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Similarity between human and chicken Escherichia coli isolates in relation to ciprofloxacin resistance status.

BACKGROUND: The food supply is suspected to be a source of fluoroquinolone-resistant Escherichia coli that cause disease in humans, but supporting molecular data are lacking. METHODS: We performed a molecular-epidemiological comparison, in Barcelona, Spain (1996-1998), of 117 contemporaneous, geographically matched E. coli isolates from humans (35 blood isolates and 33 fecal) or chickens (49 fecal) that were either susceptible (n = 57) or resistant (n = 60) to ciprofloxacin and analyzed them by phylogenetic group, virulence genotype, and O antigens using random amplified polymorphic DNA (RAPD) analysis and pulsed-field gel electrophoresis (PFGE). RESULTS: When analyzed by phylogenetic distribution, virulence profiles, and O antigens, resistant human isolates were distinct from susceptible human isolates but were largely indistinguishable from chicken isolates, whereas resistant and susceptible chicken isolates were similar. Susceptible human isolates contained more virulence-associated genes and more frequently expressed virulence-associated O antigens than did resistant human or any chicken isolates. Certain resistant human isolates closely resembled chicken isolates by RAPD and PFGE analysis. CONCLUSIONS: Ciprofloxacin-resistant E. coli may arise de novo in poultry from susceptible progenitors, be transmitted to humans via the food supply, and go on to cause potentially life-threatening infections. If confirmed, these findings would mandate efforts to eliminate this reservoir of drug-resistant pathogens and/or to block their transmission to humans.

Animals↗

Role of oxygen dependent mechanisms in virulence of Salmonella typhimurium.

Catalase and superoxide dismutase (SOD) activities of five strains of S. typhimurium, namely SF 1546 LT2 71, SF 1835 C5 50, 386 SF 1591 Ra 20, SF 1567 Rd1, and an Indian strain were determined and correlated with their virulence profile. All five Salmonella strains exhibited catalase and SOD activities. No correlation was observed between either SOD and/or catalase activity and LD50 values of the isolates. Oxygen free radical generation elicited by macrophages, in the presence of virulent and avirulent salmonellae was also not statistically significant (P greater than 0.05), although the virulent species significantly resisted the macrophage bactericidal activity (P less than 0.05). It appears, therefore, that oxygen-dependent bactericidal mechanisms may not be important in phagocytic killing of S. typhimurium.

Catalase↗

Virulence characteristics of Escherichia coli causing first urinary tract infection predict risk of second infection.

Escherichia coli causes most urinary tract infections (UTIs) in ambulatory populations. Several bacterial virulence factors occur more frequently among urinary E. coli isolates than among fecal isolates, but none have been reported to predict risk of second UTIs. DNA hybridization was used to characterize the bacterial virulence profiles of urinary E. coli isolates from 174 women with first UTI and compared for risk of second UTI. Of the women, 28 (16%) had a culture-confirmed second UTI within 6 months of a negative test-of-cure. Three virulence factors were associated with a significantly lower risk of second UTI: cytotoxic necrotizing factor (relative risk [RR] = 0.0; 95% confidence interval [CI], 0.0, 0.42); hemolysin (RR, 0.10; 95% CI, 0.01, 0.69), and S fimbrial adhesin (RR, 0.25; 95% CI, 0.06, 1.00). Dr binding was associated with a 2-fold increased risk of second UTI (RR, 2.30; 95% CI, 1.23, 4.29). Half of all paired first and second UTI isolates from the same subject were apparently the same.

Adult↗

Enterotoxigenic profiles and polymerase chain reaction detection of Bacillus cereus group cells and B. cereus strains from foods and food-borne outbreaks.

