Perigone Lobe Transcriptome Analysis Provides Insights into Rafflesia cantleyi Flower Development.

Rafflesia is a biologically enigmatic species that is very rare in occurrence and possesses an extraordinary morphology. This parasitic plant produces a gigantic flower up to one metre in diameter with no leaves, stem or roots. However, little is known about the floral biology of this species especi...

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Main Authors: Xin-Wei Lee, Mohd-Noor Mat-Isa, Nur-Atiqah Mohd-Elias, Mohd Afiq Aizat-Juhari, Hoe-Han Goh, Paul H Dear, Keng-See Chow, Jumaat Haji Adam, Rahmah Mohamed, Mohd Firdaus-Raih, Kiew-Lian Wan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5158018?pdf=render
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spelling doaj-466a08bd31c9428c881ef7a280a7455b2020-11-25T02:08:49ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-011112e016795810.1371/journal.pone.0167958Perigone Lobe Transcriptome Analysis Provides Insights into Rafflesia cantleyi Flower Development.Xin-Wei LeeMohd-Noor Mat-IsaNur-Atiqah Mohd-EliasMohd Afiq Aizat-JuhariHoe-Han GohPaul H DearKeng-See ChowJumaat Haji AdamRahmah MohamedMohd Firdaus-RaihKiew-Lian WanRafflesia is a biologically enigmatic species that is very rare in occurrence and possesses an extraordinary morphology. This parasitic plant produces a gigantic flower up to one metre in diameter with no leaves, stem or roots. However, little is known about the floral biology of this species especially at the molecular level. In an effort to address this issue, we have generated and characterised the transcriptome of the Rafflesia cantleyi flower, and performed a comparison with the transcriptome of its floral bud to predict genes that are expressed and regulated during flower development. Approximately 40 million sequencing reads were generated and assembled de novo into 18,053 transcripts with an average length of 641 bp. Of these, more than 79% of the transcripts had significant matches to annotated sequences in the public protein database. A total of 11,756 and 7,891 transcripts were assigned to Gene Ontology categories and clusters of orthologous groups respectively. In addition, 6,019 transcripts could be mapped to 129 pathways in Kyoto Encyclopaedia of Genes and Genomes Pathway database. Digital abundance analysis identified 52 transcripts with very high expression in the flower transcriptome of R. cantleyi. Subsequently, analysis of differential expression between developing flower and the floral bud revealed a set of 105 transcripts with potential role in flower development. Our work presents a deep transcriptome resource analysis for the developing flower of R. cantleyi. Genes potentially involved in the growth and development of the R. cantleyi flower were identified and provide insights into biological processes that occur during flower development.http://europepmc.org/articles/PMC5158018?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Xin-Wei Lee
Mohd-Noor Mat-Isa
Nur-Atiqah Mohd-Elias
Mohd Afiq Aizat-Juhari
Hoe-Han Goh
Paul H Dear
Keng-See Chow
Jumaat Haji Adam
Rahmah Mohamed
Mohd Firdaus-Raih
Kiew-Lian Wan
spellingShingle Xin-Wei Lee
Mohd-Noor Mat-Isa
Nur-Atiqah Mohd-Elias
Mohd Afiq Aizat-Juhari
Hoe-Han Goh
Paul H Dear
Keng-See Chow
Jumaat Haji Adam
Rahmah Mohamed
Mohd Firdaus-Raih
Kiew-Lian Wan
Perigone Lobe Transcriptome Analysis Provides Insights into Rafflesia cantleyi Flower Development.
PLoS ONE
author_facet Xin-Wei Lee
Mohd-Noor Mat-Isa
Nur-Atiqah Mohd-Elias
Mohd Afiq Aizat-Juhari
Hoe-Han Goh
Paul H Dear
Keng-See Chow
Jumaat Haji Adam
Rahmah Mohamed
Mohd Firdaus-Raih
Kiew-Lian Wan
author_sort Xin-Wei Lee
title Perigone Lobe Transcriptome Analysis Provides Insights into Rafflesia cantleyi Flower Development.
title_short Perigone Lobe Transcriptome Analysis Provides Insights into Rafflesia cantleyi Flower Development.
title_full Perigone Lobe Transcriptome Analysis Provides Insights into Rafflesia cantleyi Flower Development.
title_fullStr Perigone Lobe Transcriptome Analysis Provides Insights into Rafflesia cantleyi Flower Development.
title_full_unstemmed Perigone Lobe Transcriptome Analysis Provides Insights into Rafflesia cantleyi Flower Development.
title_sort perigone lobe transcriptome analysis provides insights into rafflesia cantleyi flower development.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Rafflesia is a biologically enigmatic species that is very rare in occurrence and possesses an extraordinary morphology. This parasitic plant produces a gigantic flower up to one metre in diameter with no leaves, stem or roots. However, little is known about the floral biology of this species especially at the molecular level. In an effort to address this issue, we have generated and characterised the transcriptome of the Rafflesia cantleyi flower, and performed a comparison with the transcriptome of its floral bud to predict genes that are expressed and regulated during flower development. Approximately 40 million sequencing reads were generated and assembled de novo into 18,053 transcripts with an average length of 641 bp. Of these, more than 79% of the transcripts had significant matches to annotated sequences in the public protein database. A total of 11,756 and 7,891 transcripts were assigned to Gene Ontology categories and clusters of orthologous groups respectively. In addition, 6,019 transcripts could be mapped to 129 pathways in Kyoto Encyclopaedia of Genes and Genomes Pathway database. Digital abundance analysis identified 52 transcripts with very high expression in the flower transcriptome of R. cantleyi. Subsequently, analysis of differential expression between developing flower and the floral bud revealed a set of 105 transcripts with potential role in flower development. Our work presents a deep transcriptome resource analysis for the developing flower of R. cantleyi. Genes potentially involved in the growth and development of the R. cantleyi flower were identified and provide insights into biological processes that occur during flower development.
url http://europepmc.org/articles/PMC5158018?pdf=render
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