Cargando…

Flower Bud Transcriptome Analysis of Sapium sebiferum (Linn.) Roxb. and Primary Investigation of Drought Induced Flowering: Pathway Construction and G-Quadruplex Prediction Based on Transcriptome

Sapium sebiferum (Linn.) Roxb. (Chinese Tallow Tree) is a perennial woody tree and its seeds are rich in oil which hold great potential for biodiesel production. Despite a traditional woody oil plant, our understanding on S. sebiferum genetics and molecular biology remains scant. In this study, the...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Minglei, Wu, Ying, Jin, Shan, Hou, Jinyan, Mao, Yingji, Liu, Wenbo, Shen, Yangcheng, Wu, Lifang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4349590/
https://www.ncbi.nlm.nih.gov/pubmed/25738565
http://dx.doi.org/10.1371/journal.pone.0118479
_version_ 1782360043792891904
author Yang, Minglei
Wu, Ying
Jin, Shan
Hou, Jinyan
Mao, Yingji
Liu, Wenbo
Shen, Yangcheng
Wu, Lifang
author_facet Yang, Minglei
Wu, Ying
Jin, Shan
Hou, Jinyan
Mao, Yingji
Liu, Wenbo
Shen, Yangcheng
Wu, Lifang
author_sort Yang, Minglei
collection PubMed
description Sapium sebiferum (Linn.) Roxb. (Chinese Tallow Tree) is a perennial woody tree and its seeds are rich in oil which hold great potential for biodiesel production. Despite a traditional woody oil plant, our understanding on S. sebiferum genetics and molecular biology remains scant. In this study, the first comprehensive transcriptome of S. sebiferum flower has been generated by sequencing and de novo assembly. A total of 149,342 unigenes were generated from raw reads, of which 24,289 unigenes were successfully matched to public database. A total of 61 MADS box genes and putative pathways involved in S. sebiferum flower development have been identified. Abiotic stress response network was also constructed in this work, where 2,686 unigenes are involved in the pathway. As for lipid biosynthesis, 161 unigenes have been identified in fatty acid (FA) and triacylglycerol (TAG) biosynthesis. Besides, the G-Quadruplexes in RNA of S. sebiferum also have been predicted. An interesting finding is that the stress-induced flowering was observed in S. sebiferum for the first time. According to the results of semi-quantitative PCR, expression tendencies of flowering-related genes, GA1, AP2 and CRY2, accorded with stress-related genes, such as GRX50435 and PRXⅡ39562. This transcriptome provides functional genomic information for further research of S. sebiferum, especially for the genetic engineering to shorten the juvenile period and improve yield by regulating flower development. It also offers a useful database for the research of other Euphorbiaceae family plants.
format Online
Article
Text
id pubmed-4349590
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43495902015-03-17 Flower Bud Transcriptome Analysis of Sapium sebiferum (Linn.) Roxb. and Primary Investigation of Drought Induced Flowering: Pathway Construction and G-Quadruplex Prediction Based on Transcriptome Yang, Minglei Wu, Ying Jin, Shan Hou, Jinyan Mao, Yingji Liu, Wenbo Shen, Yangcheng Wu, Lifang PLoS One Research Article Sapium sebiferum (Linn.) Roxb. (Chinese Tallow Tree) is a perennial woody tree and its seeds are rich in oil which hold great potential for biodiesel production. Despite a traditional woody oil plant, our understanding on S. sebiferum genetics and molecular biology remains scant. In this study, the first comprehensive transcriptome of S. sebiferum flower has been generated by sequencing and de novo assembly. A total of 149,342 unigenes were generated from raw reads, of which 24,289 unigenes were successfully matched to public database. A total of 61 MADS box genes and putative pathways involved in S. sebiferum flower development have been identified. Abiotic stress response network was also constructed in this work, where 2,686 unigenes are involved in the pathway. As for lipid biosynthesis, 161 unigenes have been identified in fatty acid (FA) and triacylglycerol (TAG) biosynthesis. Besides, the