Bacillus cereus is one of the important food pathogens. Since B. cereus group cells, such as B. cereus, B. thuringiensis, B. anthracis and B. mycoides, share many phenotypical properties and a high level of chromosomal sequence similarity, it is interesting to investigate the virulence profiles for B. cereus group cells, including B. cereus strains isolated from foods and samples associated with food-poisoning outbreaks. For this investigation, the presence of enterotoxin genes, such as those of haemolysin BL, B. cereus enterotoxin T and enterotoxin FM, were assayed by polymerase chain reaction (PCR) methods. Meanwhile, their enterotoxin activities were assayed using the BCET-RPLA kit, haemolytic patterns on sheep blood agar and their cytotoxicity to Chinese hamster ovary (CHO) cells. Results showed that there were 12 enterotoxigenic profiles for the 98 B. cereus group strains collected. In addition, if any of the three types of enterotoxins was present in the B. cereus group cells, these cells were shown to be cytotoxic to the CHO cells. Similar enterotoxigenic profiles could be found among strains of B. cereus, B. mycoides and B. thuringiensis. Thus, all B. cereus group strains may be potentially toxigenic and the detection of these cells in foods is important. We thus designed PCR primers, termed Ph1/Ph2, from the sphingomyelinase gene of B. cereus cells. These primers were specific for all B. cereus group strains and could be used for the detection of B. cereus cells contaminated in food samples.

Animals↗

Genomic insights into a diarrheal outbreak in Bangladesh reveal novel ETEC lineages and expansion of CS23 colonization factor.

Enterotoxigenic Escherichia coli (ETEC), a leading cause of diarrhea, is defined by heat-stable (ST) and/or heat-labile (LT) toxins and associated colonization factors (CFs). However, there is still a knowledge gap in understanding ETEC's evolution, particularly in endemic regions like Bangladesh. This study investigates the genomic attributes contributing to the rise of ETEC-associated diarrhea in Bangladesh during 2022-2023. Whole genome sequencing of 325 ETEC isolates (2022-2023), compared with historical strains (1980-2021), revealed significant evolutionary changes. Our findings showed a significant shift in ETEC toxin from LT to ST over the period 2013-2023. The most frequent virulence profile during this period was CFA/I + CS21 compared with previous years (1980-2021). The emergence of CS23-positive ETEC was reported for the first time in Bangladesh, which was considered a less common CF in previous studies. Notably, we report the four novel lineages "L26-L29" in this study through phylogenetic analysis, partly encompassing emergent CS23-positive ETEC strains. Additionally, the high prevalence of multi-drug-resistant ETEC strains and the presence of ESBL-CTX-M-resistant gene during 2022-2023 are a matter of great concern, underscoring the need for preventive measures. The switch of distinct toxin and CF combinations, the rapid emergence of CS23, ESBL-CTX-M resistance, and novel lineages may be the reason behind the increased number of ETEC diarrheal cases between 2022 and 2023. These findings highlight the rapid ETEC evolution that underscores the necessity of continued genomic surveillance to track ongoing changes.IMPORTANCEThis study expands on previous evidence, demonstrating a remarkable genomic diversity in ETEC strains from 2022 to 2023, particularly in virulence factors and AMR genes. The combined findings from these studies will be important for mitigating future diarrheal outbreaks by informing preventive measures, including future vaccine targets, and implementing antibiotic stewardship programs against ETEC infection. Importantly, this research underscores the necessity of continued genomic surveillance to track ongoing changes in ETEC. Such monitoring is essential for understanding the pathogen's evolving population structure, transmission dynamics, and resistance mechanisms.

Bangladesh↗

Virulence factor gene profiles of Escherichia coli isolates from clinically healthy pigs.

Nonpathogenic, intestinal Escherichia coli (commensal E. coli) supports the physiological intestinal balance of the host, whereas pathogenic E. coli with typical virulence factor gene profiles can cause severe outbreaks of diarrhea. In many reports, E. coli isolates from diarrheic animals were classified as putative pathogens. Here we describe a broad variety of virulence gene-positive E. coli isolates from swine with no clinical signs of intestinal disease. The isolation of E. coli from 34 pigs from the same population and the testing of 331 isolates for genes encoding heat-stable enterotoxins I and II, heat-labile enterotoxin I, Shiga toxin 2e, and F4, F5, F6, F18, and F41 fimbriae revealed that 68.6% of the isolates were positive for at least one virulence gene, with a total of 24 different virulence factor gene profiles, implying high rates of horizontal gene transfer in this E. coli population. Additionally, we traced the occurrence of hemolytic E. coli over a period of 1 year in this same pig population. Hemolytic isolates were differentiated into seven clones; only three were found to harbor virulence genes. Hemolytic E. coli isolates without virulence genes or with only the fedA gene were found to be nontypeable by slide agglutination tests with OK antisera intended for screening live cultures against common pathogenic E. coli serogroups. The results appear to indicate that virulence gene-carrying E. coli strains are a normal part of intestinal bacterial populations and that high numbers of E. coli cells harboring virulence genes and/or with hemolytic activity do not necessarily correlate with disease.

