| Literature DB >> 23056413 |
Fabio A Vannucci1, Douglas N Foster, Connie J Gebhart.
Abstract
Lawsonia intracellularis is the causative agent of proliferative enteropathy. This disease affects various animal species, including nonhuman primates, has been endemic in pigs, and is an emerging concern in horses. Non-pathogenic variants obtained through multiple passages in vitro do not induce disease, but bacterial isolates at low passage induce clinical and pathological changes. We hypothesize that genes differentially expressed between pathogenic (passage 10) and non-pathogenic (passage 60) L. intracellularis isolates encode potential bacterial virulence factors. The present study used high-throughput sequencing technology to characterize the transcriptional profiling of a pathogenic and a non-pathogenic homologous L. intracellularis variant during in vitro infection. A total of 401 genes were exclusively expressed by the pathogenic variant. Plasmid-encoded genes and those involved in membrane transporter (e.g. ATP-binding cassette), adaptation and stress response (e.g. transcriptional regulators) were the categories mostly responsible for this wider transcriptional landscape. The entire gene repertoire of plasmid A was repressed in the non-pathogenic variant suggesting its relevant role in the virulence phenotype of the pathogenic variant. Of the 319 genes which were commonly expressed in both pathogenic and non-pathogenic variants, no significant difference was observed by comparing their normalized transcription levels (fold change±2; p<0.05). Unexpectedly, these genes demonstrated a positive correlation (r(2) = 0.81; p<0.05), indicating the involvement of gene silencing (switching off) mechanisms to attenuate virulence properties of the pathogenic variant during multiple cell passages. Following the validation of these results by reverse transcriptase-quantitative PCR using ten selected genes, the present study represents the first report characterizing the transcriptional profile of L. intracellularis. The complexity of the virulence phenotype was demonstrated by the diversity of genes exclusively expressed in the pathogenic isolate. The results support our hypothesis and provide the basis for prospective mechanistic studies regarding specific roles of target genes involved in the pathogenesis, diagnosis and control of proliferative enteropathy.Entities:
Mesh:
Year: 2012 PMID: 23056413 PMCID: PMC3463550 DOI: 10.1371/journal.pone.0046708
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Chromosomal genes showing highest transcript levels exclusively expressed by the pathogenic variant of the L. intracellularis isolate PHE/MN1-00 according to the putative biological function.
| Locus | Gene | Description | Log2 (RPKM) |
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| LI0372 | putative cell division protein | 12.8 | |
| LI0844 | tRNA and rRNA cytosine-C5-methylases | 14.1 | |
| LI0962 |
| 50S ribosomal protein L23 | 13.5 |
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| LI0442 |
| processing of HyaA and HyaB proteins | 10.9 |
| LI1176 | nitroreductase | 11.1 | |
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| LI0154 |
| riboflavin synthase beta-chain | 12.6 |
| LI0361 | quinolinate synthetase | 12.7 | |
| LI0735 |
| 4-diphosphocytidyl-2-C-methyl-D-erythritol kinase | 14.5 |
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| LI0338 |
| branched chain amino acid ABC transporter (permease) | 12.5 |
| LI0754 |
| amino acid ABC transporter substrate-binding protein | 13.9 |
| LI0995 |
| outer membrane efflux protein | 12.1 |
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| LI0375 |
| protein-L-isoaspartate carboxylmethyltransferase | 12.2 |
| LI0225 |
| SsrA-binding protein | 11.4 |
| LI0618 | ATPases with chaperone activity, ATP-binding subunit ClpA | 11.4 | |
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| LI0825 | Lipid A core-O-antigen ligase and related enzymes | 13.2 | |
| LI0947 | cell wall-associated hydrolases | 12.6 | |
| LI1141 |
| chemotaxis signal transduction protein | 11.0 |
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| LI0035 |
| Fe2+/Zn2+ uptake regulation proteins | 11.8 |
| LI0301 |
| DNA repair protein RecO (recombination protein O) | 13.0 |
| LI0457 |
| Sigma54-like protein | 11.7 |
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| LI0140 | glycosyltransferase | 11.5 | |
| LI0246 |
| zinc finger protein | 11.6 |
| LI0880 |
| DNA-binding protein, stimulates sugar fermentation | 11.4 |
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| LI0259 | hypothetical protein | 13.9 | |
| LI0917 | hypothetical protein | 12.9 | |
| LI1056 | hypothetical protein | 12.3 | |
Genes exclusively expressed by the non-pathogenic variant of the L. intracellularis isolate PHE/MN1-00.
| Locus | Gene | Description | Log2 (RPKM) |
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| LI0702 |
| nucleotide-binding protein involved in septum formation | 11.7 |
| LIB024 |
| ATPases involved in chromosome partitioning | 11.1 |
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| LI0614 | Thiol-disulfide isomerase and thioredoxins | 12.1 | |
| LI1001 |
| cytochrome c nitrite reductase small subunit | 12.2 |
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| LI0709 |
| FAD synthase involved in riboflavin metabolism | 12.2 |
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| LI0540 |
| type III secretion system ATPase | 11.3 |
| LI1163 |
| type III secretion protein | 10.8 |
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| LI0747 |
| flagellar hook-associated protein | 11.2 |
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| LI0427 | hypothetical protein | 9.8 | |
| LI0554 | hypothetical protein | 10.8 | |
| LI0583 | hypothetical protein | 10.1 | |
Figure 1Schematic representation of the L. intracellularis genome.
Distribution of genes expressed by the pathogenic (black circles) and the non-pathogenic (gray circles) variants. Overlapping zones represent genes expressed in both variants.
Figure 2Functional categories of genes expressed by the pathogenic and non-pathogenic homologous L. intracellularis isolate PHE/MN1-00.
Black and gray bars represent the number of genes expressed by the pathogenic and non-pathogenic variants, respectively.
Figure 3Average log-transformed RPKM (log2 [RPKM]) of the 319 genes commonly expressed by the pathogenic (y-axis) and non-pathogenic (x-axis) variant.
The trend line represent a linear regression model (p-value <0.05; r2 = 0.809).
Figure 4Correlation between RNA-seq and qRT-PCR.
Plot demonstrating the relative quantification of 10 unlinked genes by qRT-PCR (y-axis) and the transcript levels generated by RNA-seq (x-axis). Genes commonly expressed by the pathogenic (♦) and non-pathogenic (♦) variants. Genes exclusively expressed by the pathogenic (◊) and non-pathogenic (◊) variants.
Plasmid-encoded genes with highest transcript levels exclusively expressed by the pathogenic variant of the L. intracellularis isolate PHE/MN1-00.
| Locus | Gene | Description | Log2 (RPKM) |
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| LIA022 | cell wall biosynthesis glycosyltransferase | 12.1 | |
| LIA025 | plasmid stabilization system protein | 11.7 | |
| LIA017 |
| Fe-S oxidoreductase | 11.2 |
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| LIB002 | PbsX family transcriptional regulator | 13.5 | |
| LIB017 | hypothetical protein | 12.1 | |
| LIB019 | hypothetical protein | 13.3 | |
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| LIC047 | hypothetical protein | 12.8 | |
| LIC056 | hypothetical protein | 16 | |
| LIC079 | hypothetical protein | 11.4 | |
| LIC091 | hypothetical protein | 11.4 | |