Literature DB >> 33718463

Analysis of the Global Population Structure of Paenibacillus larvae and Outbreak Investigation of American Foulbrood Using a Stable wgMLST Scheme.

Bojan Papić1, Margo Diricks2, Darja Kušar1.   

Abstract

Paenibacillus larvae causes the American foulbrood (AFB), a highly contagious and devastating disease of honeybees. Whole-genome sequencing (WGS) has been increasingly used in bacterial pathogen typing, but rarely applied to study the epidemiology of P. larvae. To this end, we used 125 P. larvae genomes representative of a species-wide diversity to construct a stable whole-genome multilocus sequence typing (wgMLST) scheme consisting of 5745 loci. A total of 51 P. larvae isolates originating from AFB outbreaks in Slovenia were used to assess the epidemiological applicability of the developed wgMLST scheme. In addition, wgMLST was compared with the core-genome MLST (cgMLST) and whole-genome single nucleotide polymorphism (wgSNP) analyses. All three approaches successfully identified clusters of outbreak-associated strains, which were clearly separated from the epidemiologically unlinked isolates. High levels of backward comparability of WGS-based analyses with conventional typing methods (ERIC-PCR and MLST) were revealed; however, both conventional methods lacked sufficient discriminatory power to separate the outbreak clusters. The developed wgMLST scheme provides an improved understanding of the intra- and inter-outbreak genetic diversity of P. larvae and represents an important progress in unraveling the genomic epidemiology of this important honeybee pathogen.
Copyright © 2021 Papić, Diricks and Kušar.

Entities:  

Keywords:  American foulbrood; Paenibacillus larvae; core-genome multilocus sequence typing; whole-genome multilocus sequence typing; whole-genome sequencing; whole-genome single nucleotide polymorphism

Year:  2021        PMID: 33718463      PMCID: PMC7952629          DOI: 10.3389/fvets.2021.582677

Source DB:  PubMed          Journal:  Front Vet Sci        ISSN: 2297-1769


  32 in total

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3.  Strain- and genotype-specific differences in virulence of Paenibacillus larvae subsp. larvae, a bacterial pathogen causing American foulbrood disease in honeybees.

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Review 4.  American Foulbrood in honeybees and its causative agent, Paenibacillus larvae.

Authors:  Elke Genersch
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5.  Implementation of Nationwide Real-time Whole-genome Sequencing to Enhance Listeriosis Outbreak Detection and Investigation.

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Journal:  Clin Infect Dis       Date:  2016-04-18       Impact factor: 9.079

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7.  Discovery of Paenibacillus larvae ERIC V: Phenotypic and genomic comparison to genotypes ERIC I-IV reveal different inventories of virulence factors which correlate with epidemiological prevalences of American Foulbrood.

Authors:  Hannes Beims; Boyke Bunk; Silvio Erler; Kathrin I Mohr; Cathrin Spröer; Silke Pradella; Gabi Günther; Manfred Rohde; Werner von der Ohe; Michael Steinert
Journal:  Int J Med Microbiol       Date:  2020-01-16       Impact factor: 3.473

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2.  ERIC and WGS Typing of Paenibacillus larvae in Slovenia: Investigation of ERIC I Outbreaks.

Authors:  Alenka Žugelj; Bojan Papić; Irena Zdovc; Urška Zajc; Majda Golob; Jana Avberšek; Darja Kušar
Journal:  Insects       Date:  2021-04-19       Impact factor: 2.769

3.  Using whole-genome sequencing to assess the diversity of Paenibacillus larvae within an outbreak and a beekeeping operation.

Authors:  Bojan Papić; Majda Golob; Irena Zdovc; Jana Avberšek; Metka Pislak Ocepek; Darja Kušar
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4.  Analysis of intact prophages in genomes of Paenibacillus larvae: An important pathogen for bees.

Authors:  Henrique G Ribeiro; Anna Nilsson; Luís D R Melo; Ana Oliveira
Journal:  Front Microbiol       Date:  2022-07-15       Impact factor: 6.064

5.  Delineating Mycobacterium abscessus population structure and transmission employing high-resolution core genome multilocus sequence typing.

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  5 in total

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