Animals↗

Trade-Offs Associated with Virulence of Soybean Cyst Nematode on the Broad-Spectrum Resistance Source PI 437654.

The soybean cyst nematode (SCN; Heterodera glycines) poses a major challenge to soybean production, intensified by the declining effectiveness of natural resistance against this pathogen. Although the use of resistant soybean varieties can be effective, their widespread and repeated use ultimately results in the emergence of virulent nematode populations that can successfully attack these resistant hosts. To assess for potential trade-offs between virulence and fitness, we investigated the hatch response, penetration rate, and reproductive potential of SCN adapted to overcome the broad-spectrum resistance source PI 437654. The hatching process is a critical phase in the life cycle of the SCN, influencing its ability to infect hosts and complete its life cycle. Our results indicated that SCN populations exhibit preferential and heightened hatch responses to their adapted host compared to alternative hosts, regardless of their virulence profile. Additionally, we found that SCN populations adapted to overcome broad-spectrum resistance showed reduced reproductive success on susceptible hosts compared to unadapted populations. This reduction in reproductive success was not attributed to differences in hatch response or penetration rates. The results from our study highlight the potential trade-offs associated with SCN virulence adaptation and emphasize the importance of considering these evolutionary dynamics in developing sustainable management strategies.

Disease Control and Pest Management↗

Detection of potential virulence markers of Vibrio vulnificus strains isolated from fish in Sweden.

A variety of potential virulence markers such as the production of cytotoxin, haemolysin, exoenzymes, bactericidal action of sera, presence of capsule and adhesion to human intestinal cells were investigated on Vibrio vulnificus strains isolated from eels in Sweden. The strains had the capacity of producing all or some of the above-mentioned virulence markers, to varying degrees though none of the strains produced any capsule. The strains also bound specifically to human intestinal cells in vitro with maximum adhesion levels of 30 bacteria/cell. The results on binding of V. vulnificus cytotoxin to HeLa cells, showed that a very short exposure time (30 min) was required for inducing the cytotoxic effects. V. vulnificus is a relatively new addition to the list of bacteria pathogenic for humans, and since there are increasing reports on its isolation from aquatic environments and seafood (e.g. raw oysters, crabs and shellfish), the results on virulence profiles of V. vulnificus strains presented above emphasize the importance of these organisms in public health and epidemiological studies.

Animals↗

[Enterococcal bacteremia at Nîmes university hospital].

PURPOSE OF THE STUDY: The aim of this study was the description of enterococcal bacteremia and the evaluation of their resistance evolution to antibiotics and the virulence profile of these isolates. PATIENTS AND METHODS: We have studied all the bacteremia caused by Enterococcus spp. from the 1st of July 2003 until the 30th of June 2004 at Nîmes university hospital. For each isolate, population, clinical and microbiological data were collected. Multiplex PCR allowed for the identification of glycoprotein resistant phenotypes and furthermore, to identify the main virulence genes found in the enterococci. RESULTS: Thirty-three strains were identified from 33 patients (60.6% male) with a median age of 68 years (median: 3-96). The vital prognostic was calculated in 63.6% of the cases (MacCabe > or =1); seven patients died during their hospitalization (21.2%). The infections were nosocomial in 60.6% of the cases. No epidemic was observed. The principal comorbidities were cardiovascular and digestive pathologies. In addition, 54.5% of patients had had a surgical intervention. Enterococcus faecalis (87.9%) was the cause of infection in the majority of cases followed by Enterococcus faecium. Most of the infections were monomicrobial (75.8%). E. faecalis was sensitive to amoxicillin and to glycopeptides but was resistant to norfloxacin, erythromycin and pristinamycin. The same observations were made for the E. faecium with the exception of amoxicillin. E. faecalis had the maximum number of virulence genes and E. faecium the least. CONCLUSION: The enterococcal bacteremia had mainly a nosocomial origin. The isolates came from digestive tract flora but also from catheters. The mortality rate was 21.2%. A developing sensitivity to erythromycin and pristinamycin was observed in comparison to the data of the ONERBA (2002-2003). Only one isolate was resistant to glycopeptide. This was the first European E. faecium containing the vanD allele. This isolate proved fatal to the patient. The dark evolution of enterococcal bacteremia and their frequent nosocomial origin induce to promote studies intended for better knowing the risk factors of such infections.

