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Comprehensive Network Analysis of Anther-Expressed Genes in Rice by the Combination of 33 Laser Microdissection and 143 Spatiotemporal Microarrays

Co-expression networks systematically constructed from large-scale transcriptome data reflect the interactions and functions of genes with similar expression patterns and are a powerful tool for the comprehensive understanding of biological events and mining of novel genes. In Arabidopsis (a model d...

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Autores principales: Aya, Koichiro, Suzuki, Go, Suwabe, Keita, Hobo, Tokunori, Takahashi, Hirokazu, Shiono, Katsuhiro, Yano, Kentaro, Tsutsumi, Nobuhiro, Nakazono, Mikio, Nagamura, Yoshiaki, Matsuoka, Makoto, Watanabe, Masao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3202526/
https://www.ncbi.nlm.nih.gov/pubmed/22046259
http://dx.doi.org/10.1371/journal.pone.0026162
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author Aya, Koichiro
Suzuki, Go
Suwabe, Keita
Hobo, Tokunori
Takahashi, Hirokazu
Shiono, Katsuhiro
Yano, Kentaro
Tsutsumi, Nobuhiro
Nakazono, Mikio
Nagamura, Yoshiaki
Matsuoka, Makoto
Watanabe, Masao
author_facet Aya, Koichiro
Suzuki, Go
Suwabe, Keita
Hobo, Tokunori
Takahashi, Hirokazu
Shiono, Katsuhiro
Yano, Kentaro
Tsutsumi, Nobuhiro
Nakazono, Mikio
Nagamura, Yoshiaki
Matsuoka, Makoto
Watanabe, Masao
author_sort Aya, Koichiro
collection PubMed
description Co-expression networks systematically constructed from large-scale transcriptome data reflect the interactions and functions of genes with similar expression patterns and are a powerful tool for the comprehensive understanding of biological events and mining of novel genes. In Arabidopsis (a model dicot plant), high-resolution co-expression networks have been constructed from very large microarray datasets and these are publicly available as online information resources. However, the available transcriptome data of rice (a model monocot plant) have been limited so far, making it difficult for rice researchers to achieve reliable co-expression analysis. In this study, we performed co-expression network analysis by using combined 44 K agilent microarray datasets of rice, which consisted of 33 laser microdissection (LM)-microarray datasets of anthers, and 143 spatiotemporal transcriptome datasets deposited in RicexPro. The entire data of the rice co-expression network, which was generated from the 176 microarray datasets by the Pearson correlation coefficient (PCC) method with the mutual rank (MR)-based cut-off, contained 24,258 genes and 60,441 genes pairs. Using these datasets, we constructed high-resolution co-expression subnetworks of two specific biological events in the anther, “meiosis” and “pollen wall synthesis”. The meiosis network contained many known or putative meiotic genes, including genes related to meiosis initiation and recombination. In the pollen wall synthesis network, several candidate genes involved in the sporopollenin biosynthesis pathway were efficiently identified. Hence, these two subnetworks are important demonstrations of the efficiency of co-expression network analysis in rice. Our co-expression analysis included the separated transcriptomes of pollen and tapetum cells in the anther, which are able to provide precise information on transcriptional regulation during male gametophyte development in rice. The co-expression network data presented here is a useful resource for rice researchers to elucidate important and complex biological events.
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spelling pubmed-32025262011-11-01 Comprehensive Network Analysis of Anther-Expressed Genes in Rice by the Combination of 33 Laser Microdissection and 143 Spatiotemporal Microarrays Aya, Koichiro Suzuki, Go Suwabe, Keita Hobo, Tokunori Takahashi, Hirokazu Shiono, Katsuhiro Yano, Kentaro Tsutsumi, Nobuhiro Nakazono, Mikio Nagamura, Yoshiaki Matsuoka, Makoto Watanabe, Masao PLoS One Research Article Co-expression networks systematically constructed from large-scale transcriptome data reflect the interactions and functions of genes with similar expression patterns and are a powerful tool for the comprehensive understanding of biological events and mining of novel genes. In Arabidopsis (a model dicot plant), high-resolution co-expression networks have been constructed from very large microarray datasets and these are publicly available as online information resources. However, the available transcriptome data of rice (a model monocot plant) have been limited so far, making it difficult for rice researchers to achieve reliable co-expression analysis. In this study, we performed co-expression network analysis by using combined 44 K agilent microarray datasets of rice, which consisted of 33 laser microdissection (LM)-microarray datasets of anthers, and 143 spatiotemporal transcriptome datasets deposited in RicexPro. The entire data of the rice co-expression network, which was generated from the 176 microarray datasets by the Pearson correlation coefficient (PCC) method with the mutual rank (MR)-based cut-off, contained 24,258 genes and 60,441 genes pairs. Using these datasets, we constructed high-resolution co-expression subnetworks of two specific biological events in the anther, “meiosis” and “pollen wall synthesis”. The meiosis network contained many known or putative meiotic genes, including genes related to meiosis initiation and recombination. In the pollen wall synthesis network, several candidate genes involved in the sporopollenin biosynthesis pathway were efficiently identified. Hence, these two subnetworks are important demonstrations of the efficiency of co-expression network analysis in rice. Our co-expression analysis included the separated transcriptomes of pollen and tapetum cells in the anther, which are able to provide precise information on transcriptional regulation during male gametophyte development in rice. The co-expression network data presented here is a useful resource for rice researchers to elucidate important and complex biological events. Public Library of Science 2011-10-26 /pmc/articles/PMC3202526/ /pubmed/22046259 http://dx.doi.org/10.1371/journal.pone.0026162 Text en Aya et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Aya, Koichiro
Suzuki, Go
Suwabe, Keita
Hobo, Tokunori
Takahashi, Hirokazu
Shiono, Katsuhiro
Yano, Kentaro
Tsutsumi, Nobuhiro
Nakazono, Mikio
Nagamura, Yoshiaki
Matsuoka, Makoto
Watanabe, Masao
Comprehensive Network Analysis of Anther-Expressed Genes in Rice by the Combination of 33 Laser Microdissection and 143 Spatiotemporal Microarrays
title Comprehensive Network Analysis of Anther-Expressed Genes in Rice by the Combination of 33 Laser Microdissection and 143 Spatiotemporal Microarrays
title_full Comprehensive Network Analysis of Anther-Expressed Genes in Rice by the Combination of 33 Laser Microdissection and 143 Spatiotemporal Microarrays
title_fullStr Comprehensive Network Analysis of Anther-Expressed Genes in Rice by the Combination of 33 Laser Microdissection and 143 Spatiotemporal Microarrays
title_full_unstemmed Comprehensive Network Analysis of Anther-Expressed Genes in Rice by the Combination of 33 Laser Microdissection and 143 Spatiotemporal Microarrays
title_short Comprehensive Network Analysis of Anther-Expressed Genes in Rice by the Combination of 33 Laser Microdissection and 143 Spatiotemporal Microarrays
title_sort comprehensive network analysis of anther-expressed genes in rice by the combination of 33 laser microdissection and 143 spatiotemporal microarrays
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3202526/
https://www.ncbi.nlm.nih.gov/pubmed/22046259
http://dx.doi.org/10.1371/journal.pone.0026162
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