Effects of methyl jasmonate, on stevioside and rebaudioside A content and expression of the ent-Kaurenoic acid 13-hydroxylase gene in Stevia rebaudiana Bert. in vitro

Glycosides are a form of secondary metabolites that consist variety compounds and in some cases can play a role in primary metabolism. Steviol is lipophilic skeleton of Stevioside and Rebaudioside A, two main glycosides of Stevia rebuadiana. Steviol glycosides which are synthesized in S.rebaudiana h...

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Main Authors: Mehrdad Behmanesh, Mozaffar Sharifi, Kamran Moradi Peynevandi
Format: Article
Language:fas
Published: University of Isfahan 2014-08-01
Series:Zīst/shināsī-i Giyāhī-i Īrān
Subjects:
Online Access:http://ijpb.ui.ac.ir/article_18942_04a17170b035af58a2f0457bca7c39c7.pdf
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author Mehrdad Behmanesh
Mozaffar Sharifi
Kamran Moradi Peynevandi
author_facet Mehrdad Behmanesh
Mozaffar Sharifi
Kamran Moradi Peynevandi
author_sort Mehrdad Behmanesh
collection DOAJ
description Glycosides are a form of secondary metabolites that consist variety compounds and in some cases can play a role in primary metabolism. Steviol is lipophilic skeleton of Stevioside and Rebaudioside A, two main glycosides of Stevia rebuadiana. Steviol glycosides which are synthesized in S.rebaudiana have important medical and nutritional values as high intensity natural sweeteners. Steviol is synthesized from Kaurenoic acid in chloroplastic Terpenoid pathway that mediated by Kaurenoic acid 13-hydroxylase. In this study, HPLC method and RT-PCR were performed for quantification of glycosides and gene expression (ent-Kaurenoic acid 13-hydroxylase) respectively. Methyl jasmonate treatment (at 20 micromolar) in vitro induced glycoside biosynthesis significantly (Pâ¤0.05) whereas higher concentration of Methyl jasmonate (100 µM) caused a decrease in glycoside production and growth. The most glycoside content of the plant was three days after treatment. Also Methyl jasmonate treatment caused an increase in ent-Kaurenoic 13-hydroxylase gene expression from 6 hours to 48 hours (after treatment) Results showed that biosynthesis of Stevia glycosides was probably a defense mechanism against pathogens and herbivore insects. Also we found that different concentrations of Methyl jasmonate, alter the ratio between glycosides rather than the increase in glycoside contents.
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spelling doaj.art-603739ea2b514118895811d26001f1d82022-12-22T02:48:32ZfasUniversity of IsfahanZīst/shināsī-i Giyāhī-i Īrān2008-82642322-22042014-08-016219911018942Effects of methyl jasmonate, on stevioside and rebaudioside A content and expression of the ent-Kaurenoic acid 13-hydroxylase gene in Stevia rebaudiana Bert. in vitroMehrdad Behmanesh0Mozaffar Sharifi1Kamran Moradi Peynevandi2Department of Genetics, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, IranDepartment of Plant Biology, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, IranDepartment of Plant Biology, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, IranGlycosides are a form of secondary metabolites that consist variety compounds and in some cases can play a role in primary metabolism. Steviol is lipophilic skeleton of Stevioside and Rebaudioside A, two main glycosides of Stevia rebuadiana. Steviol glycosides which are synthesized in S.rebaudiana have important medical and nutritional values as high intensity natural sweeteners. Steviol is synthesized from Kaurenoic acid in chloroplastic Terpenoid pathway that mediated by Kaurenoic acid 13-hydroxylase. In this study, HPLC method and RT-PCR were performed for quantification of glycosides and gene expression (ent-Kaurenoic acid 13-hydroxylase) respectively. Methyl jasmonate treatment (at 20 micromolar) in vitro induced glycoside biosynthesis significantly (Pâ¤0.05) whereas higher concentration of Methyl jasmonate (100 µM) caused a decrease in glycoside production and growth. The most glycoside content of the plant was three days after treatment. Also Methyl jasmonate treatment caused an increase in ent-Kaurenoic 13-hydroxylase gene expression from 6 hours to 48 hours (after treatment) Results showed that biosynthesis of Stevia glycosides was probably a defense mechanism against pathogens and herbivore insects. Also we found that different concentrations of Methyl jasmonate, alter the ratio between glycosides rather than the increase in glycoside contents.http://ijpb.ui.ac.ir/article_18942_04a17170b035af58a2f0457bca7c39c7.pdfent-Kaurenoic acid 13-HydroxylaseStevia rebuadianaSteviosideRebaudioside AentKaurenoic acid 13HydroxylaseMethyl jasmonate
spellingShingle Mehrdad Behmanesh
Mozaffar Sharifi
Kamran Moradi Peynevandi
Effects of methyl jasmonate, on stevioside and rebaudioside A content and expression of the ent-Kaurenoic acid 13-hydroxylase gene in Stevia rebaudiana Bert. in vitro
Zīst/shināsī-i Giyāhī-i Īrān
ent-Kaurenoic acid 13-Hydroxylase
Stevia rebuadiana
Stevioside
Rebaudioside A
ent
Kaurenoic acid 13
Hydroxylase
Methyl jasmonate
title Effects of methyl jasmonate, on stevioside and rebaudioside A content and expression of the ent-Kaurenoic acid 13-hydroxylase gene in Stevia rebaudiana Bert. in vitro
title_full Effects of methyl jasmonate, on stevioside and rebaudioside A content and expression of the ent-Kaurenoic acid 13-hydroxylase gene in Stevia rebaudiana Bert. in vitro
title_fullStr Effects of methyl jasmonate, on stevioside and rebaudioside A content and expression of the ent-Kaurenoic acid 13-hydroxylase gene in Stevia rebaudiana Bert. in vitro
title_full_unstemmed Effects of methyl jasmonate, on stevioside and rebaudioside A content and expression of the ent-Kaurenoic acid 13-hydroxylase gene in Stevia rebaudiana Bert. in vitro
title_short Effects of methyl jasmonate, on stevioside and rebaudioside A content and expression of the ent-Kaurenoic acid 13-hydroxylase gene in Stevia rebaudiana Bert. in vitro
title_sort effects of methyl jasmonate on stevioside and rebaudioside a content and expression of the ent kaurenoic acid 13 hydroxylase gene in stevia rebaudiana bert in vitro
topic ent-Kaurenoic acid 13-Hydroxylase
Stevia rebuadiana
Stevioside
Rebaudioside A
ent
Kaurenoic acid 13
Hydroxylase
Methyl jasmonate
url http://ijpb.ui.ac.ir/article_18942_04a17170b035af58a2f0457bca7c39c7.pdf
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AT mozaffarsharifi effectsofmethyljasmonateonsteviosideandrebaudiosideacontentandexpressionoftheentkaurenoicacid13hydroxylasegeneinsteviarebaudianabertinvitro
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