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result(s) for
"Brouwer, Michael S. M."
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A role for ColV plasmids in the evolution of pathogenic Escherichia coli ST58
2022
Escherichia coli
ST58 has recently emerged as a globally disseminated uropathogen that often progresses to sepsis. Unlike most pandemic extra-intestinal pathogenic
E. coli
(ExPEC), which belong to pathogenic phylogroup B2, ST58 belongs to the environmental/commensal phylogroup B1. Here, we present a pan-genomic analysis of a global collection of 752 ST58 isolates from diverse sources. We identify a large ST58 sub-lineage characterized by near ubiquitous carriage of ColV plasmids, which carry genes encoding virulence factors, and by a distinct accessory genome including genes typical of the Yersiniabactin High Pathogenicity Island. This sub-lineage includes three-quarters of all ExPEC sequences in our study and has a broad host range, although poultry and porcine sources predominate. By contrast, strains isolated from cattle often lack ColV plasmids. Our data indicate that ColV plasmid acquisition contributed to the divergence of the major ST58 sub-lineage, and different sub-lineages inhabit poultry, swine and cattle.
Escherichia coli
ST58 has recently emerged as a globally disseminated extra-intestinal pathogen. Here, Reid et al. present a pan-genomic analysis of a global collection of ST58 isolates from animal and human sources, showing that ColV plasmid acquisition likely contributed to the divergence of a major sub-lineage that has a broad host range but is more commonly found in poultry and swine.
Journal Article
Genetic Organisation, Mobility and Predicted Functions of Genes on Integrated, Mobile Genetic Elements in Sequenced Strains of Clostridium difficile
by
Roberts, Adam P.
,
Brouwer, Michael S. M.
,
Warburton, Philip J.
in
Annotations
,
Antibiotic resistance
,
Antibiotics
2011
Clostridium difficile is the leading cause of hospital-associated diarrhoea in the US and Europe. Recently the incidence of C. difficile-associated disease has risen dramatically and concomitantly with the emergence of 'hypervirulent' strains associated with more severe disease and increased mortality. C. difficile contains numerous mobile genetic elements, resulting in the potential for a highly plastic genome. In the first sequenced strain, 630, there is one proven conjugative transposon (CTn), Tn5397, and six putative CTns (CTn1, CTn2 and CTn4-7), of which, CTn4 and CTn5 were capable of excision. In the second sequenced strain, R20291, two further CTns were described.
CTn1, CTn2 CTn4, CTn5 and CTn7 were shown to excise from the genome of strain 630 and transfer to strain CD37. A putative CTn from R20291, misleadingly termed a phage island previously, was shown to excise and to contain three putative mobilisable transposons, one of which was capable of excision. In silico probing of C. difficile genome sequences with recombinase gene fragments identified new putative conjugative and mobilisable transposons related to the elements in strains 630 and R20291. CTn5-like elements were described occupying different insertion sites in different strains, CTn1-like elements that have lost the ability to excise in some ribotype 027 strains were described and one strain was shown to contain CTn5-like and CTn7-like elements arranged in tandem. Additionally, using bioinformatics, we updated previous gene annotations and predicted novel functions for the accessory gene products on these new elements.
The genomes of the C. difficile strains examined contain highly related CTns suggesting recent horizontal gene transfer. Several elements were capable of excision and conjugative transfer. The presence of antibiotic resistance genes and genes predicted to promote adaptation to the intestinal environment suggests that CTns play a role in the interaction of C. difficile with its human host.
