Cargando…
RNAi and Homologous Over-Expression Based Functional Approaches Reveal Triterpenoid Synthase Gene-Cycloartenol Synthase Is Involved in Downstream Withanolide Biosynthesis in Withania somnifera
Withania somnifera Dunal, is one of the most commonly used medicinal plant in Ayurvedic and indigenous medicine traditionally owing to its therapeutic potential, because of major chemical constituents, withanolides. Withanolide biosynthesis requires the activities of several enzymes in vivo. Cycloar...
Autores principales: | , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4769023/ https://www.ncbi.nlm.nih.gov/pubmed/26919744 http://dx.doi.org/10.1371/journal.pone.0149691 |
_version_ | 1782418040958222336 |
---|---|
author | Mishra, Smrati Bansal, Shilpi Mishra, Bhawana Sangwan, Rajender Singh Asha, Jadaun, Jyoti Singh Sangwan, Neelam S. |
author_facet | Mishra, Smrati Bansal, Shilpi Mishra, Bhawana Sangwan, Rajender Singh Asha, Jadaun, Jyoti Singh Sangwan, Neelam S. |
author_sort | Mishra, Smrati |
collection | PubMed |
description | Withania somnifera Dunal, is one of the most commonly used medicinal plant in Ayurvedic and indigenous medicine traditionally owing to its therapeutic potential, because of major chemical constituents, withanolides. Withanolide biosynthesis requires the activities of several enzymes in vivo. Cycloartenol synthase (CAS) is an important enzyme in the withanolide biosynthetic pathway, catalyzing cyclization of 2, 3 oxidosqualene into cycloartenol. In the present study, we have cloned full-length WsCAS from Withania somnifera by homology-based PCR method. For gene function investigation, we constructed three RNAi gene-silencing constructs in backbone of RNAi vector pGSA and a full-length over-expression construct. These constructs were transformed in Agrobacterium strain GV3101 for plant transformation in W. somnifera. Molecular and metabolite analysis was performed in putative Withania transformants. The PCR and Southern blot results showed the genomic integration of these RNAi and overexpression construct(s) in Withania genome. The qRT-PCR analysis showed that the expression of WsCAS gene was considerably downregulated in stable transgenic silenced Withania lines compared with the non-transformed control and HPLC analysis showed that withanolide content was greatly reduced in silenced lines. Transgenic plants over expressing CAS gene displayed enhanced level of CAS transcript and withanolide content compared to non-transformed controls. This work is the first full proof report of functional validation of any metabolic pathway gene in W. somnifera at whole plant level as per our knowledge and it will be further useful to understand the regulatory role of different genes involved in the biosynthesis of withanolides. |
format | Online Article Text |
id | pubmed-4769023 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-47690232016-03-09 RNAi and Homologous Over-Expression Based Functional Approaches Reveal Triterpenoid Synthase Gene-Cycloartenol Synthase Is Involved in Downstream Withanolide Biosynthesis in Withania somnifera Mishra, Smrati Bansal, Shilpi Mishra, Bhawana Sangwan, Rajender Singh Asha, Jadaun, Jyoti Singh Sangwan, Neelam S. PLoS One Research Article Withania somnifera Dunal, is one of the most commonly used medicinal plant in Ayurvedic and indigenous medicine traditionally owing to its therapeutic potential, because of major chemical constituents, withanolides. Withanolide biosynthesis requires the activities of several enzymes in vivo. Cycloartenol synthase (CAS) is an important enzyme in the withanolide biosynthetic pathway, catalyzing cyclization of 2, 3 oxidosqualene into cycloartenol. In the present study, we have cloned full-length WsCAS from Withania somnifera by homology-based PCR method. For gene function investigation, we constructed three RNAi gene-silencing constructs in backbone of RNAi vector pGSA and a full-length over-expression construct. These constructs were transformed in Agrobacterium strain GV3101 for plant transformation in W. somnifera. Molecular and metabolite analysis was performed