Characterization of Escherichia coli strains from red deer (Cervus elaphus) faeces in a Mexican protected natural area
Escherichia coli is a commensal bacterium from the human and animal intestinal microbiota; however, some strains may be pathogenic and can cause a wide range of intestinal and extraintestinal diseases. The presence of pathogenic strains in wild animals, such as deer, may constitute a risk for humans...
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Published in | European journal of wildlife research Vol. 62; no. 4; pp. 415 - 421 |
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Main Authors | , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.08.2016
Springer Nature B.V |
Subjects | |
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Abstract | Escherichia coli
is a commensal bacterium from the human and animal intestinal microbiota; however, some strains may be pathogenic and can cause a wide range of intestinal and extraintestinal diseases. The presence of pathogenic strains in wild animals, such as deer, may constitute a risk for humans and other animals. Thus, the aim of this study was to determine the antimicrobial resistance (AMR), serotype, phylogenetic groups and virulence genes (VGs) of 22
E. coli
isolates obtained from red deer faeces (
Cervus elaphus
). Results showed that most isolates (17/22) were susceptible to the antimicrobials assessed, whereas only five of them were resistant to some of the tested antimicrobials (mainly to β-lactamics, and to trimethoprim/sulphamethoxazole). Regarding the phylogenetic groups, 19 isolates belonged to the B1 group and three to the B2 group. The identified VGs corresponded to
stx
1 (17/22),
stx
2 (12/22),
est
A (12/22),
bfp
A (6/22), and
eae
(4/22). Interestingly, hybrid strains containing VGs that belonged to STEC and EPEC (
stx
1,
stx
2,
bfp
A (
n
= 2) and
stx1
,
bfp
A (
n
= 1)) and to STEC and ETEC (
stx
1,
est
A (
n
= 1),
stx
2,
est
A (
n
= 1),
stx
1,
stx
2,
bfp
A (
n
= 6) and
eae
,
stx
1,
stx
2,
bfp
A (
n
= 1)) pathotypes were found. The identified serotypes were O:H21, O70:NM, O91:NM, O5:NM, O:NM, O23:H16, O23:H25, O38:H25, O6:H34, O6:NT and O75:H9. This work represents the first insight of potentially pathogenic
E. coli
strains in red deer from Mexico, and it establishes the importance of deer strain characterization. Moreover, the high frequency (12/22) of hybrid strains found in this study, along with a presumably pathogenic potential profile, could represent an additional risk for humans and animals, therefore further investigations on this issue would be needed. |
---|---|
AbstractList | Escherichia coli
is a commensal bacterium from the human and animal intestinal microbiota; however, some strains may be pathogenic and can cause a wide range of intestinal and extraintestinal diseases. The presence of pathogenic strains in wild animals, such as deer, may constitute a risk for humans and other animals. Thus, the aim of this study was to determine the antimicrobial resistance (AMR), serotype, phylogenetic groups and virulence genes (VGs) of 22
E. coli
isolates obtained from red deer faeces (
Cervus elaphus
). Results showed that most isolates (17/22) were susceptible to the antimicrobials assessed, whereas only five of them were resistant to some of the tested antimicrobials (mainly to β-lactamics, and to trimethoprim/sulphamethoxazole). Regarding the phylogenetic groups, 19 isolates belonged to the B1 group and three to the B2 group. The identified VGs corresponded to
stx
1 (17/22),
stx
2 (12/22),
est
A (12/22),
bfp
A (6/22), and
eae
(4/22). Interestingly, hybrid strains containing VGs that belonged to STEC and EPEC (
stx
1,
stx
2,
bfp
A (
n
= 2) and
stx1
,
bfp
A (
n
= 1)) and to STEC and ETEC (
stx
1,
est
A (
n
= 1),
stx
2,
est
A (
n
= 1),
stx
1,
stx
2,
bfp
A (
n
= 6) and
eae
,
stx
1,
stx
2,
bfp
A (
n
