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The Antiviral Effect of Isatis Root Polysaccharide against NADC30-like PRRSV by Transcriptome and Proteome Analysis

(1) Background: In recent years, the porcine reproductive and respiratory syndrome virus (PRRSV) has become a virulent pathogen that has caused devastating diseases and economic losses worldwide in the swine industry. IRPS has attracted extensive attention in the field of virology. However, it is no...

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Autores principales: Jiang, Dike, Zhang, Ling, Zhu, Guangheng, Zhang, Pengfei, Wu, Xulong, Yao, Xueping, Luo, Yan, Yang, Zexiao, Ren, Meishen, Wang, Xinping, Chen, Sheng, Wang, Yin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8998840/
https://www.ncbi.nlm.nih.gov/pubmed/35409050
http://dx.doi.org/10.3390/ijms23073688
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author Jiang, Dike
Zhang, Ling
Zhu, Guangheng
Zhang, Pengfei
Wu, Xulong
Yao, Xueping
Luo, Yan
Yang, Zexiao
Ren, Meishen
Wang, Xinping
Chen, Sheng
Wang, Yin
author_facet Jiang, Dike
Zhang, Ling
Zhu, Guangheng
Zhang, Pengfei
Wu, Xulong
Yao, Xueping
Luo, Yan
Yang, Zexiao
Ren, Meishen
Wang, Xinping
Chen, Sheng
Wang, Yin
author_sort Jiang, Dike
collection PubMed
description (1) Background: In recent years, the porcine reproductive and respiratory syndrome virus (PRRSV) has become a virulent pathogen that has caused devastating diseases and economic losses worldwide in the swine industry. IRPS has attracted extensive attention in the field of virology. However, it is not clear that IRPS has an antiviral effect on PRRSV at gene and protein levels. (2) Methods: We used transcriptomic and proteomic analysis to investigate the antiviral effect of IRPS against PRRSV. Additionally, a microbiome was used to explore the effects of IRPS on gut microbes. (3) Results: IRPS significantly extenuated the pulmonary pathological lesions and inflammatory response. We used transcriptomic and proteomic analysis to investigate the antiviral effect of IRPS against PRRSV. In the porcine model, 1669 differentially expressed genes (DEGs) and 370 differentially expressed proteins (DEPs) were identified. Analysis of the DEG/DEP-related pathways indicated immune-system and infectious-disease (viral) pathways, such as the NOD-like receptor (NLR) signaling pathway, toll-like receptor (TLR) signaling pathway, and Influenza A-associated signaling pathways. It is noteworthy that IRPS can inhibit NLR-dependent gene expression, then reduce the inflammatory damage. IRPS could exert beneficial effects on the host by regulating the structure of intestinal flora. (4) Conclusions: The antiviral effect of IRPS on PRRSV can be directly achieved by omics techniques. Specifically, the antiviral mechanism of IPRS can be better elucidated by screening target genes and proteins using transcriptome and proteome sequencing, and then performing enrichment and classification according to DEGs and DEPs.
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spelling pubmed-89988402022-04-12 The Antiviral Effect of Isatis Root Polysaccharide against NADC30-like PRRSV by Transcriptome and Proteome Analysis Jiang, Dike Zhang, Ling Zhu, Guangheng Zhang, Pengfei Wu, Xulong Yao, Xueping Luo, Yan Yang, Zexiao Ren, Meishen Wang, Xinping Chen, Sheng Wang, Yin Int J Mol Sci Article (1) Background: In recent years, the porcine reproductive and respiratory syndrome virus (PRRSV) has become a virulent pathogen that has caused devastating diseases and economic losses worldwide in the swine industry. IRPS has attracted extensive attention in the field of virology. However, it is not clear that IRPS has an antiviral effect on PRRSV at gene and protein levels. (2) Methods: We used transcriptomic and proteomic analysis to investigate the antiviral effect of IRPS against PRRSV. Additionally, a microbiome was used to explore the effects of IRPS on gut microbes. (3) Results: IRPS significantly extenuated the pulmonary pathological lesions and inflammatory response. We used transcriptomic and proteomic analysis to investigate the antiviral effect of IRPS against PRRSV. In the porcine model, 1669 differentially expressed genes (DEGs) and 370 differentially expressed proteins (DEPs) were identified. Analysis of the DEG/DEP-related pathways indicated immune-system and infectious-disease (viral) pathways, such as the NOD-like receptor (NLR) signaling pathway, toll-like receptor (TLR) signaling pathway, and Influenza A-associated signaling pathways. It is noteworthy that IRPS can inhibit NLR-dependent gene expression, then reduce the inflammatory damage. IRPS could exert beneficial effects on the host by regulating the structure of intestinal flora. (4) Conclusions: The antiviral effect of IRPS on PRRSV can be directly achieved by omics techniques. Specifically, the antiviral mechanism of IPRS can be better elucidated by screening target genes and proteins using transcriptome and proteome sequencing, and then performing enrichment and classification according to DEGs and DEPs. MDPI 2022-03-28 /pmc/articles/PMC8998840/ /pubmed/35409050 http://dx.doi.org/10.3390/ijms23073688 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiang, Dike
Zhang, Ling
Zhu, Guangheng
Zhang, Pengfei
Wu, Xulong
Yao, Xueping
Luo, Yan
Yang, Zexiao
Ren, Meishen
Wang, Xinping
Chen, Sheng
Wang, Yin
The Antiviral Effect of Isatis Root Polysaccharide against NADC30-like PRRSV by Transcriptome and Proteome Analysis
title The Antiviral Effect of Isatis Root Polysaccharide against NADC30-like PRRSV by Transcriptome and Proteome Analysis
title_full The Antiviral Effect of Isatis Root Polysaccharide against NADC30-like PRRSV by Transcriptome and Proteome Analysis
title_fullStr The Antiviral Effect of Isatis Root Polysaccharide against NADC30-like PRRSV by Transcriptome and Proteome Analysis
title_full_unstemmed The Antiviral Effect of Isatis Root Polysaccharide against NADC30-like PRRSV by Transcriptome and Proteome Analysis
title_short The Antiviral Effect of Isatis Root Polysaccharide against NADC30-like PRRSV by Transcriptome and Proteome Analysis
title_sort antiviral effect of isatis root polysaccharide against nadc30-like prrsv by transcriptome and proteome analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8998840/
https://www.ncbi.nlm.nih.gov/pubmed/35409050
http://dx.doi.org/10.3390/ijms23073688
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