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1.
Vet Microbiol ; 293: 110084, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38608374

ABSTRACT

Streptococcus suis is an important pathogen causing severe disease in pigs and humans, giving rise to economic losses in the pig production industry. Out of 65 S. suis isolates collected from diseased pigs in Switzerland between 2019 and 2022, 57 isolates were thoroughly examined by phenotypic and whole genome sequence (WGS) based characterization. The isolates' genomes were sequenced allowing for a comprehensive analysis of their distribution in terms of serovar, sequence type (ST), clonal complex (CC), and classical virulence markers. Antimicrobial resistance (AMR) genes were screened, and phenotypic susceptibility to eight classes of antimicrobial agents was examined. Serovar 6, devoid of any resistance genes, was found to be most prevalent, followed by serovars 1, 3, 1/2, and 9. Thirty STs were identified, with ST1104 being the most prevalent. Serovar 2 and serovar 1/2 were associated with CC1, potentially containing the most virulent variants. Based on single nucleotide polymorphism (SNP) analyses, fifteen isolates belonged to one of seven putative transmission clusters each consisting of two or three isolates. High phenotypic AMR rates were detected for tetracyclines (80%) and macrolides (35%) and associated with the resistance genes tet(O) and erm(B), respectively. In contrast, susceptibility to ß-lactam antibiotics and phenicols was high. Determination of phenotypic AMR profiling, including the minimum inhibitory concentrations (MICs) of the tested antimicrobial agents, sets a baseline for future studies. The study provides valuable insights into the genetic diversity and antimicrobial susceptibility of Swiss S. suis isolates, facilitating the identification of emerging clones relevant to public health concerns.


Subject(s)
Anti-Bacterial Agents , Genetic Variation , Microbial Sensitivity Tests , Streptococcal Infections , Streptococcus suis , Swine Diseases , Animals , Streptococcus suis/genetics , Streptococcus suis/drug effects , Streptococcus suis/pathogenicity , Streptococcus suis/classification , Streptococcus suis/isolation & purification , Swine , Swine Diseases/microbiology , Switzerland/epidemiology , Streptococcal Infections/veterinary , Streptococcal Infections/microbiology , Anti-Bacterial Agents/pharmacology , Whole Genome Sequencing , Drug Resistance, Bacterial/genetics , Virulence/genetics , Serogroup , Polymorphism, Single Nucleotide
2.
Microbiologyopen ; 12(3): e1353, 2023 06.
Article in English | MEDLINE | ID: mdl-37379423

ABSTRACT

Glaesserella parasuis, Mycoplasma hyorhinis, and Mycoplasma hyosynoviae are important porcine pathogens responsible for polyserositis, polyarthritis, meningitis, pneumonia, and septicemia causing significant economic losses in the swine industry. A new multiplex quantitative polymerase chain reaction (qPCR) was designed on one hand for the detection of G. parasuis and the virulence marker vtaA to distinguish between highly virulent and non-virulent strains. On the other hand, fluorescent probes were established for the detection and identification of both M. hyorhinis and M. hyosynoviae targeting 16S ribosomal RNA genes. The development of the qPCR was based on reference strains of 15 known serovars of G. parasuis, as well as on the type strains M. hyorhinis ATCC 17981T and M. hyosynoviae NCTC 10167T . The new qPCR was further evaluated using 21 G. parasuis, 26 M. hyorhinis, and 3 M. hyosynoviae field isolates. Moreover, a pilot study including different clinical specimens of 42 diseased pigs was performed. The specificity of the assay was 100% without cross-reactivity or detection of other bacterial swine pathogens. The sensitivity of the new qPCR was demonstrated to be between 11-180 genome equivalents (GE) of DNA for M. hyosynoviae and M. hyorhinis, and 140-1200 GE for G. parasuis and vtaA. The cut-off threshold cycle was found to be at 35. The developed sensitive and specific qPCR assay has the potential to become a useful molecular tool, which could be implemented in veterinary diagnostic laboratories for the detection and identification of G. parasuis, its virulence marker vtaA, M. hyorhinis, and M. hyosynoviae.


Subject(s)
Multiplex Polymerase Chain Reaction , Mycoplasma Infections , Mycoplasma hyorhinis , Mycoplasma hyosynoviae , Pasteurellaceae Infections , Pasteurellaceae , Swine Diseases , Multiplex Polymerase Chain Reaction/methods , Pasteurellaceae/isolation & purification , Mycoplasma hyorhinis/isolation & purification , Mycoplasma hyosynoviae/isolation & purification , Swine Diseases/diagnosis , Swine Diseases/microbiology , Animals , Swine , Mycoplasma Infections/diagnosis , Mycoplasma Infections/microbiology , Mycoplasma Infections/veterinary , Pasteurellaceae Infections/diagnosis , Pasteurellaceae Infections/microbiology , Pasteurellaceae Infections/veterinary , Pilot Projects , Sensitivity and Specificity
3.
Pathogens ; 11(7)2022 Jul 01.
Article in English | MEDLINE | ID: mdl-35889997

ABSTRACT

Glaesserella parasuis is the etiological agent of Glässer's disease, which is associated with polyserositis and arthritis and has a significant impact on the economy of the pig production industry. For the optimal surveillance of this pathogen, as well as for the investigation of G. parasuis-associated diseases, it is crucial to identify G. parasuis at the serovar level. In this work, we designed and developed new high-resolution melting (HRM) approaches, namely, the species-specific GPS-HRM1 and two serovar-specific HRM assays (GPS-HRM2 and GPS-HRM3), and evaluated the sensitivity and specificity of the assays. The HRM assays demonstrated good sensitivity, with 12.5 fg-1.25 pg of input DNA for GPS-HRM1 and 125 fg-12.5 pg for GPS-HRM2 and GPS-HRM3, as well as a specificity of 100% for the identification of all recognized 15 G. parasuis serovars. Eighteen clinical isolates obtained between 2014 and 2022 in Switzerland were tested by applying the developed HRM assays, which revealed a heterogeneous distribution of serovars 2, 7, 4, 13, 1, and 14. The combination with virulence marker vtaA (virulence-associated trimeric autotransporters) allows for the prediction of potentially virulent strains. The assays are simple to execute and enable a reliable low-cost approach, thereby refining currently available diagnostic tools.

