance genes were amplified in the phage lysates of the serovar Enteritidis. None of the phage lysates was able to transduce phenotypic resistance to WT 14028s. Most of the prophage lysates isolated were able to infect the various Salmonella serovars tested. The high abundance of prophages in the genome of the serovar Typhimurium may counteract phage therapy through phage resistance and the development of hybrid phages.
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