The diversity, evolution and ecology of Salmonella in venomous snakes.

<h4>Background</h4>Reptile-associated Salmonella bacteria are a major, but often neglected cause of both gastrointestinal and bloodstream infection in humans globally. The diversity of Salmonella enterica has not yet been determined in venomous snakes, however other ectothermic animals h...

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Main Authors: Caisey V Pulford, Nicolas Wenner, Martha L Redway, Ella V Rodwell, Hermione J Webster, Roberta Escudero, Carsten Kröger, Rocío Canals, Will Rowe, Javier Lopez, Neil Hall, Paul D Rowley, Dorina Timofte, Robert A Harrison, Kate S Baker, Jay C D Hinton
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-06-01
Series:PLoS Neglected Tropical Diseases
Online Access:https://doi.org/10.1371/journal.pntd.0007169
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spelling doaj-5c0a7a8c705c455eb773f5aa66cb9cf22021-03-03T08:30:02ZengPublic Library of Science (PLoS)PLoS Neglected Tropical Diseases1935-27271935-27352019-06-01136e000716910.1371/journal.pntd.0007169The diversity, evolution and ecology of Salmonella in venomous snakes.Caisey V PulfordNicolas WennerMartha L RedwayElla V RodwellHermione J WebsterRoberta EscuderoCarsten KrögerRocío CanalsWill RoweJavier LopezNeil HallPaul D RowleyDorina TimofteRobert A HarrisonKate S BakerJay C D Hinton<h4>Background</h4>Reptile-associated Salmonella bacteria are a major, but often neglected cause of both gastrointestinal and bloodstream infection in humans globally. The diversity of Salmonella enterica has not yet been determined in venomous snakes, however other ectothermic animals have been reported to carry a broad range of Salmonella bacteria. We investigated the prevalence and diversity of Salmonella in a collection of venomous snakes and non-venomous reptiles.<h4>Methodology/principle findings</h4>We used a combination of selective enrichment techniques to establish a unique dataset of reptilian isolates to study Salmonella enterica species-level evolution and ecology and used whole-genome sequencing to investigate the relatedness of phylogenetic groups. We observed that 91% of venomous snakes carried Salmonella, and found that a diverse range of serovars (n = 58) were carried by reptiles. The Salmonella serovars belonged to four of the six Salmonella enterica subspecies: diarizonae, enterica, houtanae and salamae. Subspecies enterica isolates were distributed among two distinct phylogenetic clusters, previously described as clade A (52%) and clade B (48%). We identified metabolic differences between S. diarizonae, S. enterica clade A and clade B involving growth on lactose, tartaric acid, dulcitol, myo-inositol and allantoin.<h4>Significance</h4>We present the first whole genome-based comparative study of the Salmonella bacteria that colonise venomous and non-venomous reptiles and shed new light on Salmonella evolution. Venomous snakes examined in this study carried a broad range of Salmonella, including serovars which have been associated with disease in humans such as S. Enteritidis. The findings raise the possibility that venomous snakes could be a reservoir for Salmonella serovars associated with human salmonellosis.https://doi.org/10.1371/journal.pntd.0007169
collection DOAJ
language English
format Article
sources DOAJ
author Caisey V Pulford
Nicolas Wenner
Martha L Redway
Ella V Rodwell
Hermione J Webster
Roberta Escudero
Carsten Kröger
Rocío Canals
Will Rowe
Javier Lopez
Neil Hall
Paul D Rowley
Dorina Timofte
Robert A Harrison
Kate S Baker
Jay C D Hinton
spellingShingle Caisey V Pulford
Nicolas Wenner
Martha L Redway
Ella V Rodwell
Hermione J Webster
Roberta Escudero
Carsten Kröger
Rocío Canals
Will Rowe
Javier Lopez
Neil Hall
Paul D Rowley
Dorina Timofte
Robert A Harrison
Kate S Baker
Jay C D Hinton
The diversity, evolution and ecology of Salmonella in venomous snakes.
PLoS Neglected Tropical Diseases
author_facet Caisey V Pulford
Nicolas Wenner
Martha L Redway
Ella V Rodwell
Hermione J Webster
Roberta Escudero
Carsten Kröger
Rocío Canals
Will Rowe
Javier Lopez
Neil Hall
Paul D Rowley
Dorina Timofte
Robert A Harrison
Kate S Baker
Jay C D Hinton
author_sort Caisey V Pulford
title The diversity, evolution and ecology of Salmonella in venomous snakes.
title_short The diversity, evolution and ecology of Salmonella in venomous snakes.
title_full The diversity, evolution and ecology of Salmonella in venomous snakes.
title_fullStr The diversity, evolution and ecology of Salmonella in venomous snakes.
title_full_unstemmed The diversity, evolution and ecology of Salmonella in venomous snakes.
title_sort diversity, evolution and ecology of salmonella in venomous snakes.
publisher Public Library of Science (PLoS)
series PLoS Neglected Tropical Diseases
issn 1935-2727
1935-2735
publishDate 2019-06-01
description <h4>Background</h4>Reptile-associated Salmonella bacteria are a major, but often neglected cause of both gastrointestinal and bloodstream infection in humans globally. The diversity of Salmonella enterica has not yet been determined in venomous snakes, however other ectothermic animals have been reported to carry a broad range of Salmonella bacteria. We investigated the prevalence and diversity of Salmonella in a collection of venomous snakes and non-venomous reptiles.<h4>Methodology/principle findings</h4>We used a combination of selective enrichment techniques to establish a unique dataset of reptilian isolates to study Salmonella enterica species-level evolution and ecology and used whole-genome sequencing to investigate the relatedness of phylogenetic groups. We observed that 91% of venomous snakes carried Salmonella, and found that a diverse range of serovars (n = 58) were carried by reptiles. The Salmonella serovars belonged to four of the six Salmonella enterica subspecies: diarizonae, enterica, houtanae and salamae. Subspecies enterica isolates were distributed among two distinct phylogenetic clusters, previously described as clade A (52%) and clade B (48%). We identified metabolic differences between S. diarizonae, S. enterica clade A and clade B involving growth on lactose, tartaric acid, dulcitol, myo-inositol and allantoin.<h4>Significance</h4>We present the first whole genome-based comparative study of the Salmonella bacteria that colonise venomous and non-venomous reptiles and shed new light on Salmonella evolution. Venomous snakes examined in this study carried a broad range of Salmonella, including serovars which have been associated with disease in humans such as S. Enteritidis. The findings raise the possibility that venomous snakes could be a reservoir for Salmonella serovars associated with human salmonellosis.
url https://doi.org/10.1371/journal.pntd.0007169
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