Adolescent↗

Shiga toxin 1c-producing Escherichia coli strains: phenotypic and genetic characterization and association with human disease.

The distribution of the stx(1c) allele among Shiga toxin (Stx)-producing Escherichia coli (STEC) and the virulence characteristics of stx(1c)-harboring STEC are unknown. In this study, we identified stx(1c) in 76 (54.3%) of 140 eae-negative, but in none of 155 eae-positive, human STEC isolates (P < 0.000001). The 76 stx(1c)-harboring E. coli isolates belonged to 22 serotypes, and each produced Stx1c as demonstrated by latex agglutination. Characterization of putative virulence factors demonstrated the presence of the locus of proteolysis activity (LPA) and the high-pathogenicity island in 65.8 and 21.1%, respectively, of the 76 Stx1c-producing E. coli isolates. Moreover, all but three of these strains contained saa, the gene encoding an STEC autoagglutinating adhesin. The virulence profiles of Stx1c-producing E. coli isolates were mostly serotype independent and heterogeneous. This enabled us to subtype the isolates within the same serotype. The individuals infected with Stx1c-producing E. coli strains were between 3 months and 72 years old (median age, 23.5 years) and usually had uncomplicated diarrhea or were asymptomatic. We conclude that Stx1c-producing E. coli strains represent a significant subset of eae-negative human STEC isolates, which belong to various serotypes and frequently possess LPA and saa as their putative virulence factors. The phenotypic and molecular characteristics determined in this study allow the subtyping of Stx1c-producing STEC in epidemiological and clinical studies.

Adhesins, Bacterial↗

Transmission of uropathogens between sex partners.

Epidemiologic evidence and several case reports suggest that Escherichia coli causing urinary tract infection (UTI) may be transmitted between sex partners. In order to test this hypothesis, urinary, vaginal, and fecal E. coli isolates from 19 women with UTI were compared with E. coli found in random initial voids from their most recent male sex partner. E. coli was isolated from 4 of 19 male sex partners. In each case, the E. coli isolated from the man was identical by pulsed-field gel electrophoresis and bacterial virulence profile to the urinary E. coli from his sex partner.

Adult↗

Unveiling the Genomic Landscape of Escherichia coli O1:K1:H7 ST59 in Non-complicated Urinary Infections from Colombia Through Whole-Genome Sequencing.

Escherichia coli (E. coli) is a Gram-negative bacterium known for causing both intestinal and extraintestinal infections in humans. Among extraintestinal infections, urinary tract infections (UTIs) are particularly prevalent and impactful. In Colombia, limited information is available regarding the molecular epidemiology of E. coli. This lack of data hinders the understanding of the local epidemiological landscape and the identification of pathogenic lineages that may contribute to public health concerns. This study aimed to characterize an E. coli strain isolated from a 24-year-old female patient with a community-acquired lower UTI, focusing on genotypic analysis through whole-genome shotgun sequencing (WGSS) and subsequent bioinformatics investigations. The identified strain belongs to phylogroup F, with serotype O1:H7 and sequence type (ST) 59. Several virulence factors, including traT and afimbrial adhesins (afaC), were identified, with afaC being notably uncommon in ST59 phylogroup F. In addition, an antibiotic susceptibility test was performed, and the isolate was found to be sensitive to all the antibiotics tested. This work contributes to the understanding of E. coli phylogroup F in Colombia and provides valuable genomic data, shedding light on the virulence profile of this strain in lower urinary tract infections.

