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Molecular characterization of Listeria monocytogenes from natural and urban environments.

Characterization of 80 Listeria monocytogenes isolates from urban and natural environments differentiated 7 and 26 EcoRI ribotypes, respectively. Whereas the majority of isolates from the natural environment represented L. monocytogenes lineage II (12 of 13 isolates), urban isolates grouped evenly into lineages I and II (32 and 33 isolates, respectively) and included two lineage III isolates. Multilocus sequence typing of all natural isolates and a randomly selected subset of 30 urban isolates showed a higher overall diversity (Simpson index of discrimination [D] of 0.987 and 0.920, respectively) than did EcoRI ribotyping (D = 0.872 and 0.911, respectively). Combined analysis with ribotype and lineage data for 414 isolates from farm sources, 165 isolates from foods and food-processing environments, and 342 human clinical isolates revealed that lineage I was significantly more common among human (P < 0.0001) isolates, whereas lineage II was more common among isolates from the natural environment, farms, and foods (P < or = 0.05). Among a total of 92 ribotypes, 31 showed significant associations with specific isolate sources. One ribotype (DUP-1039C) was significantly associated with both natural environments and farms. A spatial analysis showed a marginal association between locations in the natural environment positive for L. monocytogenes and a proximity to farms. Our data indicate that (i) L. monocytogenes strains from different sources show a high level of diversity; (ii) L. monocytogenes subtypes differ significantly in their associations with different environments, even though populations overlap; and (iii) a higher proportion of isolates from environmental sources than from human clinical cases can be classified into L. monocytogenes lineage II, which supports the classification of this lineage as an environmentally adapted subgroup.

Colony Count, Microbial↗

[Neisseria meningitidis and meningitis].

Meningococcal meningitis epidemics can occur anywhere in the world. However this risk is particularly high during the dry season in the sub-Saharan zone of Africa known as the Lapeyssonnie meningitis belt. This area characterized by hyperendemicity that regularly gives rise to epidemics. Multilocus enzyme electrophoresis has made possible identification and monitoring of the progression of virulent clones of Neisseria meningitidis strains in the world. Monitoring is now possible by multilocus sequence typing and data bank on the Internet. Vaccination is a major prophylactic modality. The usefulness of plain group A plus C polysaccharide vaccines is limited because of poor effectiveness in young children who constitute the highest risk group. During epidemics, mass vaccination should be carried out as early as possible according to the state of alert defined for the area. More recent conjugate vaccines against group A and C, which are effective in young children and provide long-term protection by induction of immunologic memory, may allow routine vaccination in the future. Although clinical signs are often apparent, not all cases are diagnosed by clinical examination unless gravity is taken into account. Untreated the disease is always fatal. The only hope of survival is early institution of appropriate antimicrobial therapy (even prior to hospitalization). Several strains resistant to chloramphenicol have been reported and the number of strains with reduced sensitivity to penicillin is rising constantly. Although treatment remains feasible, the existence of resistant forms raises the need to monitor the sensitivity of meningococci using standardized of antibiograms.

Adult↗

[Molecular epidemiology of meningococci].

By using the techniques of molecular biology, such as multilocus enzyme electrophoresis and multilocus sequence typing, it has been possible to identify the clones of meningococci that have been responsible for major epidemics in the world and to elucidate the routes of spread of these bacteria. Although meningococci can rearrange very rapidly their genome through the process of transformation, some clones or some groups of closely related clones have been stable and have been associated with increases of incidence of disease during decades. A clone with an epidemic potential can be disseminated globally within a few years, but the reasons for the development of an epidemic in a particular population are still not fully understood.

Bacterial Typing Techniques↗

[Characterization of Haemophilus influenzae strains using multilocus sequencing].

First results of multilocus sequence typing (MLST) of Haemophilus influenzae strains are presented. MLST of 28 H. influenzae strains isolated from patients with invasive diseases in the Czech Republic is indicative of clonal homogeneity of these strains: 22 out of 26 H. influenzae b strains tested were of the same sequence type, ST-6. Four strains were of two sequence types newly described in this study: ST-83 (3 strains) and ST-84 (1 strain). Two nontypeable H. influenzae strains were assigned to sequence types other than ST-6: ST-3 and ST-85 newly described in this study. First MLST results show ST-6 to be typical of H. influenzae b isolated from patients with invasive diseases in the Czech Republic. The sequence types newly described in this study, i.e. ST-83, ST-84 and ST-85, were submitted to the worldwide H. influenzae MLST database (http://haemophilus.mlst.net).