Journal Article
Whole-genome sequencing for antimicrobial surveillance: species-specific quality thresholds and data evaluation from the network of the European Union Reference Laboratory for Antimicrobial Resistance genomic proficiency tests of 2021 and 2022
by
Pedersen, Susanne Karlsmose
,
S. M. Brouwer, Michael
,
Lacy-Roberts, Niamh
in
Anti-Bacterial Agents - pharmacology
,
Antimicrobial agents
,
Antimicrobial resistance
2024
Illumina next-generation sequencing is an integral part of antimicrobial resistance (AMR) surveillance and the most widely used whole-genome sequencing (WGS) platform. The high-throughput, relative low-cost, high discriminatory power, and rapid turnaround time of WGS compared to classical biochemical methods means the technology will likely remain a fundamental tool in AMR surveillance and public health. In this study, we present the current level of WGS capacity among national reference laboratories in the EU Reference Laboratory for AMR network, summarizing applied methodology and statistically evaluating the quality of the obtained sequence data. These findings provide the basis for setting new and revised thresholds for quality metrics used in routine WGS, which have previously been arbitrarily defined. In addition, underperforming participants are identified and encouraged to evaluate their workflows to produce reliable results.
Journal Article
Genetic and phenotypic analysis of the pathogenic potential of two novel Chlamydia gallinacea strains compared to Chlamydia psittaci
2021
Chlamydia gallinacea
is an obligate intracellular bacterium that has recently been added to the family of
Chlamydiaceae
.
C. gallinacea
is genetically diverse, widespread in poultry and a suspected cause of pneumonia in slaughterhouse workers. In poultry,
C. gallinacea
infections appear asymptomatic, but studies about the pathogenic potential are limited. In this study two novel sequence types of
C. gallinacea
were isolated from apparently healthy chickens. Both isolates (NL_G47 and NL_F725) were closely related to each other and have at least 99.5% DNA sequence identity to
C. gallinacea
Type strain 08-1274/3. To gain further insight into the pathogenic potential, infection experiments in embryonated chicken eggs and comparative genomics with
Chlamydia psittaci
were performed.
C. psittaci
is a ubiquitous zoonotic pathogen of birds and mammals, and infection in poultry can result in severe systemic illness. In experiments with embryonated chicken eggs,
C. gallinacea
induced mortality was observed, potentially strain dependent, but lower compared to
C. psittaci
induced mortality. Comparative analyses confirmed all currently available
C. gallinacea
genomes possess the hallmark genes coding for known and potential virulence factors as found in
C. psittaci
albeit to a reduced number of orthologues or paralogs. The presence of potential virulence factors and the observed mortality in embryonated eggs indicates
C. gallinacea
should rather be considered as an opportunistic pathogen than an innocuous commensal.
Journal Article
An Insight into the Presence of Antimicrobial Resistance Genes in Opportunistic Pathogenic Bacteria Isolated from Farm-Reared Crickets
by
Bello Gonzalez, Teresita d. J.
,
Bossers, Alex
,
Brouwer, Michael S. M.
in
Amides
,
Analysis
,
Animals
2025
To support the role of insects as sustainable feed and food ingredients, evaluating their potential microbiological risk and safety is crucial. In this study, we investigated the presence of antimicrobial resistance (AMR) genes in selected live opportunistic pathogenic bacteria isolated during the rearing process from clinically healthy farm-reared crickets. Molecular analysis was performed by wholegenome sequencing of a total of 14 of these bacterial strains, 7 from house crickets (Acheta domesticus) and 7 from banded crickets (Gryllodes sigillatus), belonging to Enterobacteriaceae, Staphylococcaceae, Enterococcaceae, and Bacillaceae families. The β-lactam AMR genes (blaOXY2-6, blaACT-16, and blaSHV variants) were the most predominant genes identified, mainly in Enterobacteriaceae strains and in association with fosfomycin (fosA) and oqxAB efflux pump complexes. In addition, blaZ and mecA genes were detected in Bacillus cereus and Mammaliicoccus sciuri strains isolated from both insect species. Genetic mobile elements including IncFIA, IncFIB, IncHI1A, IncHI1B, rep13, and Col3M-like plasmids were detected in Klebsiella pneumoniae, Enterobacter hormaechei, Staphylococcus arlettae, and B. cereus, respectively. The results indicate that, not only in the final product but also during the insect-rearing process, microbial safety control, regarding the presence of pathogenic bacteria and AMR genes, is essential for effectively decreasing the microbiological risk between cricket batches within their environment and in terms of the related feed and food chain.