Female↗

Distribution and characteristics of Escherichia coli clonal group A.

Among 1,102 recent Escherichia coli clinical isolates, clonal group A was identified in 17 of 20 (U.S. and non-U.S.) geographic locales, mainly among U.S. isolates (9% vs. 3%; p < 0.001) and those resistant to trimethoprim-sulfamethoxazole (10% vs. 1.7%; p < 0.001). The extensive antimicrobial resistance and virulence profiles of clonal group A may underlie its recent widespread emergence.

Anti-Infective Agents↗

Virulence factors of avian pathogenic Escherichia coli isolated from broilers from the south of Brazil.

Sixty-three Escherichia coli strains isolated from broilers with respiratory problems were examined for virulence factors, hemolysin synthesis ability, motility, hemagglutination capacity, operon pap presence, colicin production, and serum resistance. The capacity to hemagglutinate guinea pig erythrocytes was found in 53 (84.1%) of the samples, but only 30 (47.6%) agglutinated chicken erythrocytes. D-mannose-sensitive hemagglutination against guinea pig erythrocytes was found in 19 (30.2%) samples and against chicken erythrocytes, in 15 (23.8%) samples, whereas the D-mannose-resistant hemagglutination with guinea pig erythrocytes was found in 34 (54%) samples, and 13 of these (20.6%) showed this characteristic against chicken erythrocytes. Operon pap, P fimbria codifier, was detected in 26 samples in a total of 34 D-mannose-resistant samples. Colicin production was observed in 55 (87.3%) of the strains, and 41.8% presented V colicin production. Of the samples analyzed, 56 (88.9%) presented serum resistance, six (9.5%) were intermediate, and only one (1.6%) was sensitive to the action of the complement. The diversity of virulence profiles detected in the samples in this study explains in part the multifactorial characteristics of avian colibacillosis.

Animals↗

Bacterial characteristics in relation to clinical source of Escherichia coli isolates from women with acute cystitis or pyelonephritis and uninfected women.

Characteristics differentiating Escherichia coli strains that cause cystitis or pyelonephritis from fecal E. coli remain incompletely defined, particularly among adult women in the United States. Accordingly, phylogenetic group, O antigens, and virulence factors (VFs) were analyzed among 329 E. coli isolates from the mid-to-late 1990s from women in the United States with acute pyelonephritis (n = 170), cystitis (n = 83), or no infection (fecal; n = 76). Compared with fecal and cystitis isolates, pyelonephritis isolates exhibited a greater prevalence of phylogenetic group B2, most virulence-associated O antigens, and most VFs and had higher VF scores. In contrast, cystitis and fecal isolates differed minimally. By stepwise multivariable logistic regression, significant (P < or = 0.015) predictors of cystitis and/or pyelonephritis (versus fecal) included afa/dra (Dr-binding adhesins), ibeA (invasion of brain endothelium), iha (putative adhesin-siderophore), malX (pathogenicity island marker), the O75 antigen, papEF (P fimbriae), papG allele II (P adhesin variant), group B2, and sfa/foc (S and F1C fimbriae). However, virulence profiles overlapped considerably among source groups and varied greatly within each group. E. coli "clonal group A" (CGA) and the O2:K5/K7:H1 and O75:K+ clonal groups were significantly associated with cystitis and/or pyelonephritis. These findings identify potential vaccine targets, suggest that urovirulence is multiply determined, and confirm the urovirulence of specific E. coli clonal groups, including recently recognized CGA.

Acute Disease↗

Virulence characteristics of Escherichia coli strains causing acute cystitis in young adults in Iran.