Bacterial Typing Techniques↗

[The use of Multiplex PCR-RFLP method (multilocus RFLP) in identification and differentiation of enterococci].

The present study proposed use of modified multilocus sequence typing (MLST) approach, for subspecies differentiation of Enterococcus faecalis isolates. We disgesed with SspI endonuclease product of amplification of three E. faecalis antigen-encoding genes (ace, encoding a collagen and laminin adhesin; efaA, encoding an endocarditis antigen; and salA, encoding a cell wall associated antigen) and one housekeeping gene (pyrC) of 32 E. faecalis isolates MLRA analysis of polymorphic regions of these four genes identified 23 distinct types 21.4 to 100% identity among the 32 isolates. Further studies are needed to evaluate the value of proposed method.

Enterococcus faecalis↗

Genotypes of Listeria monocytogenes strains isolated from 2000 to 2002 in Poland.

Pulsed field gel electrophoresis (PFGE), multiplex PCR and multilocus sequence typing (MLST) methods were used for genotyping study of seventy-three L. monocytogenes isolates collected in Poland between 2000 and 2002 from human, food, environment and a diseased goat. The multiplex PCR, which is an alternative method to classical serotyping, divided the isolates into four PCR groups, IIa (42.5%), IIb (27.4%), IIc (4.1%) and IVb (26%). The isolates displayed 33 distinct PFGE profiles. Twenty eight strains were further characterised by MLST based on sequence analyses of seven housekeeping genes. The combined sequence analyses revealed a total of 10 different allelic profiles from which 3 were not described earlier. It is intended that results obtained in this study will be the first data of a national database of L. monocytogenes genotypes in Poland.

Animals↗

[Molecular taxonomy techniques used for yeast identification].

Due to the major impact of yeasts in human life based on the existence of pathogen yeast species and of species with biotechnological abilities, in the last few years new molecular techniques are performed for an accurate identification of natural isolates. Our study is aimed to review some of these techniques such as electrokariotyping by PFGE (Pulsed Field Gel Electrophoresis), estimation of the molar percentage of guanine and cytosine, the applications of PCR reaction in yeast identification using RAPD (Random amplified polymorphic DNA), UP-PCR (Universally Primed Polymerase Chain Reaction), MLST (Multilocus sequence typing) techniques, mtDNA and rDNA homology studies. Such molecular techniques complete the phenotypical characterization based on classical taxonomical tests allowing thus the polyphasic identification of the microorganisms.

Cytosine↗

[Surveillance on pathogens of meningococcal meningitis in Beijing, 2005].

OBJECTIVE: To study the pathogens of meningococcal meningitis (MM) in Beijing, 2005. METHODS: Blood and cerebrospinal fluid specimens from MM patients were detected by polymerase chain reaction. Bacterial strains were analyzed by pulsed-field gel electrophoresis and multilocus sequence typing. RESULTS: 7 of the blood and 5 of cerebrospinal fluid specimens showed positive results. 105 of the Neisseria meningitides strains were isolated from the specimens of patients, close contacts and healthy carriers. Serogroup A and C Neisseria meningitides strains shared the same patterns of pulsed-fieldgel electrophoresis, respectively. The sequence type of serogroup A Neisseria meningitides belonged to ST7 while the sequence type of serogroup C Neisseria meningitides belonged to ST4821. CONCLUSION: Patients suffered from meningococcal meningitis were caused by serogroup A (ST7) and C (ST4821) Neisseria meningitides in Beijing, 2005.

China↗

Characteristics of Streptococcus suis isolated from patients in Japan.

