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Purifying the Impure: Sequencing Metagenomes and Metatranscriptomes from Complex Animal-associated Samples
Published on: December 22, 2014
Microbiome overview in swine lungs
Franciele Maboni Siqueira1, Esteban Pérez-Wohlfeil2, Fabíola Marques Carvalho3
1Centro de Biotecnologia, Universidade Federal de Rio Grande do Sul, Porto Alegre, Rio Grande do Sul, Brazil.
Abstract:
Mycoplasma hyopneumoniae is the etiologic agent of swine enzootic pneumonia. However other mycoplasma species and secondary bacteria are found as inhabitants of the swine respiratory tract, which can be also related to disease. In the present study we have performed a total DNA metagenomic analysis from the lungs of pigs kept in a field condition, with suggestive signals of enzootic pneumonia and without any infection signals to evaluate the bacteria variability of the lungs microbiota. Libraries from metagenomic DNA were prepared and sequenced using total DNA shotgun metagenomic pyrosequencing. The metagenomic distribution showed a great abundance of bacteria. The most common microbial families identified from pneumonic swine's lungs were Mycoplasmataceae, Flavobacteriaceae and Pasteurellaceae, whereas in the carrier swine's lungs the most common families were Mycoplasmataceae, Bradyrhizobiaceae and Flavobacteriaceae. Analysis of community composition in both samples confirmed the high prevalence of M. hyopneumoniae. Moreover, the carrier lungs had more diverse family population, which should be related to the lungs normal flora. In summary, we provide a wide view of the bacterial population from lungs with signals of enzootic pneumonia and lungs without signals of enzootic pneumonia in a field situation. These bacteria patterns provide information that may be important for the establishment of disease control measures and to give insights for further studies.
Insights
This study analyzed swine lung bacteria using metagenomics. Mycoplasma hyopneumoniae was prevalent in both healthy and diseased pigs, but healthy lungs showed greater bacterial diversity.
Area of Science:
- Veterinary Microbiology
- Swine Respiratory Health
- Metagenomics
Background:
- Mycoplasma hyopneumoniae causes swine enzootic pneumonia.
- Other bacteria and mycoplasma species also inhabit the swine respiratory tract and may contribute to disease.
- Understanding lung microbiota variability is crucial for disease control.
Purpose of the Study:
- To evaluate bacterial microbiota variability in swine lungs under field conditions.
- To compare bacterial communities in lungs with and without enzootic pneumonia signals.
- To identify key bacterial families associated with swine respiratory health and disease.
Main Methods:
- Total DNA metagenomic analysis of swine lung samples.
- DNA library preparation and sequencing using shotgun metagenomic pyrosequencing.
- Analysis of bacterial community composition and family prevalence.
Main Results:
- High abundance of bacteria was observed in swine lungs.
- Mycoplasmataceae, Flavobacteriaceae, and Pasteurellaceae were common in pneumonic lungs.
- Mycoplasmataceae, Bradyrhizobiaceae, and Flavobacteriaceae were common in carrier (non-pneumonic) lungs.
- Mycoplasma hyopneumoniae was prevalent in both groups.
- Carrier lungs exhibited a more diverse bacterial family population.
Conclusions:
- Metagenomic analysis provides a comprehensive view of swine lung bacterial populations.
- Distinct bacterial patterns exist between pneumonic and non-pneumonic swine lungs.
- Findings offer insights for swine enzootic pneumonia control strategies and future research.
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