Molecular prophage typing of avian pathogenic Escherichia coli
Escherichia coli prophages confer virulence and resistance to physico-chemical, nutritional, and antibiotic stresses on their hosts, and they enhance the evolution of E. coli. Thus, studies on profiles of E. coli prophages are valuable to understand the population structure and evolution of E. coli...
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Published in | Veterinary microbiology Vol. 162; no. 2-4; pp. 785 - 792 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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Netherlands
Elsevier B.V
23.03.2013
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Abstract | Escherichia coli prophages confer virulence and resistance to physico-chemical, nutritional, and antibiotic stresses on their hosts, and they enhance the evolution of E. coli. Thus, studies on profiles of E. coli prophages are valuable to understand the population structure and evolution of E. coli pathogenicity. Large terminase genes participate in phage genome packaging and are one of the cornerstones for the identification of prophages. Thus, we designed primers to detect 16 types of large terminase genes and analyzed the genomes of 48 E. coli and Shigella reference strains for the prophage markers. We also investigated the distribution of the 16 prophage markers among 92 avian pathogenic E. coli (APEC) strains. APEC strains were classified into 61 prophage types (PPTs). Each strain was different from the reference strains as measured by the PPTs and from the frequency of each prophage marker. Investigation of the distribution of prophage-related serum resistance (bor), toxin (stx1 and cdtI), and T3SS effector (lom, espK, sopE, nleB, and ospG) genes revealed the presence of bor (44.1%), lom (95.5%) and cdtI (9.1%) in APEC strains with related prophages. Therefore, the molecular prophage typing method may be useful to understand population structure and evolution of E. coli pathogenicity, and further studies on the mobility of the prophages and the roles of virulence genes in APEC pathogenicity may be valuable. |
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AbstractList | Escherichia coli prophages confer virulence and resistance to physico-chemical, nutritional, and antibiotic stresses on their hosts, and they enhance the evolution of E. coli. Thus, studies on profiles of E. coli prophages are valuable to understand the population structure and evolution of E. coli pathogenicity. Large terminase genes participate in phage genome packaging and are one of the cornerstones for the identification of prophages. Thus, we designed primers to detect 16 types of large terminase genes and analyzed the genomes of 48 E. coli and Shigella reference strains for the prophage markers. We also investigated the distribution of the 16 prophage markers among 92 avian pathogenic E. coli (APEC) strains. APEC strains were classified into 61 prophage types (PPTs). Each strain was different from the reference strains as measured by the PPTs and from the frequency of each prophage marker. Investigation of the distribution of prophage-related serum resistance (bor), toxin (stx1 and cdtI), and T3SS effector (lom, espK, sopE, nleB, and ospG) genes revealed the presence of bor (44.1%), lom (95.5%) and cdtI (9.1%) in APEC strains with related prophages. Therefore, the molecular prophage typing method may be useful to understand population structure and evolution of E. coli pathogenicity, and further studies on the mobility of the prophages and the roles of virulence genes in APEC pathogenicity may be valuable. |
Author | Kim, Jae-Hong Seong, Won-Jin Kwon, Hyuk-Joon |
Author_xml | – sequence: 1 givenname: Hyuk-Joon surname: Kwon fullname: Kwon, Hyuk-Joon organization: Research Institute for Veterinary Science, College of Veterinary Medicine and BK21 for Veterinary Science, Seoul National University, Seoul 151-742, Republic of Korea – sequence: 2 givenname: Won-Jin surname: Seong fullname: Seong, Won-Jin organization: Laboratory of Avian Diseases, College of Veterinary Medicine and BK21 for Veterinary Science, Seoul National University, Seoul 151-742, Republic of Korea – sequence: 3 givenname: Jae-Hong surname: Kim fullname: Kim, Jae-Hong email: kimhong@snu.ac.kr organization: Laboratory of Avian Diseases, College of Veterinary Medicine and BK21 for Veterinary Science, Seoul National University, Seoul 151-742, Republic of Korea |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/23102989$$D View this record in MEDLINE/PubMed |
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Keywords | Population structure Prophage Toxin gene Avian pathogenic E. coli Large terminase |
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SubjectTerms | Animals Avian pathogenic E. coli Chickens Endodeoxyribonucleases - genetics Escherichia coli Escherichia coli - enzymology Escherichia coli - genetics Escherichia coli - pathogenicity Escherichia coli Infections - diagnosis Escherichia coli Infections - microbiology Genome, Bacterial Large terminase Phylogeny Population structure Prophage Prophages - genetics Shigella Toxin gene Virulence - genetics |
Title | Molecular prophage typing of avian pathogenic Escherichia coli |
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