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Peripheral Blood Mononuclear Cell Transcriptome of Dairy Cows Naturally Infected with Bovine Leukemia Virus
Tanner F Scull1, Clarissa Strieder-Barboza1,2, Oscar J Benitez1,2
1Department of Veterinary Sciences, Davis College of Agricultural Sciences and Natural Resources, Texas Tech University, Lubbock, TX 79409, USA.
Insights
Bovine leukemia virus (BLV) infection significantly alters immune cell gene expression in cows. This study reveals BLV suppresses normal immune responses, impacting B and T cell function and leading to immune dysfunction.
Area of Science:
- Veterinary Immunology
- Transcriptomics
- Viral Immunology
Background:
- Bovine leukemia virus (BLV) infection is prevalent in cattle.
- Previous studies on BLV-infected cows focused on specific immune components, lacking a holistic view.
- Understanding comprehensive immune expression changes in BLV infection is crucial for disease management.
Purpose of the Study:
- To comprehensively analyze alterations in immune gene expression in cows infected with BLV.
- To investigate the impact of BLV proviral load on immune cell transcriptomes.
- To identify specific immunological pathways affected by BLV infection.
Main Methods:
- Transcriptome sequencing of peripheral blood mononuclear cells (PBMCs) from BLV-seropositive and seronegative cows.
- Quantification of BLV proviral load using PCR.
- Differential gene expression analysis to compare BLV+ and BLV- PBMCs.
Main Results:
- Significant differences observed in transcriptome profiles between BLV-infected and non-infected cows.
- BLV infection affects a wide array of immunological pathways.
- Gene expression in PBMCs varies with BLV proviral load levels.
Conclusions:
- BLV infection suppresses normal immune responses in cattle.
- BLV influences B and T cell gene expression, leading to immune dysfunction.
- BLV proviral load is a key factor influencing the immune response and disease state.
Abstract:
The current literature has identified many abnormalities in the immune expression of cows infected with the bovine leukemia virus (BLV). These studies have focused on individual cell, gene, or protein expression, failing to provide a comprehensive understanding of the changes in immune expression in animals with BLV. To identify the overall alterations in immune expression during BLV infection, the transcriptomes of the peripheral blood mononuclear cells (PBMCs) of cows seropositive or seronegative for BLV antibodies were sequenced. Whole blood samples were collected from 20 dairy cows and screened for BLV antibodies and PCR was used to quantify the proviral load of the samples. PBMCs were separated from whole blood using density gradient centrifugation from which RNA was isolated and sequenced. Three seropositive samples (BLV+; n = 3), including one of each PVL category, low (n = 1), moderate (n = 1), and high (n = 1), and three seronegative samples (BLV-; n = 3) were sequenced for differential gene expression analysis. The results showed major differences in the transcriptome profiles of the BLV+ and BLV- PBMCs and revealed a wide variety of immunological pathways affected by BLV infection. Our results suggest that disease state and PBMC gene expression vary depending on BLV proviral load levels and that BLV causes the suppression of normal immune responses and influences B and T cell gene expression, resulting in immune dysfunction.
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