G-Quadruplexes in RNA of S. sebiferum also have been predicted. An interesting finding is that the stress-induced flowering was observed in S. sebiferum for the first time. According to the results of semi-quantitative PCR, expression tendencies of flowering-related genes, GA1, AP2 and CRY2, accorded with stress-related genes, such as GRX50435 and PRXⅡ39562. This transcriptome provides functional genomic information for further research of S. sebiferum, especially for the genetic engineering to shorten the juvenile period and improve yield by regulating flower development. It also offers a useful database for the research of other Euphorbiaceae family plants. Public Library of Science 2015-03-04 /pmc/articles/PMC4349590/ /pubmed/25738565 http://dx.doi.org/10.1371/journal.pone.0118479 Text en © 2015 Yang 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
Yang, Minglei
Wu, Ying
Jin, Shan
Hou, Jinyan
Mao, Yingji
Liu, Wenbo
Shen, Yangcheng
Wu, Lifang
Flower Bud Transcriptome Analysis of Sapium sebiferum (Linn.) Roxb. and Primary Investigation of Drought Induced Flowering: Pathway Construction and G-Quadruplex Prediction Based on Transcriptome
title Flower Bud Transcriptome Analysis of Sapium sebiferum (Linn.) Roxb. and Primary Investigation of Drought Induced Flowering: Pathway Construction and G-Quadruplex Prediction Based on Transcriptome
title_full Flower Bud Transcriptome Analysis of Sapium sebiferum (Linn.) Roxb. and Primary Investigation of Drought Induced Flowering: Pathway Construction and G-Quadruplex Prediction Based on Transcriptome
title_fullStr Flower Bud Transcriptome Analysis of Sapium sebiferum (Linn.) Roxb. and Primary Investigation of Drought Induced Flowering: Pathway Construction and G-Quadruplex Prediction Based on Transcriptome
title_full_unstemmed Flower Bud Transcriptome Analysis of Sapium sebiferum (Linn.) Roxb. and Primary Investigation of Drought Induced Flowering: Pathway Construction and G-Quadruplex Prediction Based on Transcriptome
title_short Flower Bud Transcriptome Analysis of Sapium sebiferum (Linn.) Roxb. and Primary Investigation of Drought Induced Flowering: Pathway Construction and G-Quadruplex Prediction Based on Transcriptome
title_sort flower bud transcriptome analysis of sapium sebiferum (linn.) roxb. and primary investigation of drought induced flowering: pathway construction and g-quadruplex prediction based on transcriptome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4349590/
https://www.ncbi.nlm.nih.gov/pubmed/25738565
http://dx.doi.org/10.1371/journal.pone.0118479
work_keys_str_mv AT yangminglei flowerbudtranscriptomeanalysisofsapiumsebiferumlinnroxbandprimaryinvestigationofdroughtinducedfloweringpathwayconstructionandgquadruplexpredictionbasedontranscriptome
AT wuying flowerbudtranscriptomeanalysisofsapiumsebiferumlinnroxbandprimaryinvestigationofdroughtinducedfloweringpathwayconstructionandgquadruplexpredictionbasedontranscriptome
AT jinshan flowerbudtranscriptomeanalysisofsapiumsebiferumlinnroxbandprimaryinvestigationofdroughtinducedfloweringpathwayconstructionandgquadruplexpredictionbasedontranscriptome
AT houjinyan flowerbudtranscriptomeanalysisofsapiumsebiferumlinnroxbandprimaryinvestigationofdroughtinducedfloweringpathwayconstructionandgquadruplexpredictionbasedontranscriptome
AT maoyingji flowerbudtranscriptomeanalysisofsapiumsebiferumlinnroxbandprimaryinvestigationofdroughtinducedfloweringpathwayconstructionandgquadruplexpredictionbasedontranscriptome
AT liuwenbo flowerbudtranscriptomeanalysisofsapiumsebiferumlinnroxbandprimaryinvestigationofdroughtinducedfloweringpathwayconstructionandgquadruplexpredictionbasedontranscriptome
AT shenyangcheng flowerbudtranscriptomeanalysisofsapiumsebiferumlinnroxbandprimaryinvestigationofdroughtinducedfloweringpathwayconstructionandgquadruplexpredictionbasedontranscriptome
AT wulifang flowerbudtranscriptomeanalysisofsapiumsebiferumlinnroxbandprimaryinvestigationofdroughtinducedfloweringpathwayconstructionandgquadruplexpredictionbasedontranscriptome