Journal Article
Patterns of community assembly in the developing chicken microbiome reveal rapid primary succession
by
Bossers, Alex
,
Jurburg, Stephanie D.
,
Brouwer, Michael S. M.
in
Animals
,
Antibiotics
,
Arthrobacter
2019
The fine‐scale temporal dynamics of the chicken gut microbiome are unexplored, but thought to be critical for chicken health and productivity. Here, we monitored the fecal microbiome of healthy chickens on days 1–7, 10, 14, 21, 28, and 35 after hatching, and performed 16S rRNA amplicon sequencing in order to obtain a high‐resolution census of the fecal microbiome over time. In the period studied, the fecal microbiomes of the developing chickens showed a linear‐log increase in community richness and consistent shifts in community composition. Three successional stages were detected: the first stage was dominated by vertically transmitted or rapidly colonizing taxa including Streptococcus and Escherichia/Shigella; in the second stage beginning on day 4, these taxa were displaced by rapid‐growing taxa including Lachnospiraceae and Ruminococcus‐like species variants; and in the third stage, starting on day 10, slow‐growing, specialist taxa including Candidatus Arthrobacter and Romboutsia were detected. The patterns of displacement and the previously reported ecological characteristics of many of the dominant taxa observed suggest that resource competition plays an important role in regulating successional dynamics in the developing chicken gut. We propose that the boundaries between successional stages (3–4 and 14–21 days after hatching) may be optimal times for microbiome interventions. Here, we monitored the fecal microbiome of healthy chickens on days 1–7, 10, 14, 21, 28, and 35 after hatching, and performed 16S rRNA amplicon sequencing in order to obtain a high‐resolution census of the fecal microbiome over time. In the period studied, the fecal microbiomes of the developing chickens showed a linear‐log increase in community richness and consistent shifts in community composition. The patterns of displacement and the previously reported ecological characteristics of many of the dominant taxa observed suggest that resource competition plays an important role in regulating successional dynamics in the developing chicken gut.
Journal Article
Reducing antimicrobial use in livestock alone may be not sufficient to reduce antimicrobial resistance among human Campylobacter infections: an ecological study in the Netherlands
by
Altorf-van der Kuil, Wieke
,
Brouwer, Michael S. M.
,
van den Beld, Maaike J. C.
in
Animals
,
Anti-Bacterial Agents - pharmacology
,
Anti-Bacterial Agents - therapeutic use
2024
Reducing antimicrobial use (AMU) in livestock may be one of the keys to limit the emergence of antimicrobial resistance (AMR) in bacterial populations, including zoonotic pathogens. This study assessed the temporal association between AMU in livestock and AMR among Campylobacter isolates from human infections in the Netherlands between 2004 – 2020. Moreover, the associations between AMU and AMR in livestock and between AMR in livestock and AMR in human isolates were assessed. AMU and AMR data per antimicrobial class (tetracyclines, macrolides and fluoroquinolones) for Campylobacter jejuni and Campylobacter coli from poultry, cattle, and human patients were retrieved from national surveillance programs. Associations were assessed using logistic regression and the Spearman correlation test. Overall, there was an increasing trend in AMR among human C. jejuni/coli isolates during the study period, which contrasted with a decreasing trend in livestock AMU. In addition, stable trends in AMR in broilers were observed. No significant associations were observed between AMU and AMR in domestically produced broilers. Moderate to strong positive correlations were found between the yearly prevalence of AMR in broiler and human isolates. Reducing AMU in Dutch livestock alone may therefore not be sufficient to tackle the growing problem of AMR in Campylobacter among human cases in the Netherlands. More insight is needed regarding the population genetics and the evolutionary processes involved in resistance and fitness among Campylobacter.
