TY - JOUR
T1 - Metagenomic sequencing of clinical samples reveals a single widespread clone of Lawsonia intracellularis responsible for porcine proliferative enteropathy
AU - Bengtsson, Rebecca J.
AU - Wee, Bryan A.
AU - Yebra, Gonzalo
AU - Bacigalupe, Rodrigo
AU - Watson, Eleanor
AU - Guedes, Roberto M. C.
AU - Jacobson, Magdalena
AU - Stadejek, Tomasz
AU - Archibald, Alan L.
AU - Fitzgerald, J. Ross
AU - Ait-Ali, Tahar
PY - 2020
Y1 - 2020
N2 - Lawsonia intracellularis is a Gram-negative obligate intracellular bacterium that is the aetiological agent of proliferative enteropathy (PE), a common intestinal disease of major economic importance in pigs and other animal species. To date, progress in understanding the biology of L. intracellularis for improved disease control has been hampered by the inability to culture the organism in vitro. In particular, our understanding of the genomic diversity and population structure of clinical L. intercellularis is very limited. Here, we utilized a metagenomic shotgun approach to directly sequence and assemble 21 L. intracellularis genomes from faecal and ileum samples of infected pigs and horses across three continents. Phylogenetic analysis revealed a genetically monomorphic clonal lineage responsible for infections in pigs, with distinct subtypes associated with infections in horses. The genome was highly conserved, with 94% of genes shared by all isolates and a very small accessory genome made up of only 84 genes across all sequenced strains. In part, the accessory genome was represented by regions with a high density of SNPs, indicative of recombination events importing novel gene alleles. In summary, our analysis provides the first view of the population structure for L. intracellularis, revealing a single major lineage associated with disease of pigs. The limited diversity and broad geographical distribution suggest the recent emergence and clonal expansion of an important livestock pathogen.
AB - Lawsonia intracellularis is a Gram-negative obligate intracellular bacterium that is the aetiological agent of proliferative enteropathy (PE), a common intestinal disease of major economic importance in pigs and other animal species. To date, progress in understanding the biology of L. intracellularis for improved disease control has been hampered by the inability to culture the organism in vitro. In particular, our understanding of the genomic diversity and population structure of clinical L. intercellularis is very limited. Here, we utilized a metagenomic shotgun approach to directly sequence and assemble 21 L. intracellularis genomes from faecal and ileum samples of infected pigs and horses across three continents. Phylogenetic analysis revealed a genetically monomorphic clonal lineage responsible for infections in pigs, with distinct subtypes associated with infections in horses. The genome was highly conserved, with 94% of genes shared by all isolates and a very small accessory genome made up of only 84 genes across all sequenced strains. In part, the accessory genome was represented by regions with a high density of SNPs, indicative of recombination events importing novel gene alleles. In summary, our analysis provides the first view of the population structure for L. intracellularis, revealing a single major lineage associated with disease of pigs. The limited diversity and broad geographical distribution suggest the recent emergence and clonal expansion of an important livestock pathogen.
KW - Lawsonia intracellularis
KW - proliferative enteropathy
KW - metagenomic
KW - phylogeny
KW - monomorphic clonal lineage
KW - Lawsonia intracellularis
KW - proliferative enteropathy
KW - metagenomic
KW - phylogeny
KW - monomorphic clonal lineage
UR - https://res.slu.se/id/publ/105775
U2 - 10.1099/mgen.0.000358
DO - 10.1099/mgen.0.000358
M3 - Journal article
SN - 2057-5858
VL - 6
JO - Microbial Genomics
JF - Microbial Genomics
IS - 4
M1 - 000358
ER -