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De Novo Transcriptome Assembly of Agave H11648 by Illumina Sequencing and Identification of Cellulose Synthase Genes in Agave Species

Agave plants are important crassulacean acid metabolism (CAM) plants with multiple agricultural uses, such as being used in tequila and fiber production. Agave hybrid H11648 ((A. amaniensis Trel. and Nowell × A. angustifolia Haw.) × A. amaniensis) is the main cultivated Agave species for fiber produ...

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Autores principales: Huang, Xing, Xiao, Mei, Xi, Jingen, He, Chunping, Zheng, Jinlong, Chen, Helong, Gao, Jianming, Zhang, Shiqing, Wu, Weihuai, Liang, Yanqiong, Xie, Li, Yi, Kexian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6409920/
https://www.ncbi.nlm.nih.gov/pubmed/30704153
http://dx.doi.org/10.3390/genes10020103
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author Huang, Xing
Xiao, Mei
Xi, Jingen
He, Chunping
Zheng, Jinlong
Chen, Helong
Gao, Jianming
Zhang, Shiqing
Wu, Weihuai
Liang, Yanqiong
Xie, Li
Yi, Kexian
author_facet Huang, Xing
Xiao, Mei
Xi, Jingen
He, Chunping
Zheng, Jinlong
Chen, Helong
Gao, Jianming
Zhang, Shiqing
Wu, Weihuai
Liang, Yanqiong
Xie, Li
Yi, Kexian
author_sort Huang, Xing
collection PubMed
description Agave plants are important crassulacean acid metabolism (CAM) plants with multiple agricultural uses, such as being used in tequila and fiber production. Agave hybrid H11648 ((A. amaniensis Trel. and Nowell × A. angustifolia Haw.) × A. amaniensis) is the main cultivated Agave species for fiber production in large tropical areas around the world. In this study, we conducted a transcriptome analysis of A. H11648. About 49.25 million clean reads were obtained by Illumina paired-end sequencing. De novo assembly produced 148,046 unigenes with more than 40% annotated in public databases, or matched homologs in model plants. More homologous gene pairs were found in Asparagus genome than in Arabidopsis or rice, which indicated a close evolutionary relationship between Asparagus and A. H11648. CAM-related gene families were also characterized as previously reported in A. americana. We further identified 12 cellulose synthase genes (CesA) in Asparagus genome and 38 CesA sequences from A. H11648, A. americana, A. deserti and A. tequilana. The full-length CesA genes were used as references for the cloning and assembly of their homologs in other Agave species. As a result, we obtained CesA1/3/4/5/7 genes with full-length coding region in the four Agave species. Phylogenetic and expression analysis revealed a conserved evolutionary pattern, which could not explain the distinct fiber traits in different Agave species. We inferred that transcriptional regulation might be responsible for Agave fiber development. This study represents the transcriptome of A. H11648, which would expand the number of Agave genes and benefit relevant studies of Agave fiber development.
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spelling pubmed-64099202019-03-26 De Novo Transcriptome Assembly of Agave H11648 by Illumina Sequencing and Identification of Cellulose Synthase Genes in Agave Species Huang, Xing Xiao, Mei Xi, Jingen He, Chunping Zheng, Jinlong Chen, Helong Gao, Jianming Zhang, Shiqing Wu, Weihuai Liang, Yanqiong Xie, Li Yi, Kexian Genes (Basel) Article Agave plants are important crassulacean acid metabolism (CAM) plants with multiple agricultural uses, such as being used in tequila and fiber production. Agave hybrid H11648 ((A. amaniensis Trel. and Nowell × A. angustifolia Haw.) × A. amaniensis) is the main cultivated Agave species for fiber production in large tropical areas around the world. In this study, we conducted a transcriptome analysis of A. H11648. About 49.25 million clean reads were obtained by Illumina paired-end sequencing. De novo assembly produced 148,046 unigenes with more than 40% annotated in public databases, or matched homologs in model plants. More homologous gene pairs were found in Asparagus genome than in Arabidopsis or rice, which indicated a close evolutionary relationship between Asparagus and A. H11648. CAM-related gene families were also characterized as previously reported in A. americana. We further identified 12 cellulose synthase genes (CesA) in Asparagus genome and 38 CesA sequences from A. H11648, A. americana, A. deserti and A. tequilana. The full-length CesA genes were used as references for the cloning and assembly of their homologs in other Agave species. As a result, we obtained CesA1/3/4/5/7 genes with full-length coding region in the four Agave species. Phylogenetic and expression analysis revealed a conserved evolutionary pattern, which could not explain the distinct fiber traits in different Agave species. We inferred that transcriptional regulation might be responsible for Agave fiber development. This study represents the transcriptome of A. H11648, which would expand the number of Agave genes and benefit relevant studies of Agave fiber development. MDPI 2019-01-30 /pmc/articles/PMC6409920/ /pubmed/30704153 http://dx.doi.org/10.3390/genes10020103 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Huang, Xing
Xiao, Mei
Xi, Jingen
He, Chunping
Zheng, Jinlong
Chen, Helong
Gao, Jianming
Zhang, Shiqing
Wu, Weihuai
Liang, Yanqiong
Xie, Li
Yi, Kexian
De Novo Transcriptome Assembly of Agave H11648 by Illumina Sequencing and Identification of Cellulose Synthase Genes in Agave Species
title De Novo Transcriptome Assembly of Agave H11648 by Illumina Sequencing and Identification of Cellulose Synthase Genes in Agave Species
title_full De Novo Transcriptome Assembly of Agave H11648 by Illumina Sequencing and Identification of Cellulose Synthase Genes in Agave Species
title_fullStr De Novo Transcriptome Assembly of Agave H11648 by Illumina Sequencing and Identification of Cellulose Synthase Genes in Agave Species
title_full_unstemmed De Novo Transcriptome Assembly of Agave H11648 by Illumina Sequencing and Identification of Cellulose Synthase Genes in Agave Species
title_short De Novo Transcriptome Assembly of Agave H11648 by Illumina Sequencing and Identification of Cellulose Synthase Genes in Agave Species
title_sort de novo transcriptome assembly of agave h11648 by illumina sequencing and identification of cellulose synthase genes in agave species
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6409920/
https://www.ncbi.nlm.nih.gov/pubmed/30704153
http://dx.doi.org/10.3390/genes10020103
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