O’Loughlin, Aran, Lynn, David J., McGee, Mark, Doyle, Sean, McCabe, Matthew and Earley, Bernadette (2012) Transcriptomic analysis of the stress response to weaning at housing in bovine leukocytes using RNA-seq technology. BMC Genomics, 13 (250). pp. 1-18. ISSN 1471-2164
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Abstract
Background: Weaning of beef calves is a necessary husbandry practice and involves separating the calf from its
mother, resulting in numerous stressful events including dietary change, social reorganisation and the cessation of
the maternal-offspring bond and is often accompanied by housing. While much recent research has focused on the
physiological response of the bovine immune system to stress in recent years, little is known about the molecular
mechanisms modulating the immune response. Therefore, the objective of this study was to provide new insights
into the molecular mechanisms underlying the physiological response to weaning at housing in beef calves using
Illumina RNA-seq.
Results: The leukocyte transcriptome was significantly altered for at least 7 days following either housing or
weaning at housing. Analysis of differentially expressed genes revealed that four main pathways, cytokine signalling,
transmembrane transport, haemostasis and G-protein-coupled receptor (GPRC) signalling were differentially
regulated between control and weaned calves and underwent significant transcriptomic alterations in response to
weaning stress on day 1, 2 and 7. Of particular note, chemokines, cytokines and integrins were consistently found
to be up-regulated on each day following weaning. Evidence for alternative splicing of genes was also detected,
indicating a number of genes involved in the innate and adaptive immune response may be alternatively
transcribed, including those responsible for toll receptor cascades and T cell receptor signalling.
Conclusions: This study represents the first application of RNA-Seq technology for genomic studies in bovine
leukocytes in response to weaning stress. Weaning stress induces the activation of a number of cytokine,
chemokine and integrin transcripts and may alter the immune system whereby the ability of a number of cells of
the innate and adaptive immune system to locate and destroy pathogens is transcriptionally enhanced. Stress alters
the homeostasis of the transcriptomic environment of leukocytes for at least 7 days following weaning, indicating
long term effects of stress exposure in the bovine. The identification of gene signature networks that are stress
activated provides a mechanistic framework to characterise the multifaceted nature of weaning stress adaptation in
beef calves. Thus, capturing subtle transcriptomic changes provides insight into the molecular mechanisms that
underlie the physiological response to weaning stress.
Item Type: | Article |
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Additional Information: | This article has been published under a Creative Commons Attribution License: http://www.biomedcentral.com/about/access. The original article is available at http://www.biomedcentral.com/1471-2164/13/250 |
Keywords: | Transcriptomic; analysis; stress response; weaning; housing; bovine leukocytes; RNA-seq technology; |
Academic Unit: | Faculty of Science and Engineering > Biology |
Item ID: | 3780 |
Depositing User: | Dr. Sean Doyle |
Date Deposited: | 07 Nov 2012 16:21 |
Journal or Publication Title: | BMC Genomics |
Publisher: | Biomed Central |
Refereed: | Yes |
Related URLs: | |
URI: | https://mural.maynoothuniversity.ie/id/eprint/3780 |
Use Licence: | This item is available under a Creative Commons Attribution Non Commercial Share Alike Licence (CC BY-NC-SA). Details of this licence are available here |
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