Cargando…

Transcriptome landscape of Rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development

Rafflesia possesses unique biological features and known primarily for producing the world’s largest and existing as a single flower. However, to date, little is known about key regulators participating in Rafflesia flower development. In order to further understand the molecular mechanism that regu...

Descripción completa

Detalles Bibliográficos
Autores principales: Amini, Safoora, Rosli, Khadijah, Abu-Bakar, Mohd-Faizal, Alias, Halimah, Mat-Isa, Mohd-Noor, Juhari, Mohd-Afiq-Aizat, Haji-Adam, Jumaat, Goh, Hoe-Han, Wan, Kiew-Lian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6919626/
https://www.ncbi.nlm.nih.gov/pubmed/31851702
http://dx.doi.org/10.1371/journal.pone.0226338
_version_ 1783480788715569152
author Amini, Safoora
Rosli, Khadijah
Abu-Bakar, Mohd-Faizal
Alias, Halimah
Mat-Isa, Mohd-Noor
Juhari, Mohd-Afiq-Aizat
Haji-Adam, Jumaat
Goh, Hoe-Han
Wan, Kiew-Lian
author_facet Amini, Safoora
Rosli, Khadijah
Abu-Bakar, Mohd-Faizal
Alias, Halimah
Mat-Isa, Mohd-Noor
Juhari, Mohd-Afiq-Aizat
Haji-Adam, Jumaat
Goh, Hoe-Han
Wan, Kiew-Lian
author_sort Amini, Safoora
collection PubMed
description Rafflesia possesses unique biological features and known primarily for producing the world’s largest and existing as a single flower. However, to date, little is known about key regulators participating in Rafflesia flower development. In order to further understand the molecular mechanism that regulates Rafflesia cantleyi flower development, RNA-seq data from three developmental stages of floral bud, representing the floral organ primordia initiation, floral organ differentiation, and floral bud outgrowth, were analysed. A total of 89,890 transcripts were assembled of which up to 35% could be annotated based on homology search. Advanced transcriptome analysis using K-mean clustering on the differentially expressed genes (DEGs) was able to identify 12 expression clusters that reflect major trends and key transitional states, which correlate to specific developmental stages. Through this, comparative gene expression analysis of different floral bud stages identified various transcription factors related to flower development. The members of WRKY, NAC, bHLH, and MYB families are the most represented among the DEGs, suggesting their important function in flower development. Furthermore, pathway enrichment analysis also revealed DEGs that are involved in various phytohormone signal transduction events such as auxin and auxin transport, cytokinin and gibberellin biosynthesis. Results of this study imply that transcription factors and phytohormone signalling pathways play major role in Rafflesia floral bud development. This study provides an invaluable resource for molecular studies of the flower development process in Rafflesia and other plant species.
format Online
Article
Text
id pubmed-6919626
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-69196262020-01-07 Transcriptome landscape of Rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development Amini, Safoora Rosli, Khadijah Abu-Bakar, Mohd-Faizal Alias, Halimah Mat-Isa, Mohd-Noor Juhari, Mohd-Afiq-Aizat Haji-Adam, Jumaat Goh, Hoe-Han Wan, Kiew-Lian PLoS One Research Article Rafflesia possesses unique biological features and known primarily for producing the world’s largest and existing as a single flower. However, to date, little is known about key regulators participating in Rafflesia flower development. In order to further understand the molecular mechanism that regulates Rafflesia cantleyi flower development, RNA-seq data from three developmental stages of floral bud, representing the floral organ primordia initiation, floral organ differentiation, and floral bud outgrowth, were analysed. A total of 89,890 transcripts were assembled of which up to 35% could be annotated based on homology search. Advanced transcriptome analysis using K-mean clustering on the differentially expressed genes (DEGs) was able to identify 12 expression clusters that reflect major trends and key transitional states, which correlate to specific developmental stages. Through this, comparative gene expression analysis of different floral bud stages identified various transcription factors related to flower development. The members of WRKY, NAC, bHLH, and MYB families are the most represented among the DEGs, suggesting their important function in flower development. Furthermore, pathway enrichment analysis also revealed DEGs that are involved in various phytohormone signal transduction events such as auxin and auxin transport, cytokinin and gibberellin biosynthesis. Results of this study imply that transcription factors and phytohormone signalling pathways play major role in Rafflesia floral bud development. This study provides an invaluable resource for molecular studies of the flower development process in Rafflesia and other plant species. Public Library of Science 2019-12-18 /pmc/articles/PMC6919626/ /pubmed/31851702 http://dx.doi.org/10.1371/journal.pone.0226338 Text en © 2019 Amini 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Amini, Safoora
Rosli, Khadijah
Abu-Bakar, Mohd-Faizal
Alias, Halimah
Mat-Isa, Mohd-Noor
Juhari, Mohd-Afiq-Aizat
Haji-Adam, Jumaat
Goh, Hoe-Han
Wan, Kiew-Lian
Transcriptome landscape of Rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development
title Transcriptome landscape of Rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development
title_full Transcriptome landscape of Rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development
title_fullStr Transcriptome landscape of Rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development
title_full_unstemmed Transcriptome landscape of Rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development
title_short Transcriptome landscape of Rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development
title_sort transcriptome landscape of rafflesia cantleyi floral buds reveals insights into the roles of transcription factors and phytohormones in flower development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6919626/
https://www.ncbi.nlm.nih.gov/pubmed/31851702
http://dx.doi.org/10.1371/journal.pone.0226338
work_keys_str_mv AT aminisafoora transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment
AT roslikhadijah transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment
AT abubakarmohdfaizal transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment
AT aliashalimah transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment
AT matisamohdnoor transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment
AT juharimohdafiqaizat transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment
AT hajiadamjumaat transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment
AT gohhoehan transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment
AT wankiewlian transcriptomelandscapeofrafflesiacantleyifloralbudsrevealsinsightsintotherolesoftranscriptionfactorsandphytohormonesinflowerdevelopment