Seven cases of Streptococcus suis infection in Japan during 1994 and 2006 were summarized. All cases had porcine exposure and five of them had hand skin injury during the exposure. Five cases presented symptoms of meningitis, three presented symptoms of sepsis, and one resulted in sudden death. All of the isolated S. suis belonged to Lancefield's group D and to serotype 2. They were susceptible to penicillin G, ampicillin, cefotaxime, and ciprofloxacin. However, six of them were resistant to both erythromycin and clindamycin, and four were also resistant to minocycline. Multilocus sequence typing of six isolates showed that they belonged to sequence type (ST) 1, and their pulsed-field gel electrophoresis (PFGE) patterns were similar. The remaining isolate was ST28 and its PFGE pattern was distinct from those of the others.

Animals↗

Mesorhizobium bavaricum sp. nov. and Mesorhizobium monacense sp. nov., two novel Lotus-associated species harbouring symbiotic plasmids.

Legumes establish a mutualistic interaction with nitrogen-fixing rhizobia. Lotus japonicus is a model for studying this symbiosis; however, only a limited number of rhizobial species nodulating this host have been taxonomically described. Here, we characterise four Mesorhizobium strains (DC-1.1T, Qj1B1, DC-1.5T, and Qj2B2) isolated from root nodules of Lotus japonicus and Lotus burttii. Multi-locus phylogeny and phylogenomic analyses resolved these isolates into two well-supported monophyletic clades. Genome-based comparisons supported their classification as distinct taxa, with strains DC-1.1T and Qj1B1 showing 95.2% average nucleotide identity (ANI) and 62.9-63.5% digital DNA-DNA hybridisation (dDDH) values relative to Mesorhizobium newzealandense ICMP 19545T, whereas DC-1.5T and Qj2B2 exhibited 92.5-92.8% ANI and 49.9-50.5% dDDH compared with Mesorhizobium waimense ICMP 19557T. Together with chemotaxonomic and physiological traits, these data support the proposal of two novel species, Mesorhizobium bavaricum sp. nov. (DC-1.1T and Qj1B1) and Mesorhizobium monacense sp. nov. (DC-1.5T and Qj2B2). Metagenomic analyses predicted high environmental prevalence for these novel taxa, particularly within soil habitats. Isolates DC-1.1T, Qj1B1, and DC-1.5T effectively nodulated Lotus burttii and significantly promoted plant growth, whereas Qj2B2 neither nodulated nor enhanced growth. Comparative genomic analysis revealed that the nodulating isolates harbour symbiotic genes (nod, fix, and nif) on symbiotic plasmids, a rare feature in Mesorhizobium strains, whereas Qj2B2 lacks essential nod and nif genes. Consistent with these genomic features, symbiotaxonomic analysis assigned the nodulating isolates to symbiovar loti. These results highlight the potential of these isolates as models for comparative analyses of symbiotic plasmid evolution and horizontal gene transfer.

Mesorhizobium↗

Comparison of whole-genome sequencing-based analysis methods for taxonomic classification of isolates unclassified by MALDI-TOF MS.

Taxonomic identification of clinical isolates is routinely achieved using matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS). If the species cannot be reliably identified, whole-genome sequencing can be applied. The aim of this study was to compare the results of approaches for taxonomic assignment for classification of isolates that are difficult to identify. Fifty-seven isolates were included in the study. The isolates were whole-genome sequenced and de novo assembled. Assembly-based classification was performed with the Genome Taxonomy Database Toolkit (GTDB-Tk), BLAST against 16S rRNA gene databases, the Type (Strain) Genome Server (TYGS), and ribosomal MLST (rMLST). Read-based classification was performed with MetaPhlAn4 and Kraken2. Thirty-two isolates were assigned to the same species with all four assembly-based classifiers, while the remaining 25 showed diverging assignments. When evaluating the results for the latter isolates, GTDB-Tk performed better than the other classifiers regarding which assignments were most likely correct. Of the read-based classifiers, MetaPhlAn4 performed better than Kraken2. Our evaluation identified GTDB-Tk to be the strongest tool for taxonomic assignment of isolates that are difficult to identify. Disagreements between classifiers are likely due to database limitations, wrongly assigned taxonomy, or unreliable 16S rRNA gene-based assignments.

Spectrometry, Mass, Matrix-Assisted Laser Desorpti↗

Characterisation of bovine strains of Pasteurella multocida and comparison with isolates of avian, ovine and porcine origin.

