Investigating the etiology of bovine digital dermatitis by a combination of 16S rRNA gene analysis and fluorescence in situ hybridization

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Standard

Investigating the etiology of bovine digital dermatitis by a combination of 16S rRNA gene analysis and fluorescence in situ hybridization. / Schou, Kirstine Klitgaard; Rasmussen, Marianne; Capion, Nynne; Boye, Mette; Jensen, Tim Kåre.

2012. Abstract from 14th International Symposium on Microbial Ecology, Copenhagen, Denmark.

Research output: Contribution to conferenceConference abstract for conferenceResearchpeer-review

Harvard

Schou, KK, Rasmussen, M, Capion, N, Boye, M & Jensen, TK 2012, 'Investigating the etiology of bovine digital dermatitis by a combination of 16S rRNA gene analysis and fluorescence in situ hybridization', 14th International Symposium on Microbial Ecology, Copenhagen, Denmark, 19/08/2012 - 24/08/2012.

APA

Schou, K. K., Rasmussen, M., Capion, N., Boye, M., & Jensen, T. K. (2012). Investigating the etiology of bovine digital dermatitis by a combination of 16S rRNA gene analysis and fluorescence in situ hybridization. Abstract from 14th International Symposium on Microbial Ecology, Copenhagen, Denmark.

Vancouver

Schou KK, Rasmussen M, Capion N, Boye M, Jensen TK. Investigating the etiology of bovine digital dermatitis by a combination of 16S rRNA gene analysis and fluorescence in situ hybridization. 2012. Abstract from 14th International Symposium on Microbial Ecology, Copenhagen, Denmark.

Author

Schou, Kirstine Klitgaard ; Rasmussen, Marianne ; Capion, Nynne ; Boye, Mette ; Jensen, Tim Kåre. / Investigating the etiology of bovine digital dermatitis by a combination of 16S rRNA gene analysis and fluorescence in situ hybridization. Abstract from 14th International Symposium on Microbial Ecology, Copenhagen, Denmark.

Bibtex

@conference{64b1179285a14a83ace481c506feda76,
title = "Investigating the etiology of bovine digital dermatitis by a combination of 16S rRNA gene analysis and fluorescence in situ hybridization",
abstract = "Bovine digital dermatitis, the cause of lameness and wasting in cattle, was first reported in 1974. Today, this disease has considerable negative effects on animal welfare and production economy in many parts of the world. A bacterial etiology of digital dermatitis is now well documented, and the current view on this disease points towards a complicated etiology involving co-infection of more than one, and probably multiple species belonging to the genus Treponema. Still, the pathogenic role of each of the digital dermatitis-associated phylotypes remains unclear. The aim of this investigation was to obtain a better understanding of digital dermatitis in general, including possible predisposing skin alternations and the role of the bacteria Dichelobacter nodosus. Finally, we wanted to determine if any Treponema phylotypes could be singled out as having a particularly prominent role in the etiology of the disease.Here, a PCR-based approach targeting the 16S rRNA gene along with fluorescence in situ hybridization was used to determine the prevalence and diversity of 17 Treponema phylotypes in 85 digital dermatitis lesions from six Danish dairy herds as well as additional biopsies of healthy skin and previously examined digital dermatitis lesions. All skin samples were evaluated histopathologically for possible predisposing abnormalities. Furthermore, fluorescence in situ hybridization tests for Fusobacterium. necrophorum and D. nodosus was applied. All lesions revealed intermingled infections with multiple Treponema phylotypes (mean > 7). In six herds, the mean number of phylotypes identified varied between 12 and 15. D. nodosus was present in forty-nine (51%) of the lesions and in three of the apparently healthy skin samples. One “healthy” sample also contained Treponema spp. and D. nodosus, and were histopathologically categorized as subclinical digital dermatitis.We propose that external noxious stimuli allow D. nodosus to break down the epidermal barrier creating a suitable environment for the secondary invaders, Treponema species, which gradually take over the infection site. The variety and different distribution of treponemes in the digital dermatitis lesions observed in this study, suggests that most of the Treponema phylotypes have the potential to be pathogenic. ",
author = "Schou, {Kirstine Klitgaard} and Marianne Rasmussen and Nynne Capion and Mette Boye and Jensen, {Tim K{\aa}re}",
year = "2012",
language = "English",
note = "null ; Conference date: 19-08-2012 Through 24-08-2012",