in putative Withania transformants. The PCR and Southern blot results showed the genomic integration of these RNAi and overexpression construct(s) in Withania genome. The qRT-PCR analysis showed that the expression of WsCAS gene was considerably downregulated in stable transgenic silenced Withania lines compared with the non-transformed control and HPLC analysis showed that withanolide content was greatly reduced in silenced lines. Transgenic plants over expressing CAS gene displayed enhanced level of CAS transcript and withanolide content compared to non-transformed controls. This work is the first full proof report of functional validation of any metabolic pathway gene in W. somnifera at whole plant level as per our knowledge and it will be further useful to understand the regulatory role of different genes involved in the biosynthesis of withanolides. Public Library of Science 2016-02-26 /pmc/articles/PMC4769023/ /pubmed/26919744 http://dx.doi.org/10.1371/journal.pone.0149691 Text en © 2016 Mishra 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 Mishra, Smrati Bansal, Shilpi Mishra, Bhawana Sangwan, Rajender Singh Asha, Jadaun, Jyoti Singh Sangwan, Neelam S. RNAi and Homologous Over-Expression Based Functional Approaches Reveal Triterpenoid Synthase Gene-Cycloartenol Synthase Is Involved in Downstream Withanolide Biosynthesis in Withania somnifera |
title | RNAi and Homologous Over-Expression Based Functional Approaches Reveal Triterpenoid Synthase Gene-Cycloartenol Synthase Is Involved in Downstream Withanolide Biosynthesis in Withania somnifera |
title_full | RNAi and Homologous Over-Expression Based Functional Approaches Reveal Triterpenoid Synthase Gene-Cycloartenol Synthase Is Involved in Downstream Withanolide Biosynthesis in Withania somnifera |
title_fullStr | RNAi and Homologous Over-Expression Based Functional Approaches Reveal Triterpenoid Synthase Gene-Cycloartenol Synthase Is Involved in Downstream Withanolide Biosynthesis in Withania somnifera |
title_full_unstemmed | RNAi and Homologous Over-Expression Based Functional Approaches Reveal Triterpenoid Synthase Gene-Cycloartenol Synthase Is Involved in Downstream Withanolide Biosynthesis in Withania somnifera |
title_short | RNAi and Homologous Over-Expression Based Functional Approaches Reveal Triterpenoid Synthase Gene-Cycloartenol Synthase Is Involved in Downstream Withanolide Biosynthesis in Withania somnifera |
title_sort | rnai and homologous over-expression based functional approaches reveal triterpenoid synthase gene-cycloartenol synthase is involved in downstream withanolide biosynthesis in withania somnifera |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4769023/ https://www.ncbi.nlm.nih.gov/pubmed/26919744 http://dx.doi.org/10.1371/journal.pone.0149691 |
work_keys_str_mv | AT mishrasmrati rnaiandhomologousoverexpressionbasedfunctionalapproachesrevealtriterpenoidsynthasegenecycloartenolsynthaseisinvolvedindownstreamwithanolidebiosynthesisinwithaniasomnifera AT bansalshilpi rnaiandhomologousoverexpressionbasedfunctionalapproachesrevealtriterpenoidsynthasegenecycloartenolsynthaseisinvolvedindownstreamwithanolidebiosynthesisinwithaniasomnifera AT mishrabhawana rnaiandhomologousoverexpressionbasedfunctionalapproachesrevealtriterpenoidsynthasegenecycloartenolsynthaseisinvolvedindownstreamwithanolidebiosynthesisinwithaniasomnifera AT sangwanrajendersingh rnaiandhomologousoverexpressionbasedfunctionalapproachesrevealtriterpenoidsynthasegenecycloartenolsynthaseisinvolvedindownstreamwithanolidebiosynthesisinwithaniasomnifera AT asha rnaiandhomologousoverexpressionbasedfunctionalapproachesrevealtriterpenoidsynthasegenecycloartenolsynthaseisinvolvedindownstreamwithanolidebiosynthesisinwithaniasomnifera AT jadaunjyotisingh rnaiandhomologousoverexpressionbasedfunctionalapproachesrevealtriterpenoidsynthasegenecycloartenolsynthaseisinvolvedindownstreamwithanolidebiosynthesisinwithaniasomnifera AT sangwanneelams rnaiandhomologousoverexpressionbasedfunctionalapproachesrevealtriterpenoidsynthasegenecycloartenolsynthaseisinvolvedindownstreamwithanolidebiosynthesisinwithaniasomnifera |