One hundred and fifty-three bovine Pasteurella multocida strains recovered primarily from cases of pneumonia and mastitis in England and Wales over an 11-year period were characterised by capsular PCR typing, comparison of outer membrane protein (OMP) profiles, and multilocus sequence analysis. All of the strains were of capsular type A with the exception of a single capsular type F isolate. Thirteen distinct OMP profiles (OMP-types) were identified based mainly on molecular mass heterogeneity of the heat-modifiable (OmpA) and porin (OmpH) proteins. However, 85% of the isolates were represented by just five OMP-types and 39% of the strains were of a single OMP-type. Multilocus sequence analysis revealed a limited degree of genetic diversity among bovine P. multocida isolates; strains of the same OMP-type have identical genetic backgrounds and represent distinct clones. Analysis of OMP variation was more discriminating than multilocus sequence analysis because strains of different OMP-types had the same, or similar, genetic backgrounds. The association of a small number of clones with the majority of cases of bovine pneumonia suggests that these clones have an increased capacity to cause disease compared to less frequently recovered clones. Molecular mass heterogeneity of OmpA and OmpH, in strains of the same or similar genetic background, suggests that these proteins are subject to diversifying selection within the host and might play important roles in host-pathogen interactions. Comparison of the OMP profiles of bovine isolates with those of avian, ovine and porcine strains showed that a high proportion of the respiratory tract infections in each of these species are caused by different strains of P. multocida. However, the presence of small numbers of closely related strains in more than one host species suggests that transmission of bacteria between different host species is also a factor in the population biology of P. multocida.

Animals↗

Limited diversity among human isolates of Bartonella henselae.

A study of 59 isolates of Bartonella henselae reveals relatively limited diversity among those of human origin (n = 28). Either of two distinct alleles of both gltA and 16S ribosomal DNA (rDNA) was found in all isolates, with a high level of congruity between 16S and gltA inheritance among proven human pathogens. Human isolates from all over Eastern Australia were most commonly 16S rDNA (Bergmans) type I, with the same gltA allele as the type strain (Houston-1). Comparable feline isolates were more commonly 16S type II, with less congruity of inheritance between 16S and gltA alleles. Previously described arbitrarily primed PCR and EagI-HhaI infrequent restriction site PCR fingerprinting techniques separated Bartonella species effectively but lacked discriminating power within B. henselae. Examination of the 16-23S intergenic spacer region revealed for several strains several point mutations as well as a repeat sequence of unknown significance which is readily detected by HaeIII restriction fragment length polymorphism analysis. The bacteriophage-associated papA gene was present in all isolates. Enterobacterial repetitive intergenic consensus PCR proved to be a useful and robust typing tool and clearly separated human isolates (including imported strains) from the majority of feline isolates. Our data are consistent with published evidence and with previous suggestions of intragenomic rearrangements in the type strain and suggest that human isolates come from a limited subset of B. henselae strains. They strengthen arguments for careful exploration of genotype-phenotype relationships and for the development of a multilocus enzyme electrophoresis and multilocus sequence typing-based approach to the phylogeny of B. henselae.

Animals↗

mef(A), mef(E) and a new mef allele in macrolide-resistant Streptococcus spp. isolates from Norway.

OBJECTIVES: To type mef genes in a nationwide collection of clinical isolates of Streptococcus pneumoniae and Streptococcus pyogenes as well as pharyngeal carrier strains of viridans streptococci in Norway. METHODS: Erythromycin-resistant mef-positive multilocus sequence-typed (MLST) clinical isolates of S. pneumoniae (n = 36) and S. pyogenes (n = 12) from the National Surveillance Program for Antimicrobial Resistance (NORM) as well as viridans streptococci (n = 20) from healthy adults were included. PCR-amplified mef genes were initially discriminated by BamHI digestion. Selected mef genes from representatives of different sequence types (STs) of S. pneumoniae (n = 11) and S. pyogenes (n = 4), and viridans group streptococcal species (n = 8) were typed by sequencing and their strains examined for co-resistances. Hydropathy plots of different mef-encoded proteins were performed. RESULTS: A predominance of mef(A) was detected in S. pneumoniae (23/36) and S. pyogenes (9/12) due to the clonal spread of ST9 and ST39, respectively. mef(E) was the most widely distributed mef determinant occurring in nine different STs of S. pneumoniae and in four different viridans species. A new mef allele was identified in two STs of S. pyogenes. CONCLUSIONS: mef(E) is the most widely distributed mef determinant in Norwegian clinical strains of S. pneumoniae and pharyngeal carrier strains of various viridans streptococci. However, mef(A) is more prevalent in S. pneumoniae and S. pyogenes due to clonal spread. A new mef allele was found in two different STs of S. pyogenes.