= 1)) pathotypes were found. The identified serotypes were O:H21, O70:NM, O91:NM, O5:NM, O:NM, O23:H16, O23:H25, O38:H25, O6:H34, O6:NT and O75:H9. This work represents the first insight of potentially pathogenic
E. coli
strains in red deer from Mexico, and it establishes the importance of deer strain characterization. Moreover, the high frequency (12/22) of hybrid strains found in this study, along with a presumably pathogenic potential profile, could represent an additional risk for humans and animals, therefore further investigations on this issue would be needed. Escherichia coli is a commensal bacterium from the human and animal intestinal microbiota; however, some strains may be pathogenic and can cause a wide range of intestinal and extraintestinal diseases. The presence of pathogenic strains in wild animals, such as deer, may constitute a risk for humans and other animals. Thus, the aim of this study was to determine the antimicrobial resistance (AMR), serotype, phylogenetic groups and virulence genes (VGs) of 22 E. coli isolates obtained from red deer faeces (Cervus elaphus). Results showed that most isolates (17/22) were susceptible to the antimicrobials assessed, whereas only five of them were resistant to some of the tested antimicrobials (mainly to beta -lactamics, and to trimethoprim/sulphamethoxazole). Regarding the phylogenetic groups, 19 isolates belonged to the B1 group and three to the B2 group. The identified VGs corresponded to stx1 (17/22), stx2 (12/22), estA (12/22), bfpA (6/22), and eae (4/22). Interestingly, hybrid strains containing VGs that belonged to STEC and EPEC (stx1, stx2, bfpA (n=2) and stx1, bfpA (n=1)) and to STEC and ETEC (stx1, estA (n=1), stx2, estA (n=1), stx1, stx2, bfpA (n=6) and eae, stx1, stx2, bfpA (n=1)) pathotypes were found. The identified serotypes were O:H21, O70:NM, O91:NM, O5:NM, O:NM, O23:H16, O23:H25, O38:H25, O6:H34, O6:NT and O75:H9. This work represents the first insight of potentially pathogenic E. coli strains in red deer from Mexico, and it establishes the importance of deer strain characterization. Moreover, the high frequency (12/22) of hybrid strains found in this study, along with a presumably pathogenic potential profile, could represent an additional risk for humans and animals, therefore further investigations on this issue would be needed. |
Author | Cisneros-Guzmán, Luis F. Manjarrez-Hernández, Ángel H. Hernández-Castro, Rigoberto Valdivia-Flores, Arturo G. De la Garza-García, Jorge A. Rosario, Cecilia Navarro, Armando Xicohtencatl-Cortes, Juan Díaz-Aparicio, Efrén Carrillo-Del Valle, Mariana D. Maravilla, Pablo |
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CitedBy_id | crossref_primary_10_3390_ani13050901 crossref_primary_10_5812_ajcmi_12653 crossref_primary_10_1111_zph_12456 crossref_primary_10_14202_vetworld_2019_1578_1583 crossref_primary_10_1016_j_envpol_2022_120129 crossref_primary_10_3390_pathogens11111332 crossref_primary_10_35229_jaes_1061914 crossref_primary_10_3390_microorganisms11071860 crossref_primary_10_1111_zph_12508 crossref_primary_10_1111_lam_13694 |
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is a commensal bacterium from the human and animal intestinal microbiota; however, some strains may be pathogenic and can cause a wide range... Escherichia coli is a commensal bacterium from the human and animal intestinal microbiota; however, some strains may be pathogenic and can cause a wide range... |
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SubjectTerms | Animals Antimicrobial agents Biomedical and Life Sciences Cervus elaphus Deer E coli Ecology Escherichia coli Feces Fish & Wildlife Biology & Management Life Sciences Original Article Zoology |
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Title | Characterization of Escherichia coli strains from red deer (Cervus elaphus) faeces in a Mexican protected natural area |
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