BACKGROUND: Escherichia coli strains that cause cystitis posses virulence properties that facilitate their colonisation and persistence in the bladder. In Iran, despite the high number of the urinary tract infections, very few studies has been done to determine the role of these virulence properties in the pathogenesis of E. coli cyctitis. PATIENTS AND METHODS: Eighty-seven strains of E. coli, isolated from young adults with cystitis in Shiraz, Iran, were examined for the expression of type 1 and P-fimbriae, mannose resistant haemagglutination, haemolysin production, aerobactin-mediated iron uptake, O:K serotypes, biochemical phenotypes (BPTs) and their antibiotic susceptibility patterns. RESULTS: Seventy-six percent of the strains expressed multiple virulence properties. There was a significant correlation between the presence of aerobactin and the expression of type 1 fimbriae. All P-fimbriated strains produced aerobactin with 50% of them also coexpressing haemolysin. Of the 29 different O:K serotypes identified, 42% belonged to serotypes not commonly found among European serotypes associated with UTI. Strains of O groups 4 and 6 expressed more virulence factors than the others. A high resistance against ampicillin, trimethoprim and cotrimoxasol was observed among the isolates with 53% of the isolates showing multiresistance to these three antibiotics. Certain BPTs were also found among O:K serotypes with some containing strains of the same virulence profile. CONCLUSION: We conclude that certain colonal groups of E. coli are commonly associated with cystitis in young adults in Iran with strains possessing a combination of aerobactin and type 1 fimbriae being the dominant ones and belonging to serotypes not commonly found in Europe. We also conclude that the multiple antibiotic resistant E. coli strains causing cyctitis are highly prevalent in this part of the country.

Acute Disease↗

pH-dependent denaturation of extracellular aspartic proteinases from Candida species.

The yeasts Candida albicans. Candida tropicalis, and Candida parapsilosis secrete aspartic proteinases which may enhance virulence. Profiles of pH-dependent irreversible denaturation of such enzymes were determined at 37 degrees C. C. albicans proteinases from both serotypes A and B maintained 50% of their activity near pH 7.25. Proteinases from C. parapsilosis and C. tropicalis lost 50% of their activity at pH 6.75 and pH 6.15, respectively. This suggests that in the infected host only proteinases of C. albicans maintain a native state for any length of time.

Aspartic Acid Endopeptidases↗

Genomic Insights into Mammaliicoccus sciuri from Subclinical Bovine Mastitis to Unveil Key Resistance, Virulence, Biofilm and Adaptation Traits.

The Mammaliicoccus sciuri (M. sciuri), is recognized as a reservoir of antimicrobial resistance (AMR) genes, poses challenges in the Indian dairy sector where antibiotic use is poorly regulated. This study aimed to genomically characterize M. sciuri (formerly Staphylococcus sciuri) isolates recovered from subclinical mastitis (SCM) cattle milk. A total of 128 composite (quarter-wise pooled) milk samples were collected from 199 households (HH) across 16 epiunits /villages in four blocks of Chikkaballapur district, Karnataka, India. Of these, 36 milk samples (28.13%, 36/128; 95% CI: 21.06&#x2013;36.46%) were diagnosed with SCM using the California Mastitis Test (CMT) and bacteriological culture yielded 113 isolates (88.28%; 113/128; 95% CI: 81.56&#x2013;92.77%) were phenotypically identified as Staph spp. Through molecular technique PCR targeting the gap gene, two isolates (1.77%; 2/113; 95% CI: 0.49&#x2013;6.22%) from Hosuru and Gattamaranahalli epiunits were confirmed as M. sciuri and both isolates were mecA-positives indicating methicillin resistance. Whole genome sequencing (WGS) identified 36&#x2013;37 resistance genes (mecA and blaZ), conferring resistance to &#x3b2;-lactams, macrolides, fluoroquinolones and aminoglycosides. Horizontal gene transfer (HGT) was evidenced by diverse mobile genetic elements (MGEs) such as SCCmec variants, insertion sequences, transposons (IS3, IS6, IS256, and IS1182) and plasmids (Rep1, Rep13, RepUS5 and RepUS43). Virulence profiling uncovered biofilm-associated genes (ica, bap) and heavy metal resistance operons (ars, cop, znu) suggesting mechanisms for environmental persistence and co-selection of resistance traits. Phylogenetic analysis of 99 global isolates revealed host-and geography-specific clustering with Indian isolates occupying distinct evolutionary niches. These findings highlights its possible role as an AMR reservoir and also in bovine mastitis.

Animals↗