De Novo transcriptome assembly (NGS) of Curcuma longa L. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.

Herbal remedies are increasingly being recognised in recent years as alternative medicine for a number of diseases including cancer. Curcuma longa L., commonly known as turmeric is used as a culinary spice in India and in many Asian countries has been attributed to lower incidences of gastrointestin...

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Main Authors: Ramasamy S Annadurai, Ramprasad Neethiraj, Vasanthan Jayakumar, Anand C Damodaran, Sudha Narayana Rao, Mohan A V S K Katta, Sreeja Gopinathan, Santosh Prasad Sarma, Vanitha Senthilkumar, Vidya Niranjan, Ashok Gopinath, Raja C Mugasimangalam
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3585318?pdf=render
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spelling doaj-7eaf4f9892c744a9ae1527e9e00439462020-11-25T01:49:45ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0182e5621710.1371/journal.pone.0056217De Novo transcriptome assembly (NGS) of Curcuma longa L. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.Ramasamy S AnnaduraiRamprasad NeethirajVasanthan JayakumarAnand C DamodaranSudha Narayana RaoMohan A V S K KattaSreeja GopinathanSantosh Prasad SarmaVanitha SenthilkumarVidya NiranjanAshok GopinathRaja C MugasimangalamHerbal remedies are increasingly being recognised in recent years as alternative medicine for a number of diseases including cancer. Curcuma longa L., commonly known as turmeric is used as a culinary spice in India and in many Asian countries has been attributed to lower incidences of gastrointestinal cancers. Curcumin, a secondary metabolite isolated from the rhizomes of this plant has been shown to have significant anticancer properties, in addition to antimalarial and antioxidant effects. We sequenced the transcriptome of the rhizome of the 3 varieties of Curcuma longa L. using Illumina reversible dye terminator sequencing followed by de novo transcriptome assembly. Multiple databases were used to obtain a comprehensive annotation and the transcripts were functionally classified using GO, KOG and PlantCyc. Special emphasis was given for annotating the secondary metabolite pathways and terpenoid biosynthesis pathways. We report for the first time, the presence of transcripts related to biosynthetic pathways of several anti-cancer compounds like taxol, curcumin, and vinblastine in addition to anti-malarial compounds like artemisinin and acridone alkaloids, emphasizing turmeric's importance as a highly potent phytochemical. Our data not only provides molecular signatures for several terpenoids but also a comprehensive molecular resource for facilitating deeper insights into the transcriptome of C. longa.http://europepmc.org/articles/PMC3585318?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ramasamy S Annadurai
Ramprasad Neethiraj
Vasanthan Jayakumar
Anand C Damodaran
Sudha Narayana Rao
Mohan A V S K Katta
Sreeja Gopinathan
Santosh Prasad Sarma
Vanitha Senthilkumar
Vidya Niranjan
Ashok Gopinath
Raja C Mugasimangalam
spellingShingle Ramasamy S Annadurai
Ramprasad Neethiraj
Vasanthan Jayakumar
Anand C Damodaran
Sudha Narayana Rao
Mohan A V S K Katta
Sreeja Gopinathan
Santosh Prasad Sarma
Vanitha Senthilkumar
Vidya Niranjan
Ashok Gopinath
Raja C Mugasimangalam
De Novo transcriptome assembly (NGS) of Curcuma longa L. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.
PLoS ONE
author_facet Ramasamy S Annadurai
Ramprasad Neethiraj
Vasanthan Jayakumar
Anand C Damodaran
Sudha Narayana Rao
Mohan A V S K Katta
Sreeja Gopinathan
Santosh Prasad Sarma
Vanitha Senthilkumar
Vidya Niranjan
Ashok Gopinath
Raja C Mugasimangalam
author_sort Ramasamy S Annadurai
title De Novo transcriptome assembly (NGS) of Curcuma longa L. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.
title_short De Novo transcriptome assembly (NGS) of Curcuma longa L. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.
title_full De Novo transcriptome assembly (NGS) of Curcuma longa L. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.
title_fullStr De Novo transcriptome assembly (NGS) of Curcuma longa L. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.
title_full_unstemmed De Novo transcriptome assembly (NGS) of Curcuma longa L. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.
title_sort de novo transcriptome assembly (ngs) of curcuma longa l. rhizome reveals novel transcripts related to anticancer and antimalarial terpenoids.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Herbal remedies are increasingly being recognised in recent years as alternative medicine for a number of diseases including cancer. Curcuma longa L., commonly known as turmeric is used as a culinary spice in India and in many Asian countries has been attributed to lower incidences of gastrointestinal cancers. Curcumin, a secondary metabolite isolated from the rhizomes of this plant has been shown to have significant anticancer properties, in addition to antimalarial and antioxidant effects. We sequenced the transcriptome of the rhizome of the 3 varieties of Curcuma longa L. using Illumina reversible dye terminator sequencing followed by de novo transcriptome assembly. Multiple databases were used to obtain a comprehensive annotation and the transcripts were functionally classified using GO, KOG and PlantCyc. Special emphasis was given for annotating the secondary metabolite pathways and terpenoid biosynthesis pathways. We report for the first time, the presence of transcripts related to biosynthetic pathways of several anti-cancer compounds like taxol, curcumin, and vinblastine in addition to anti-malarial compounds like artemisinin and acridone alkaloids, emphasizing turmeric's importance as a highly potent phytochemical. Our data not only provides molecular signatures for several terpenoids but also a comprehensive molecular resource for facilitating deeper insights into the transcriptome of C. longa.
url http://europepmc.org/articles/PMC3585318?pdf=render
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