MicroRNA transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infection

Abstract Background Porcine cytomegalovirus (PCMV) is an immunosuppressive virus that mainly inhibits T-lymphocyte and macrophage immune functions; it has significantly damaged the farming industry. Although recent studies have shown that miRNAs play important roles in immune responses, the regulato...

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Main Authors: Xiao Liu, Haoche Wei, Shan Liao, Jianheng Ye, Ling Zhu, Zhiwen Xu
Format: Article
Language:English
Published: BMC 2018-01-01
Series:Virology Journal
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12985-018-0922-x
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spelling doaj-9adc3e4e27cb4292a133234832bd2e012020-11-24T21:59:44ZengBMCVirology Journal1743-422X2018-01-0115111210.1186/s12985-018-0922-xMicroRNA transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infectionXiao Liu0Haoche Wei1Shan Liao2Jianheng Ye3Ling Zhu4Zhiwen Xu5Southwest University, College of Animal Science and technologyCollege of Life Sciences, Sichuan UniversitySouthwest University, College of Animal Science and technologyDepartment of Urology, Guangdong Key Laboratory of Clinical Molecular Medicine and Diagnostics, Guangzhou First People’s Hospital, Guangzhou Medical UniversityKey Laboratory of Animal Disease and Human Health of Sichuan Province and Animal Biotechnology Center, College of Veterinary Medicine of Sichuan Agricultural UniversityKey Laboratory of Animal Disease and Human Health of Sichuan Province and Animal Biotechnology Center, College of Veterinary Medicine of Sichuan Agricultural UniversityAbstract Background Porcine cytomegalovirus (PCMV) is an immunosuppressive virus that mainly inhibits T-lymphocyte and macrophage immune functions; it has significantly damaged the farming industry. Although recent studies have shown that miRNAs play important roles in immune responses, the regulatory mechanisms of miRNAs during immunosuppressive virus infection remain unclear. Methods In this study, porcine small-RNA transcriptomes of PCMV-infected and uninfected vital organs were first characterised by high-throughput sequencing. miRDeep2 software was used to predict novel pig-encoded miRNAs. To verify the accuracy of the high-throughput sequencing results, stem-loop qRT-PCR was performed on 12 significantly DE miRNAs. The physical and functional interactions between the immune-related target genes of the DE miRNAs in PCMV-infected organs were analysed using the STRING database. Results In total, 306 annotated and 295 novel miRNAs were identified from PCMV-infected and uninfected porcine organs, respectively, through alignment with known Sus scrofa pre-miRNAs. Overall, 92, 107, 95, 77 and 111 miRNAs were significantly differentially expressed in lung, liver, spleen, kidney and thymus after PCMV infection, respectively. According to Gene Ontology enrichment analysis, target genes of the differentially expressed miRNAs associated with immune system processes, regulation of biological processes and metabolic processes were enriched in every sample. Integrated expression analysis of the differentially expressed miRNAs and their target mRNAs in PCMV-infected thymus showed that the significant differential expression of specific miRNAs under the pressure of PCMV infection in central immune organs interfered with the expression of genes involved in important immune-related signalling pathways, thus promoting the viral infection. Conclusions This is the first comprehensive analysis of the responses of host small-RNA transcriptomes to PCMV infection in vital porcine organs. It provides new insights into the regulatory mechanisms of miRNAs during infection by immunosuppressive viruses.http://link.springer.com/article/10.1186/s12985-018-0922-xPorcine cytomegalovirusmicroRNA transcriptomePorcine organHigh-throughput sequencingIntegrated expression analysis
collection DOAJ
language English
format Article
sources DOAJ
author Xiao Liu
Haoche Wei
Shan Liao
Jianheng Ye
Ling Zhu
Zhiwen Xu
spellingShingle Xiao Liu
Haoche Wei
Shan Liao
Jianheng Ye
Ling Zhu
Zhiwen Xu
MicroRNA transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infection
Virology Journal
Porcine cytomegalovirus
microRNA transcriptome
Porcine organ
High-throughput sequencing
Integrated expression analysis
author_facet Xiao Liu
Haoche Wei
Shan Liao
Jianheng Ye
Ling Zhu
Zhiwen Xu
author_sort Xiao Liu
title MicroRNA transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infection
title_short MicroRNA transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infection
title_full MicroRNA transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infection
title_fullStr MicroRNA transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infection
title_full_unstemmed MicroRNA transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infection
title_sort microrna transcriptome analysis of porcine vital organ responses to immunosuppressive porcine cytomegalovirus infection
publisher BMC
series Virology Journal
issn 1743-422X
publishDate 2018-01-01
description Abstract Background Porcine cytomegalovirus (PCMV) is an immunosuppressive virus that mainly inhibits T-lymphocyte and macrophage immune functions; it has significantly damaged the farming industry. Although recent studies have shown that miRNAs play important roles in immune responses, the regulatory mechanisms of miRNAs during immunosuppressive virus infection remain unclear. Methods In this study, porcine small-RNA transcriptomes of PCMV-infected and uninfected vital organs were first characterised by high-throughput sequencing. miRDeep2 software was used to predict novel pig-encoded miRNAs. To verify the accuracy of the high-throughput sequencing results, stem-loop qRT-PCR was performed on 12 significantly DE miRNAs. The physical and functional interactions between the immune-related target genes of the DE miRNAs in PCMV-infected organs were analysed using the STRING database. Results In total, 306 annotated and 295 novel miRNAs were identified from PCMV-infected and uninfected porcine organs, respectively, through alignment with known Sus scrofa pre-miRNAs. Overall, 92, 107, 95, 77 and 111 miRNAs were significantly differentially expressed in lung, liver, spleen, kidney and thymus after PCMV infection, respectively. According to Gene Ontology enrichment analysis, target genes of the differentially expressed miRNAs associated with immune system processes, regulation of biological processes and metabolic processes were enriched in every sample. Integrated expression analysis of the differentially expressed miRNAs and their target mRNAs in PCMV-infected thymus showed that the significant differential expression of specific miRNAs under the pressure of PCMV infection in central immune organs interfered with the expression of genes involved in important immune-related signalling pathways, thus promoting the viral infection. Conclusions This is the first comprehensive analysis of the responses of host small-RNA transcriptomes to PCMV infection in vital porcine organs. It provides new insights into the regulatory mechanisms of miRNAs during infection by immunosuppressive viruses.
topic Porcine cytomegalovirus
microRNA transcriptome
Porcine organ
High-throughput sequencing
Integrated expression analysis
url http://link.springer.com/article/10.1186/s12985-018-0922-x
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