4.
Microbiologyopen ; 11(2): e1272, 2022 04.
Article in English | MEDLINE | ID: mdl-35478285

ABSTRACT

Actinobacillus pleuropneumoniae is the etiological agent of porcine pleuropneumonia, a respiratory infectious disease responsible for global economic losses in the pig industry. From a monitoring perspective as well as due to the different courses of disease associated with the various serovars, it is essential to distinguish them in different herds or countries. In this study, we developed a novel high resolution melting (HRM) assay based on reference strains for each of the 19 known serovars and additional 15 clinical A. pleuropneumoniae isolates. The novel HRM comprises the species-specific APP-HRM1 and two serovar-specific HRM assays (APP-HRM2 and APP-HRM3). APP-HRM1 allowed polymerase chain reaction (PCR) amplification of apxIV resulting in an A. pleuropneumoniae specific melting curve, while nadV specific primers differentiated biovar 2 from biovar 1 isolates. Using APP-HRM2 and APP-HRM3, 13 A. pleuropneumoniae serovars can be determined by inspecting the assigned melting temperature. In contrast, serovar 3 and 14, serovar 9 and 11, and serovar 5 and 15 have partly overlapping melting temperatures and thus represent a challenge to accurately distinguish them. Consequently, to unambiguously ensure the correct assignment of the serovar, it is recommended to perform the serotyping HRM assay using a positive control for each serovar. This rapid and user-friendly assay showed high sensitivity with 1.25 fg-125 pg of input DNA and a specificity of 100% to identify A. pleuropneumoniae. Characteristic melting patterns of amplicons might allow detecting new serovars. The novel HRM assay has the potential to be implemented in diagnostic laboratories for better surveillance of this pathogen.


Subject(s)
Actinobacillus Infections , Actinobacillus pleuropneumoniae , Swine Diseases , Actinobacillus Infections/diagnosis , Actinobacillus Infections/veterinary , Actinobacillus pleuropneumoniae/genetics , Animals , Serogroup , Serotyping , Swine , Swine Diseases/diagnosis
5.
Vet Res ; 51(1): 85, 2020 Jul 08.
Article in English | MEDLINE | ID: mdl-32641158

ABSTRACT

Streptococcus (S.) suis is a globally important swine pathogen, which comprises certain zoonotic serotypes. In this study, a detailed characterization of 88 porcine S. suis isolates was performed by analyzing capsular (cps) types, multilocus sequence typing (MLST) and investigation of the minimum core genome (MCG). In order to focus on the virulence potential of presumable invasive disease-associated S. suis isolates, virulence-associated gene profiles were assessed followed by screening a chosen subset of S. suis strains with a molecular pathotyping tool. Results showed a high genetic variability within this strain collection. In total, seventeen cps types were identified with a predominance of cps type 9 (15.9%) and 6 (14.8%). MLST revealed 48 sequence types (STs) including 41 novel ones. The population structure of S. suis was heterogenous and isolates belonged to eight different clonal complexes (CCs) including CC28 (9.1%), CC1109 (8%), CC13/149 (6.8%), CC1237 (5.7%), CC1 (3.4%), CC17 (3.4%), CC87 (2.3%), and CC1112 (1.1%), whereas a significant portion of isolates (60.2%) could not be assigned to any described CCs. Virulence-associated markers, namely extracellular protein factor (epf), muramidase-released protein (mrp), and suilysin (sly), showed a link with STs rather than with cps types. With this study an expanded knowledge about the population structure and the genetic diversity of S. suis could be achieved, which helps to contribute to an optimal public health surveillance system by promoting a focus on strains with an increased virulence and zoonotic potential.


Subject(s)
Streptococcal Infections/veterinary , Streptococcus suis/physiology , Streptococcus suis/pathogenicity , Swine Diseases/microbiology , Animals , Multilocus Sequence Typing/veterinary , Prevalence , Streptococcal Infections/epidemiology , Streptococcal Infections/microbiology , Streptococcus suis/genetics , Sus scrofa , Swine , Swine Diseases/epidemiology , Switzerland/epidemiology , Virulence/genetics
6.
Microbiologyopen ; 9(4): e995, 2020 04.
Article in English | MEDLINE | ID: mdl-31967731

ABSTRACT

This rapid high resolution melting (HRM) assay allows distinguishing between Streptococcus suis serotype pairs 2 and 1/2 as well as 1 and 14, respectively, based on a single-nucleotide polymorphism within capsular polysaccharide synthesis gene cluster K. This assay is easy to implement and identifies potential zoonotic serotypes.


Subject(s)
Bacterial Capsules/genetics , Molecular Typing/methods , Polysaccharides, Bacterial/genetics , Serotyping/methods , Streptococcus suis/classification , Streptococcus suis/genetics , Animals , Genome, Bacterial/genetics , Humans , Polymorphism, Single Nucleotide/genetics , Serogroup , Streptococcal Infections/microbiology , Swine , Swine Diseases/microbiology , Whole Genome Sequencing/methods
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