}

RIS

TY - ABST

T1 - Investigating the etiology of bovine digital dermatitis by a combination of 16S rRNA gene analysis and fluorescence in situ hybridization

AU - Schou, Kirstine Klitgaard

AU - Rasmussen, Marianne

AU - Capion, Nynne

AU - Boye, Mette

AU - Jensen, Tim Kåre

PY - 2012

Y1 - 2012

N2 - Bovine digital dermatitis, the cause of lameness and wasting in cattle, was first reported in 1974. Today, this disease has considerable negative effects on animal welfare and production economy in many parts of the world. A bacterial etiology of digital dermatitis is now well documented, and the current view on this disease points towards a complicated etiology involving co-infection of more than one, and probably multiple species belonging to the genus Treponema. Still, the pathogenic role of each of the digital dermatitis-associated phylotypes remains unclear. The aim of this investigation was to obtain a better understanding of digital dermatitis in general, including possible predisposing skin alternations and the role of the bacteria Dichelobacter nodosus. Finally, we wanted to determine if any Treponema phylotypes could be singled out as having a particularly prominent role in the etiology of the disease.Here, a PCR-based approach targeting the 16S rRNA gene along with fluorescence in situ hybridization was used to determine the prevalence and diversity of 17 Treponema phylotypes in 85 digital dermatitis lesions from six Danish dairy herds as well as additional biopsies of healthy skin and previously examined digital dermatitis lesions. All skin samples were evaluated histopathologically for possible predisposing abnormalities. Furthermore, fluorescence in situ hybridization tests for Fusobacterium. necrophorum and D. nodosus was applied. All lesions revealed intermingled infections with multiple Treponema phylotypes (mean > 7). In six herds, the mean number of phylotypes identified varied between 12 and 15. D. nodosus was present in forty-nine (51%) of the lesions and in three of the apparently healthy skin samples. One “healthy” sample also contained Treponema spp. and D. nodosus, and were histopathologically categorized as subclinical digital dermatitis.We propose that external noxious stimuli allow D. nodosus to break down the epidermal barrier creating a suitable environment for the secondary invaders, Treponema species, which gradually take over the infection site. The variety and different distribution of treponemes in the digital dermatitis lesions observed in this study, suggests that most of the Treponema phylotypes have the potential to be pathogenic.

AB - Bovine digital dermatitis, the cause of lameness and wasting in cattle, was first reported in 1974. Today, this disease has considerable negative effects on animal welfare and production economy in many parts of the world. A bacterial etiology of digital dermatitis is now well documented, and the current view on this disease points towards a complicated etiology involving co-infection of more than one, and probably multiple species belonging to the genus Treponema. Still, the pathogenic role of each of the digital dermatitis-associated phylotypes remains unclear. The aim of this investigation was to obtain a better understanding of digital dermatitis in general, including possible predisposing skin alternations and the role of the bacteria Dichelobacter nodosus. Finally, we wanted to determine if any Treponema phylotypes could be singled out as having a particularly prominent role in the etiology of the disease.Here, a PCR-based approach targeting the 16S rRNA gene along with fluorescence in situ hybridization was used to determine the prevalence and diversity of 17 Treponema phylotypes in 85 digital dermatitis lesions from six Danish dairy herds as well as additional biopsies of healthy skin and previously examined digital dermatitis lesions. All skin samples were evaluated histopathologically for possible predisposing abnormalities. Furthermore, fluorescence in situ hybridization tests for Fusobacterium. necrophorum and D. nodosus was applied. All lesions revealed intermingled infections with multiple Treponema phylotypes (mean > 7). In six herds, the mean number of phylotypes identified varied between 12 and 15. D. nodosus was present in forty-nine (51%) of the lesions and in three of the apparently healthy skin samples. One “healthy” sample also contained Treponema spp. and D. nodosus, and were histopathologically categorized as subclinical digital dermatitis.We propose that external noxious stimuli allow D. nodosus to break down the epidermal barrier creating a suitable environment for the secondary invaders, Treponema species, which gradually take over the infection site. The variety and different distribution of treponemes in the digital dermatitis lesions observed in this study, suggests that most of the Treponema phylotypes have the potential to be pathogenic.

M3 - Conference abstract for conference

Y2 - 19 August 2012 through 24 August 2012

ER -

ID: 339246402