Journal Article
Building an international one health strain level database to characterise the epidemiology of AMR threats: ESBL-AmpC Producing E. coli as an example—challenges and perspectives
by
Perestrelo, Sara
,
Morris, Dearbháile
,
Brouwer, Michael S. M.
in
AmpC beta-lactamase (AmpC)
,
Animal human relations
,
Animals
2023
Antimicrobial resistance (AMR) is one of the top public health threats nowadays. Among the most important AMR pathogens, Escherichia coli resistant to extended spectrum cephalosporins (ESC-EC) is a perfect example of the One Health problem due to its global distribution in animal, human, and environmental sources and its resistant phenotype, derived from the carriage of plasmid-borne extended-spectrum and AmpC β-lactamases, which limits the choice of effective antimicrobial therapies. The epidemiology of ESC-EC infection is complex as a result of the multiple possible sources involved in its transmission, and its study would require databases ideally comprising information from animal (livestock, companion, wildlife), human, and environmental sources. Here, we present the steps taken to assemble a database with phenotypic and genetic information on 10,763 ESC-EC isolates retrieved from multiple sources provided by 13 partners located in eight European countries, in the frame of the DiSCoVeR Joint Research project funded by the One Health European Joint Programme (OH-EJP), along with its strengths and limitations. This database represents a first step to help in the assessment of different geographical and temporal trends and transmission dynamics in animals and humans. The work performed highlights aspects that should be considered in future international efforts, such as the one presented here.
Journal Article
Potential uptake and persistence of relevant feed- and food-pathogens in black soldier fly larvae (Hermetia illucens)
by
Dame-Korevaar, Anita
,
Ruuls, Lisette
,
Luinenburg, Xander
in
Agricultural Economics
,
Agriculture
,
Bacteria
2026
Background
The insect production sector is rapidly developing and the use of organic residual streams would contribute to a circular insect sector. However, an important element is the veterinary and food safety of these residual streams. The presence of pathogens in insects or organic residual streams may impact insect health but may also cause health risks for the consumers of the insects.
Methods
In this in vivo study two experiments were performed with Black Soldier Fly (
Hermetica illucens
) Larvae (BSFL) to study the uptake and persistence of different relevant pathogens (CSFV, FMDV, HEV, LPAIV, SVDV,
Eimeria
, bacteria including AMR genes,
B. cereus
,
C. perfringens
,
K. pneumoniae
,
S. abaetutuba
) at different time points (D0, D1, D3, D7) during rearing on spiked broiler manure (BRM).
Results
The results suggest that some of the studied pathogens can transmit from the substrate to the insects, but others were not detected. Infectious FMDV and SVDV were detected after spiking, but only at D1. HEV and the parasite
Eimeria
were detected in the BSFL during the whole experiment, suggesting a transfer from the spiked substrate. The bacteria
B. cereus
,
K. pneumoniae
and
S. abaetutuba
and bacteria with AMR genes were present in the spiked substrate and the BSFL during the whole experiment. However, the presence of
K. pneumoniae
,
C. perfringens
and a few colonies of
B. cereus
in the BSFL prior to start of the experiment makes it difficult to evaluate the uptake from spiked substrate.
C. perfringens
was during the study only detected in the spiked BRM and not in the larvae.
Conclusion
This study studied spiked pathogens in not yet legalized residual stream broiler manure (BRM) used for insect rearing. Although a limited number of replicates was included, the presence of potential food and feed safety hazards in spiked broiler manure and subsequently in the unprocessed BSFL argues for future studies. These studies should focus on estimating the veterinary and food- and feed safety risks of using organic residual streams, including the risk of exposure to contaminated residue and insects, for both insects and consumers. Furthermore, research on the effect of processing and quality control methods, aiming to reduce the risk of transmission of pathogens and AMR genes into the circular production chain should get attention.
Journal Article