Amino Acid Sequence↗

Molecular epidemiology of panton valentine leukocidin-producing Staphylococcus aureus infections, Djibouti, 2018-2023.

Between 2018 and 2023, a genomic study was conducted in a military camp in Djibouti to investigate the molecular epidemiology of Panton-Valentine Leukocidin-producing Staphylococcus aureus. Among 43 isolates, Sequence Type 152 was predominant (72%), mainly associated with spa types t355 and t4235. Core-genome Multi-Locus Sequence Typing revealed two concurrent transmission dynamics: localized inter-human outbreaks and repeated introductions from external sources. Comparative genomics with other African Sequence Type 152 isolates showed similar levels of diversity, suggesting a widespread continental dissemination. These findings highlight the importance of genomic surveillance to better understand and control the spread of this virulent lineage in Africa.

Leukocidins↗

A successful, diverse disease-associated lineage of nontypeable pneumococci that has lost the capsular biosynthesis locus.

Streptococcus pneumoniae strains which fail to produce a polysaccharide capsule are commonly isolated from carriage and disease contexts. Here we use a multilocus approach to distinguish genuine nontypeable pneumococci from closely related nontypeable streptococcal isolates in a data set of 121 untypeable pneumococci from nasopharyngeal swabs and middle ear fluid of Finnish children and demonstrate that 70 of these belong to a pneumococcal lineage which has lost its capsular locus. Strains of this relatively old lineage include sequence types 344, 448, and 449. Comparison with the multilocus sequence typing database shows that strains of this lineage have spread intercontinentally and have been isolated from carriage, mucosal, and invasive disease. Furthermore we note a particular association of this nontypeable lineage with outbreaks of conjunctivitis. The diversification and geographic spread of this lineage suggest that loss of capsule is not inconsistent with long-term persistence and raise questions about the capsule's role in pneumococcal transmission.

Bacterial Typing Techniques↗

Methicillin-resistant Staphylococcus aureus (MRSA) infection in hospitalized patients is dominated by community-acquired strains: genomic epidemiological evidence.

OBJECTIVE: This study aimed to systematically investigate the molecular epidemiological characteristics of methicillin-resistant Staphylococcus aureus (MRSA) in Ningxia hospitals, to elucidate their genetic evolutionary relationships, and to delineate the genomic and phenotypic profiles of the dominant lineages. METHODS: Clinical isolates of MRSA strains collected between 01/01/2024 and 30/06/2024 were analyzed, employing second-generation gene sequencing technology, combined with MLST and SCCmec typing, along with evaluation of drug resistance and virulence genes. A phylogenetic tree was constructed to analyze strain homology. RESULTS: A total of 74 non-duplicate Staphylococcus aureus strains (67 MRSA and 7 MSSA) were collected. The most common clonal strain was ST59-IVa, accounting for 46.27%. This strain exhibited a high prevalence of resistance genes mecA and blaZ, at 91.04%. All five ST22-IVa strains were found to lack mecA and erm genes but showed &#x3b2;-lactam resistance, while possessing both lukS/F-PV (PVL) and tsst-1 virulence genes, indicating a significant toxicity risk. Genetic evolution analysis revealed that ST3355, ST4513, and ST59 were closely related, all belonging to SCCmec types IVa; the other ST types exhibited mutations at various loci, with ST5 as the central node, resulting in a wider array of ST and SCCmec typing. CONCLUSION: The ST59-IVa clone is the predominant MRSA strain in Ningxia hospitals, exhibiting multidrug resistance and virulence gene profiles consistent with national trends. However, the emergence of hypervirulent ST22-IVa strains with atypical resistance mechanisms warrants increased vigilance. We recommend enhancing the rational use of antibiotics in hospitals and implementing molecular surveillance for these highly virulent strains.

Methicillin-Resistant Staphylococcus aureus↗