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Stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, Sus Scrofa

BACKGROUND: Our current knowledge of tooth development derives mainly from studies in mice, which have only one set of non-replaced teeth, compared with the diphyodont dentition in humans. The miniature pig is also diphyodont, making it a valuable alternative model for understanding human tooth deve...

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Autores principales: Wang, Fu, Xiao, Jing, Cong, Wei, Li, Ang, Wei, Fulan, Xu, Junji, Zhang, Chunmei, Fan, Zhipeng, He, Junqi, Wang, Songlin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3937075/
https://www.ncbi.nlm.nih.gov/pubmed/24498892
http://dx.doi.org/10.1186/1471-2164-15-103
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author Wang, Fu
Xiao, Jing
Cong, Wei
Li, Ang
Wei, Fulan
Xu, Junji
Zhang, Chunmei
Fan, Zhipeng
He, Junqi
Wang, Songlin
author_facet Wang, Fu
Xiao, Jing
Cong, Wei
Li, Ang
Wei, Fulan
Xu, Junji
Zhang, Chunmei
Fan, Zhipeng
He, Junqi
Wang, Songlin
author_sort Wang, Fu
collection PubMed
description BACKGROUND: Our current knowledge of tooth development derives mainly from studies in mice, which have only one set of non-replaced teeth, compared with the diphyodont dentition in humans. The miniature pig is also diphyodont, making it a valuable alternative model for understanding human tooth development and replacement. However, little is known about gene expression and function during swine odontogenesis. The goal of this study is to undertake the survey of differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs. The identification of genes related to diphyodont development should lead to a better understanding of morphogenetic patterns and the mechanisms of diphyodont replacement in large animal models and humans. RESULTS: The temporal gene expression profiles during early diphyodont development in miniature pigs were detected with the Affymetrix Porcine GeneChip. The gene expression data were further evaluated by ANOVA as well as pathway and STC analyses. A total of 2,053 genes were detected with differential expression. Several signal pathways and 151 genes were then identified through the construction of pathway and signal networks. CONCLUSIONS: The gene expression profiles indicated that spatio-temporal down-regulation patterns of gene expression were predominant; while, both dynamic activation and inhibition of pathways occurred during the morphogenesis of diphyodont dentition. Our study offers a mechanistic framework for understanding dynamic gene regulation of early diphyodont development and provides a molecular basis for studying teeth development, replacement, and regeneration in miniature pigs.
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spelling pubmed-39370752014-02-28 Stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, Sus Scrofa Wang, Fu Xiao, Jing Cong, Wei Li, Ang Wei, Fulan Xu, Junji Zhang, Chunmei Fan, Zhipeng He, Junqi Wang, Songlin BMC Genomics Research Article BACKGROUND: Our current knowledge of tooth development derives mainly from studies in mice, which have only one set of non-replaced teeth, compared with the diphyodont dentition in humans. The miniature pig is also diphyodont, making it a valuable alternative model for understanding human tooth development and replacement. However, little is known about gene expression and function during swine odontogenesis. The goal of this study is to undertake the survey of differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs. The identification of genes related to diphyodont development should lead to a better understanding of morphogenetic patterns and the mechanisms of diphyodont replacement in large animal models and humans. RESULTS: The temporal gene expression profiles during early diphyodont development in miniature pigs were detected with the Affymetrix Porcine GeneChip. The gene expression data were further evaluated by ANOVA as well as pathway and STC analyses. A total of 2,053 genes were detected with differential expression. Several signal pathways and 151 genes were then identified through the construction of pathway and signal networks. CONCLUSIONS: The gene expression profiles indicated that spatio-temporal down-regulation patterns of gene expression were predominant; while, both dynamic activation and inhibition of pathways occurred during the morphogenesis of diphyodont dentition. Our study offers a mechanistic framework for understanding dynamic gene regulation of early diphyodont development and provides a molecular basis for studying teeth development, replacement, and regeneration in miniature pigs. BioMed Central 2014-02-06 /pmc/articles/PMC3937075/ /pubmed/24498892 http://dx.doi.org/10.1186/1471-2164-15-103 Text en Copyright © 2014 Wang et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited.
spellingShingle Research Article
Wang, Fu
Xiao, Jing
Cong, Wei
Li, Ang
Wei, Fulan
Xu, Junji
Zhang, Chunmei
Fan, Zhipeng
He, Junqi
Wang, Songlin
Stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, Sus Scrofa
title Stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, Sus Scrofa
title_full Stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, Sus Scrofa
title_fullStr Stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, Sus Scrofa
title_full_unstemmed Stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, Sus Scrofa
title_short Stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, Sus Scrofa
title_sort stage-specific differential gene expression profiling and functional network analysis during morphogenesis of diphyodont dentition in miniature pigs, sus scrofa
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3937075/
https://www.ncbi.nlm.nih.gov/pubmed/24498892
http://dx.doi.org/10.1186/1471-2164-15-103
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